Wave Life Sciences (WVE) Q2 2026 Earnings Call Transcript

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DATE

Thursday, July 30, 2026 at 8:30 a.m. ET

CALL PARTICIPANTS

  • Vice President of Corporate Affairs and Investor Relations - Kate Rausch
  • President and Chief Executive Officer - Paul Bolno
  • Chief Scientific Officer - Erik Ingelsson
  • Chief Medical Officer - Chris Wright
  • Chief Financial Officer - Kyle Moran

TAKEAWAYS

  • Revenue -- $2.3 million in the second quarter, reflecting ongoing collaboration activities with GSK, compared to $8.7 million in the prior year quarter.
  • Net Loss -- $69.4 million for the quarter, an increase from $50.5 million in the second quarter of 2025.
  • Cash Position -- $490.6 million in cash, cash equivalents, and marketable securities as of June 30, 2026, which the company expects will fund operations into the third quarter of 2028.
  • Research and Development Expenses -- $51.3 million, up from $43.5 million in the prior year period, driven by investments in the INLIGHT Phase IIa trial and the RNA editing pipeline.
  • General and Administrative Expenses -- $24.8 million, representing an increase from $18 million in the prior year quarter due to pipeline expansion and development preparation.
  • WVE-007 Target Engagement -- Serum Activin E reductions of up to 88% were observed in Phase I clinical trials, with silencing effects sustained through at least 7.5 months.
  • WVE-007 Body Composition -- 16.5% improvement in the visceral fat-to-muscle ratio (VMR) following a single dose, compared to 12.2% reported for weekly semaglutide in the BELIEVE study.
  • WVE-007 Phase IIa Design -- Enrollment is underway for four cohorts of 40 patients each, targeting individuals with BMIs between 35 and 50 with and without type 2 diabetes.
  • Obesity Market Scope -- 175 million individuals in the U.S. and Europe living with obesity, many of whom face a 70% discontinuation rate for GLP-1 therapies within the first year.
  • WVE-006 (AATD) Market -- Approximately 200,000 individuals in the U.S. and Europe live with homozygous ZZ AATD, an area lacking treatments for liver manifestations.
  • WVE-006 Clinical Performance -- Therapeutic profiles were achieved through three months of treatment across 200 mg biweekly and 400 mg monthly dosing cohorts.
  • WVE-008 (PNPLA3) Target Population -- 9 million homozygous carriers in the U.S. and Europe who face a ninefold higher risk of liver disease mortality compared to noncarriers.
  • WVE-008 Preclinical Data -- AIMers achieved transcript editing exceeding the 50% threshold expected to lower liver disease risk.
  • Muscle Preservation Metric -- 007's mechanism aims to avoid the muscle loss seen in current incretin-based therapies, which can comprise up to 40% of total weight loss.
  • Phase I Visceral Fat Reduction -- 14.3% reduction in visceral fat and a 3.3% reduction in waist circumference observed following a single dose of 007.
  • 007 Multi-dose Schedule -- Participants in the Phase IIa portion will receive two doses, administered on day 1 and day 85, with a 12-month follow-up period.
  • WVE-003 and WVE-N531 Partnering -- Management is seeking partnership opportunities for the Huntington's disease and Duchenne muscular dystrophy programs in advance of potential NDA filings.
  • GLP-1 Combination Potential -- Preclinical data showed a twofold greater weight loss when WVE-007 was used as an add-on to incretin therapy versus incretin alone.
  • GSK Milestone Payments -- Management expects to receive milestone payments from GSK in the second half of 2026, though these are excluded from current cash runway projections.

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RISKS

  • Paul Bolno stated, "recognizing that you need to fully enroll or have well underway a confirmatory study in advance wouldn't be prudent at this point in time until we understand that pathway," regarding the decision to seek a partner for WVE-N531 due to the evolving regulatory landscape in Duchenne muscular dystrophy.

SUMMARY

Wave Life Sciences Ltd. (NASDAQ:WVE) reported progress in its clinical-stage pipeline, specifically focusing on RNAi and RNA editing modalities for obesity and liver disease. Management emphasized the therapeutic potential of WVE-007 to provide fat loss without the muscle degradation common in incretin therapies, targeting the 70% of patients who discontinue GLP-1 treatments annually. The company is transitioning its focus toward high-prevalence indications while seeking strategic partnerships for its rare disease programs in Duchenne muscular dystrophy and Huntington's disease. Financial results showed increased operating expenses driven by Phase IIa initiation and platform expansion, supported by a cash runway extending into late 2028. Management indicated that regulatory discussions for accelerated approval in Alpha-1 antitrypsin deficiency are a primary priority for the second half of the year.

  • CEO Bolno stated that the company requested a meeting with the FDA to discuss a potential accelerated approval pathway for WVE-006, noting the agency "granted a face-to-face discussion" rather than a written response.
  • CSO Ingelsson highlighted that WVE-007 acts on Activin E to "remove those brakes" on lipolysis, enabling fat loss without the calorie restriction or muscle loss associated with current standard-of-care obesity treatments.
  • Management clarified that the Phase IIa trial for 007 is designed to capture signals for MASH and type 2 diabetes by including MRI-PDFF and HbA1c assessments.
  • The company expects to initiate clinical trials for WVE-007 in combination and maintenance settings before the end of 2026.
  • CMO Wright noted that WVE-008 is expected to restore PNPLA3 activity and lipid mobilization, a distinction from silencing approaches that management claims may exacerbate liver disease.
  • Management confirmed that CTA filing for WVE-008 remains on track for the second half of 2026 to target homozygous PNPLA3 I148M liver disease.
  • The company plans to host an Annual Investor Day in the fall of 2026 to reveal details on its bifunctional modality platform and future pipeline programs.

INDUSTRY GLOSSARY

  • AATD (Alpha-1 Antitrypsin Deficiency): A genetic disorder that can cause lung and liver disease due to the lack of functional AAT protein.
  • AIMers (ADAR-mediated RNA Editing): Proprietary RNA editing oligonucleotides designed to correct single-base mutations.
  • CTA (Clinical Trial Application): A regulatory filing required to start clinical trials in many jurisdictions outside the United States.
  • GalNAc (N-Acetylgalactosamine): A sugar molecule used to target therapeutic oligonucleotides specifically to the liver.
  • MASH (Metabolic Dysfunction-Associated Steatohepatitis): A severe form of non-alcoholic fatty liver disease characterized by liver inflammation and damage.
  • MRI-PDFF (MRI Proton Density Fat Fraction): An imaging technique used to quantify the amount of fat in the liver.
  • PNPLA3: A gene associated with liver fat metabolism; specific variants like I148M are linked to increased risks of MASH and cirrhosis.
  • RNAi (RNA Interference): A biological process in which RNA molecules inhibit gene expression or translation.
  • VMR (Visceral Fat-to-Muscle Ratio): A composite biomarker used to assess body composition by measuring the balance between harmful fat and beneficial muscle mass.

Full Conference Call Transcript

Operator: Hello, and welcome to Wave Life Sciences Second Quarter 2026 Earnings Call. [Operator Instructions] Also, as a reminder, this conference is being recorded today. I will now turn the call over to Kate Rausch, Vice President of Corporate Affairs and Investor Relations.

Kate Rausch: Thank you, operator, and good morning to everyone on the call. Earlier this morning we issued a press release outlining our second quarter 2026 earnings update. Joining me today with prepared remarks are Dr. Paul Bolno, President and Chief Executive Officer; Dr. Erik Ingelsson, Chief Scientific Officer; Dr. Chris Wright, Chief Medical Officer; and Kyle Moran, Chief Financial Officer. The press release issued this morning is available on the Investors section of our website, www.wavelifesciences.com. Before we begin, I would like to remind you that discussions during this conference call will include forward-looking statements. These statements are subject to several risks and uncertainties that could cause our actual results to differ materially from those described in these forward-looking statements.

The factors that could cause actual results to differ are discussed in the press release issued today and in our SEC filings. We undertake no obligation to update or revise any forward-looking statements for any reason. I'd now like to turn the call over to Paul.

Paul Bolno: Thanks, Kate, and good morning to everyone joining us on today's call. At Wave, we are focused on harnessing the convergence of deep genetic insights with our proprietary chemistry to rapidly advance the pipeline of transformational RNA medicines. Over the past decade, we have built the most sophisticated and broadly enabled oligonucleotide platform in the industry. Multiple clinical data sets now demonstrate our ability to rapidly advance programs from novel genetic target to proof of mechanism in the clinic. Our proprietary chemistry is what differentiates our pipeline and distinguishes our molecules from others in the field.

In the first half of 2026, we delivered multiple positive data sets across our RNAi and RNA editing pipeline, led by WVE-007 for obesity and WVE-006 for AATD, positioning us to advance both programs to the next stage of development. We also continue to progress our second RNA editing candidate, WVE-008 for PNPLA3 liver disease and remain on track for a CTA filing later this year. In March, we shared positive data from the single-dose Phase I portion of the INLIGHT trial of 007 in obesity. These data fortified our conviction in a best-in-class siRNA design with robust and extremely durable silencing demonstrated in the clinic, supporting potential dosing of once or twice a year.

Also, even in this otherwise healthy population, a single dose of 007 led to substantial reductions in visceral fat and subcutaneous fat without muscle loss or other adverse events associated with incretin therapy. We have 3 opportunities to explore in the next phase of development for this program. First, evaluate WVE-007 in a Phase IIa population with higher BMI and comorbidities typical of other obesity trials to demonstrate 007's potential in obesity as well as evaluate biomarkers to unlock other cardiometabolic indications, including MASH and type 2 diabetes. Second, evaluate combination with incretin, which has the potential to deepen weight loss and enhance metabolic benefits.

Third, and perhaps one of the most exciting and unique opportunities, evaluate maintenance therapy, which represents an entirely new commercial frontier, enabling patients an off-ramp for their GLP-1s. We often hear from patients about the fear of weight regain post cessation of incretins. Up to 70% of patients discontinued GLP-1 therapy within the first year of treatment. And for many, it's due to challenges that WVE-007 may address, including tolerability issues, treatment burden or anhedonia, loss of joy, among others. In this maintenance setting, 007 would have the potential to enable individuals and payers to realize the sustained health benefits of fat loss and improve body composition for the long term.

Over the past quarter, the FDA accepted the Phase IIa INLIGHT trial amendment and dosing is now underway. The Phase IIa is enrolling individuals living with obesity with BMIs between 35 and 50 and comorbidities with and without diabetes. These patients are expected to have higher total body fat and higher levels of visceral fat than the Phase I otherwise healthy patients. With this multi-dose clinical trial, we are evaluating our target patient population and have the potential to deliver further improvements in body composition, meaning weight loss driven off of fat loss without muscle loss as well as other improvements in cardiometabolic biomarkers, including liver fat and HbA1c.

We are also working expeditiously to initiate the additional Phase II trials of 007 in combination and maintenance settings this year. Collectively, our development program has the potential to redefine the treatment landscape in obesity. In RNA editing, we delivered data supporting 006 potential to offer a new standard of care for individuals living with AATD by treating both lung and liver manifestations of the disease and restoring the dynamic AAT protein response with convenient, infrequent subcutaneous dosing. We are planning to engage the FDA as the agency has granted our request for a meeting to discuss a potential accelerated approval pathway for WVE-006.

This meeting is expected at the end of summer and will help inform our registrational plans and path toward bringing a much needed new treatment option to the 200,000 individuals in the U.S. and Europe living with homozygous ZZ AATD. As a scalable, infrequent subcutaneously dosed oligonucleotide therapy, 006 would offer a potentially differentiated value proposition for both health care providers and payers. Current IV augmentation standard of care does not have any impact on liver manifestations of the disease, while investigational DNA editing in addition to any safety concerns would be associated with payer challenges for onetime costly therapy with uncertain durability and multiyear enrollee retention.

Building on our RNA editing success, we are advancing our second RNA editing candidate, WVE-008 toward the clinic this year for PNPLA3 liver disease. 008 aims to address an area of high unmet need with 9 million individuals living with homozygous PNPLA3 I148M liver disease. Human genetic data demonstrates these homozygous individuals have about a ninefold higher risk of dying from liver disease as compared with noncarriers. The landscape of therapies and development for this target has been narrowed by recent clinical demonstration that silencing approaches do not address the disease and may actually exacerbate it.

An RNA editing approach is the only way to restore the functional protein and offers a potential for a novel infrequently dosed therapy with strong support from human genetics. Beyond our lead RNAi and RNA editing programs, we continue to push the boundaries of innovation with our proprietary chemistry. We are planning to host our Annual Investor Day in the fall to shed more light on our latest platform advancements and work on our bifunctional modality. At the start of the year, we outlined our pipeline priorities, WVE-007, 006 and 008, demonstrating our core focus on RNAi and RNA editing as well as our intent to seek partnership opportunities for HD and DMD.

Given the evolving regulatory and commercial landscape in DMD, we are exploring potential partnerships in advance of filing an NDA for N531. We continue to believe in N531 and 003's potential as best-in-class treatment options and look forward to continuing our partnering discussions. With our continued success in the clinic and robust balance sheet, we are well positioned and well capitalized to bring our pipeline of potential first and best-in-class candidates to the next stage of development as we reimagine what's possible for patients.

Now I'd like to turn the call over to Erik, who will discuss 007 and how we are leveraging our proprietary chemistry and human genetic insights to advance the transformative approach for obesity and other cardiometabolic diseases. Erik?

Erik Ingelsson: Thank you, Paul. I'll start today by discussing our INHBE GalNAc-siRNA, WVE-007, and how our program aims to fill a large unmet need with a differentiated approach grounded in human genetics. Today, there are over 1 billion individuals living with obesity globally, including 175 million in the U.S. and Europe alone. These individuals face markedly higher risks of a range of diseases such as MASH, type 2 diabetes and other cardiometabolic diseases. Excess body fat, in particular, visceral fat is a key driver behind this elevated risk of disease.

While there are several therapeutic options available for weight loss and countless more in clinical development with similar modes of action to those already on the market, these therapies come with several limitations. Current standard of care therapies reduce body weight through both fat loss and muscle loss, and they carry high discontinuation rates due to the GI side effects, limiting potential for long-term health benefits. The loss of muscle also with current weight loss therapies is substantial with up to 40% of the total weight loss. This has significant health implications as skeletal muscle in addition to muscle strength and function also plays a key role in metabolism by sustaining basal metabolic rate, glucose disposal and insulin sensitivity.

Muscle also prevents weight regain, which occurs mostly from fat in a majority of individuals at discontinuing incretin therapies. Remember, as much as up to 70% of individuals discontinuing incretin within the first year of treatment. An ideal obesity therapy should instead selectively reduce excess fat, including harmful visceral fat, the fat surrounding one's organs that is most strongly linked to MASH, type 2 diabetes and other cardiometabolic diseases, while also lowering subcutaneous fat and liver steatosis and critically preserve skeletal muscle. It's well established that a 5% to 10% reduction in visceral fat mass is associated with positive health outcomes by reducing risk of multiple preventable metabolic diseases and preserving patient function and quality of life.

All these benefits can be delivered by 007's mechanism of action. Rather than acting on appetite, 007 silences INHBE and lower serum Activin E, a liver-derived peptide that signals adipocytes to put the brakes on lipolysis. Removing those brakes drives fat loss without calorie restriction without the muscle loss seen with incretin-based therapies. Our INHBE approach is strongly grounded in human genetics that carriers of heterozygous INHBE loss of function variant, nature's own knockdown experiment exhibit a healthier overall metabolic profile. As Paul discussed earlier, 007's unique ability to durably suppress INHBE is driven by our proprietary chemistry and SpiNA sRNA design.

Our next-generation SpiNA designs enhance interactions with AGO2, stabilize the loaded risk complex and improve liver exposure, all of which contribute to dramatically improved silence and potency and durability when compared with industry-leading sRNA designs, something we have shown repeatedly for INHBE and other targets. While RNAi is a well-established therapeutic modality and there are extensive human genetics data supporting INHBE as a target, we believe our proprietary chemistry distinguishes us from others attending a similar approach. Our interim Phase I INLIGHT data sets from lower BMI, otherwise healthy individuals confirm that this proprietary chemistry and the underlying human genetics are already translating in the clinic.

We have observed consistent durable and dose-dependent serum Activin E reductions of up to 88%, which were sustained through at least 7.5 months, supporting 007's potential for once or twice yearly dosing. Notably, we observed the translation of target engagement to substantial improvements of cardiometabolic risk factors with preservation of lean mass and clinically meaningful reductions in total fat, visceral fat and weight circumference after just a single dose. To provide context for our results of this early development stage, we calculated the visceral fat-to-muscle ratio or VMR, which is a measure of body composition that integrates harmful visceral fat and beneficial lean mass into a single index.

Lower VMR is associated with a decreased risk of MASH, type 2 diabetes and cardiometabolic disorders. With a single dose of 007 in our Phase I population, we already observed a 16.5% improvement in VMR, which is more than 12.2% achieved with weekly semaglutide in the Phase II BELIEVE study and approached the 18.8% observed with bimagrumab. We believe VMR has the potential to serve as a novel composite biomarker that captures body composition improvements more holistically than BMI and that may better predict long-term clinical benefits. Together with the patient community and KOLs, we're working to engage with the regulators on the importance of improving body composition, including decreasing excess fat and preserving muscle consistent with their recent guidance.

What makes the comparison with the BELIEVE study particularly exciting is that our INLIGHT participants had substantially lower baseline BMI, lower visceral fat and lower total fat compared to Phase II and Phase III obesity studies, including the BELIEVE study. Clinical experience also highlights the importance of baseline adiposity. Early Phase I studies in leaner individuals typically show more modest fat reductions, while studies of individuals with higher baseline obesity demonstrate substantially larger decreases in total and visceral fat mass. Early follow-up from our 400-milligram cohort, which included a substantially higher proportion of individuals with low levels of body fat also confirmed that higher baseline visceral fat led to greater visceral fat reductions overall.

As Chris will speak to shortly, we've been working expeditiously to advance 007 into participants with higher BMI and comorbidities in the Phase IIa portion of INLIGHT, where existing science predicts a larger effect. Activin E binds to ALK7 on all adipocytes and visceral fat being more metabolically active and better perfused mobilizes first, exactly what we have observed in Phase I. With more excess fat to lose, we expect both visceral and total fat loss with 007 to be substantially more pronounced in higher BMI participants in the IIa study. For further detail on our 007 development plans and our RNA editing programs, I'd now like to turn the call over to Chris.

Christopher Wright: Thanks, Erik. As we recently announced, we're excited to have advanced 007 to a population well suited to its mechanism of action. We would expect even more pronounced effects on visceral and subcutaneous fat loss. Dosing is currently underway in the Phase IIa multi-dose portion of INLIGHT. This global placebo-controlled trial will enroll individuals with higher BMIs in the range of 35 to 50 and comorbidities across 2 dose levels, 240 milligrams and 400 milligrams and 2 study populations with and without type 2 diabetes for a total of 4 cohorts of 40 patients each.

Assessments in this multi-dose portion are like those in the single-dose portion with additional inclusion of body composition measured by MRI, liver fat content as measured by MRI-PDFF, HbA1c, lipid levels and other measures. The design and study population enables enhanced evaluation not only of improved body composition and weight loss, but also informs additional opportunities for 007 in MASH, type 2 diabetes and cardiometabolic diseases. Participants will be given 2 doses of 007, one at day 1 and at day 85 and followed for 12 months with the first key assessments occurring at day 85.

We believe that 007's orthogonal mechanism, ability to drive fat reductions while preserving muscle and favorable safety profile are also aptly suited to combination and maintenance approaches. Our preclinical data provides compelling support for both use cases. We've observed approximately twofold greater weight loss as an add-on to incretin versus incretin alone in obese mice and have demonstrated the ability to curtail weight regain following cessation of incretin. Planning is well underway for clinical studies addressing incretin combination and post- incretin maintenance and remain on track to initiate this year. We also expect to share additional data from the Phase I portion of INLIGHT this year, including data from our 600-milligram cohort, which will further inform the durability of 007.

Turning to our ongoing RestorAATion-2 clinical trial of WVE-006 for AATD. AATD is a uniquely compelling disease for RNA editing. It is a monogenic disorder caused by a single well-characterized genetic variant in the SERPINA1 gene. This leads to misfolded Z-AAT protein and an absence of healthy circulating M-AAT protein, which normally protects the lung during inflammation or infectious events. Without dynamic production of functional AAT protein, individuals with alpha-1 are at risk for lung damage and ultimately developing emphysema and bronchiectasis, which is characterized by chronic cough, recurrent infections and shortness of breath. In parallel, misfolded Z-AAT accumulates in hepatocytes and causes progressive liver injury and increased risk of liver disease.

Approximately 200,000 individuals in the U.S. and Europe live with homozygous PiZZ-AATD. Currently, the only approved treatment for AATD is weekly IV plasma-derived augmentation therapy, which carries several limitations. With a fixed scheduled dose, there's no restoration of dynamic response, leaving individuals with alpha-1 at risk if AAT protein levels fall too low during an infectious or inflammatory event. IV therapy is time-consuming and often requires inpatient visits and does nothing to lower Z-AAT to address the risk of liver disease. Investigational therapies in development also come with several limitations. DNA-based editing approaches target both lung and liver, but they introduce permanent DNA modifications, carry bystander editing risk and rely on LNP delivery, which is associated with liver enzyme elevations.

The risk of irreversible off-target effects is particularly notable as genomic DNA editing has been connected to editing in cancer-associated genes. Also in development are AAT siRNA approaches, which reduce Z-AAT. However, they do not restore M-AAT, potentially exacerbating lung disease through chronic AAT knockdown. 006 has the potential to be the first treatment for AATD that enables individuals with alpha-1 to produce protective AAT protein when needed most and address the root cause of the disease with a convenient and infrequent subcutaneously dosed therapy. With 006, our goal is to recapitulate an MZ-like phenotype as it's well established that heterozygous individuals have low risk of both lung and liver disease.

MZ individuals compared to ZZs have reduced levels of Z-AAT, which protects the liver from damage and are able to protect the lung with basal AAT levels above 11 micromolar, of which at least 50% is wild-type and AAT. And most importantly, are able to mount a dynamic AAT response during an acute infection. That combination, Z-AAT reduction, protective basal levels with a meaningful proportion of wild-type M-AAT and a preserved acute phase response is the bar we set for 006. As we shared in May, this is exactly the profile we've consistently achieved. WVE-006 delivered a compelling therapeutic profile following only 3 months of treatment across both 200-milligram biweekly and 400-milligram monthly dosing.

Importantly, 006 RNA editing -- the 006 RNA editing approach produces only wild-type canonical MAAT and does not include bystander edited isoforms as seen with DNA editing. This specificity is crucial as bystander edits not only introduce functional activity risk, but may also render patients ineligible for future base editing or RNA editing therapies. Enrollment and dosing are now complete in the 200-milligram, 400-milligram and 600-milligram cohorts of RestorAATion-2, and we remain on track to share data from the 600-milligram monthly dosing cohort in the second half of this year, which will help inform an optimal dose regimen.

With the compelling profile of 006 we've observed to date, we're continuing to engage with the AATD community, key opinion leaders and advance our discussions with regulators. We're excited to announce today that the FDA granted our request for a meeting, which is planned for the end of this summer. During this, we intend to discuss a potential accelerated approval pathway for 006 in AATD. Feedback from this meeting will help inform our potential registration study design and our plans to efficiently advance 006 for ZZ individuals with alpha-1 who are in urgent need of new treatment options. Building on our success with 006, we are advancing our second RNA editing clinical candidate, WVE-008 for homozygous PNPLA3 I148M liver disease.

Similar to 006 and 007, our approach to 008 is deeply grounded in genetics. The PNPLA3 variant is a well-established driver of MASH and liver diseases more generally, yet there are no approved medicines that directly address this biology. There are an estimated 9 million homozygous PNPLA3, I148M carriers across the U.S. and Europe who are at a ninefold higher risk of dying from their liver disease compared to noncarriers. Currently, the only treatment options are nonprecision medicines aimed at reducing liver steatosis and early fibrosis with limited efficacy for these IL-48M carriers. Silencing PNPLA3 can only partially address disease biology.

It's likely to leave residual pathology since it knocks down all PNPLA3 protein without restoring healthy wild-type protein, which has important physiologic functions in the liver. As a result, silencing partially addresses steatosis, but inflammation and fibrosis remain unaddressed or worse. Recent clinical trials of PNPLA3 silencing support this notion as dose-dependent increases in liver enzymes were observed. By contrast, with 008, we aim to correct the I148M variant using our leading RNA editing capability, which is expected to restore PNPLA3 activity and lipid mobilization, reversing steatosis and fibrosis and improving liver health. In May, we shared preclinical data supporting our approach at EASL, the European Association for the Study of the Liver Congress.

We demonstrated that our PNPLA3 AIMers delivered substantial editing of the I148M transcript, exceeding the 50% threshold expected to lower risk for liver disease, achieved concentrations in the liver expected to support substantial editing and decreased lipid droplet density more than siRNA. In our upcoming first-in-human study of 008, we plan to leverage previously genotype populations to efficiently identify homozygous I148M carriers and accelerate enrollment. We will evaluate target engagement with circulating biomarkers and assess early signs of efficacy using noninvasive imaging. We remain on track for a CTA submission in 2026. With that, I'll turn the call over to Kyle to provide an update on our financials. Kyle?

Kyle Moran: Thanks, Chris. Our revenue for the second quarter of 2026 was $2.3 million compared to $8.7 million in the prior year quarter and relates to our ongoing collaboration agreement with GSK. Research and development expenses were $51.3 million in the second quarter of 2026 as compared to $43.5 million in the same period in 2025. The increase particularly reflects -- primarily reflects continued investment in advancing our clinical programs, including preparation for the Phase IIa portion of INLIGHT and continued progress on our RNA editing pipeline. Our G&A expenses were $24.8 million for the second quarter of 2026 as compared to $18 million for the prior year quarter.

The increase primarily reflects costs associated with supporting our expanding pipeline and preparing for the next stages of development. As a result, our net loss was $69.4 million for the second quarter of 2026 as compared to a net loss of $50.5 million in the prior year quarter. We ended the second quarter with $490.6 million in cash, cash equivalents and marketable securities, which we expect to be sufficient to fund operations into Q3 2028. While we expect to receive milestone payments from GSK in the second half of 2026, it's important to note the potential future milestones and other payments to us under our collaboration are not included in our cash runway.

I'll now turn the call back over to Paul for closing remarks.

Paul Bolno: Thank you, Kyle. As we look to the second half of 2026, we believe we are well positioned to unlock value across our pipeline. With 007, our Phase IIa trial in individuals with obesity is underway, and we are rapidly working to advance incretin combination and post- incretin maintenance studies later this year. With 006, we are on track to meet with regulators on a pathway to accelerated approval. And we are also working to bring our second RNA editing candidate into clinical development for PNPLA3 liver disease in the second half of this year.

Before turning to questions, I want to thank our team for the progress we've made and for their continued commitment to reimagining what's possible for patients. I'll now turn the call over to the operator. Operator?

Operator: [Operator Instructions] We'll take our first question from Yun Zhong with Wedbush.

Yun Zhong: So the question is on the 007 program for obesity. And I wanted to confirm that for the ongoing Phase IIa portion, the goal is to confirm that you are able to achieve 5% weight loss as compared to placebo at 12 months to support the advancement for this program into the indication of obesity. And then on combination therapy, I believe other programs have reported or will report data. And given the same mechanism of action, what would be your expectation on data from your own program? Do you think you will potentially be able to show any differentiation? Thank you.

Paul Bolno: I'll start with the second question, then we'll work backwards to the first question because I think the answer to the second question is, we do believe that I think it's valuable to see what others have been generating in that space, not just for the potential for increasing fat loss. And remember, these other data sets that people have seen in combination were in Phase IIa, high BMI, high visceral fat, high total fat patient populations. And that we're able to see, as you point out, substantial reductions in both fat, visceral fat in particular, and liver fat, we should remind that the liver fat was pretty substantial.

I think given that in comparison, both on preclinical ED50, where we're about threefold more potent and in our preclinical data where we've seen increased potency, I think we would expect to see those data as affirming and that we would continue to expect to see with greater, more durable knockdown, potentially better data. So I think it's great to see that the field sees that in the combination setting. I think we're also excited about maintenance because I think where we've generated data there and where the human genetics outlie, I think maintenance is an incredibly interesting opportunity for us in differentiation.

Getting back to your first question, which I think is critical for people to hear, the Phase IIa is designed, as you point out, to be able to elicit that regulatory and cross that regulatory threshold of 5%. I think as we've been pretty consistent with looking at other studies like BELIEVE trial of bimagrumab, where there was less fat loss in this healthy population than we saw out there. Actually, those that medicine had a greater lean mass gain than what we have. If we think about that equation and put our medicine into this population, we would expect to see no different, we should see weight loss.

I mean, bimagrumab had greater than 5% weight loss in that treatment setting. I think it's also important to point out that the Phase IIa design is more consequential than just looking and hitting that target. Remember, we built into the study intentionally by looking at diabetics and nondiabetics adding MRI-PDFF, the opportunity to expand this more broadly in cardiometabolic disease beyond just the obesity threshold in terms of looking at the treatment of MASH, where, again, we look at the comparators in this population, that ability to see substantial liver fat reduction is consequential in the field of MASH. And so we want to see that data. We'd want to see the data on hemoglobin A1c.

And we also want to see the data on lipid. So I think in the totality of this is a cardiometabolic drug, including obesity. I think this study is designed and poised to unlock that opportunity.

Operator: We'll take our next question from Samantha Semenkow with Citi.

Unknown Analyst: This is Ben on for Sam. I guess maybe following up on the first question. In the Phase IIa INLIGHT trial, what metrics are you focused on? And what magnitude of improvement do you need to see to support specific expansion into MASH or type 2 diabetes or the other cardiometabolic diseases?

Paul Bolno: Thank you. And I'll let Chris talk about the endpoints that we're looking at and then can affirm. Chris, can you talk about, the what we're evaluating.

Christopher Wright: Sure, sure. So we're looking at MRI-PDFF, so looking at liver fat in the Phase IIa study. And so I know that there are other compounds in the same mechanism in the same area that have shown substantial decreases in liver fat that really are highly competitive with what's out there in the MASH space. And then we'll also be looking at hemoglobin A1c. We are looking at both nondiabetics and diabetics, and that's a measure that can change over a relatively short time frame and can be utilized as a registration endpoint. So we're excited to see what types of benefits you would have there.

And then lastly, we'll be looking at a number of different lipid profiles to understand if there's a potential there as well for -- to move forward into a lipid registration type study since there's very tight connections between lipid levels and cardiovascular outcomes.

Paul Bolno: Just to add on, I mean, that in connection additionally with the other measurements. So being able to look at both depth and MRI, which will give us that opportunity to assess visceral fat volume and total fat. That's important because if we -- I know a lot of people want to always step back and kind of put these data sets of our Phase I up against other Phase II, III data sets and create tables. And I appreciate the need for folks to do that.

I think what is important is to remember in that low fat, low BMI, low visceral fat population that even when we do compare that against comparator studies where people said, oh, your visceral fat reductions look relatively similar. Our visceral fat compartment was a liter versus 5 liters, almost 5x as much visceral fat where we're seeing that reduction. So the ability that we've seen in this Phase I otherwise healthy population is highly encouraging. And so we do want to be able to -- for that comparator work, have MRI imaging to be able to set the comparators up where we have a high-resolution imaging system to be able to do that.

In addition, we'll look at other measurements like grip strength and others and be able to look at muscle retention because I do think when we do step back and think about this therapy in the context from a particular payer perspective and a patient perspective, yes, we want the cardiometabolic health benefits associated with that disease. But this muscle retention, as Erik pointed out, is critically important. I think we oftentimes think about muscle strength. We can be able to assess that, but muscle is also a metabolic organ.

And so the ability to look at that ability to retain and sustain muscle in the setting of that fat reduction are endpoints we'll look at as well, like weight circumference and total body weight. So again, there's a number of endpoints that we'll be assessing as part of the study broadly that encompass both obesity and cardiometabolic indications in totality.

Operator: Our next question comes from Steve Seedhouse with Cantor Fitzgerald.

Nicholas Econom: This is Nick on for Steve. We just wanted to clarify in the FDA meeting end of summer. Have you already received some feedback on an accelerated approval pathway and subsequently requested a meeting to discuss? Or do you not yet have any feedback yet on a proposed accelerated pathway and this meeting in the end of summer will constitute the first feedback from the FDA?

Paul Bolno: Thank you for the question. This would be the first meeting with the FDA. So when we submitted for the meeting, they granted that, and this is when it's scheduled. So we would expect after that meeting to provide an update after we have written feedback. So we do appreciate the clarifying question that this is the first request for meeting. And we're excited that instead of a written response, the FDA granted a face-to-face discussion on an accelerated approval pathway.

Operator: Our next question comes from Joe Schwartz with Leerink Partners.

Joseph Schwartz: I was wondering if you could give us some more insight into how enrollment is progressing in the higher BMI Phase IIa cohorts for 007 and what you're seeing in terms of screen failure rates and baseline characteristics? And when investors should expect the first meaningful data from these cohorts?

Christopher Wright: Yes. So we're currently making really great progress on enrollment. We're in the process of opening additional sites. And once we have everything up and running well, we'll be able to comment more on kind of the timing. But so far, it's been -- there's been really great interest in the study, and it's enrolling extremely well.

Paul Bolno: Yes. Just I mean, echo Chris' sentiment like momentum coming off the last data set high, both ex U.S. but also importantly on this study, U.S. So as we think about this study having actually the expansion for -- expand the number of sites and accelerate it. Also to Chris' point, remember, this study has 3-month time points and other assessments. We'll continue to look at the rate of enrollment to guide. While the potential is there for 2026, we have to see how we're progressing in the study ultimately to provide that guidance.

Operator: Our next question comes from Whitney Ijem with Canaccord Genuity.

Angela Qian: This is Angela on for Whitney. So maybe just another one on 007. Looking at the human genetic data, INHBE loss of function does demonstrate the improved fat distribution as you've discussed, but not necessarily correlated with BMI as we understand it. So I guess like what gives you confidence that we'll be able to see BMI improvement with monotherapy in the Phase IIa?

Paul Bolno: Yes. I think the correlation, and it's interesting, and I'll move back and forth with Erik on this one. But I think what's interesting when we go back, there was a poster that we shared and actually, Alnylam has done the work on a large -- I think it was 300 patients is kind of a natural history cohort in nondiabetics. And actually showed Activin E, if we think about the actual ligand itself, actually a strong correlation with BMI, insulin sensitivity and truncal fat. So the data and correlation between the ligand and BMI is well correlated.

I think the challenge in trying to -- and I think you bring up a very good point on the assessment and why BMI in itself is not a great indicator of body composition is you could be a body builder and have higher BMI. So I think the context of really thinking about the addition of comorbidities where you get higher subcutaneous fat, higher visceral fat in addition to that becomes an important criteria and characteristic as we think about improvements in body composition. But I think what's encouraging is, again, even in the setting in the Phase I otherwise healthy patients, we did see substantial reductions in subcutaneous fat, visceral fat 3.3% reduction of waste circumference.

And so I do think the ability to see those changes even in the lower BMI setting sets us up for encouraging changes to move to high BMI. But again, with comorbidity, those patients, when you look at their characteristics and disposition are also high subcu fat, high visceral fat. And obviously, that's mechanistically what we've seen in reduction in the animal models. Erik, I don't know if there's anything or if you want to just add additional comments to that.

Erik Ingelsson: Yes. I think you covered most of it, but maybe just to add a few things. So the phenotype in the genetic studies were adjusted for BMI. So just to design when we set that up now 20 years ago, those type of phenotypes look at body composition. We wanted to adjust out like an overall body size. So just by design, it won't be associated with BMI. That's the first thing. The second thing is that human genetic carriers, they have 50% reduction, and we think we need to get to kind of over 70% based on what we see in our animal data, where we definitely do see total weight loss.

And then I guess the last thing is that we already see total body fat reduction with one single dose at the 240-milligram cohort. So we're pretty confident about that now as we're rolling into higher BMI with much more excess fat to use and multiple doses that we will get to the real weight loss as well, just based on the total fat loss that will accumulate in the Phase II.

Operator: Our next question comes from Salim Syed with Mizuho.

Salim Syed: Paul, maybe just one from us on the DMD side. Can you just provide a little bit more color exactly what caused the shift here to, I guess, now evaluate potential partnerships in advance of filing the NDA for 531? And if you don't get the partnership, is there any scenario here where you still plan to file the NDA?

Paul Bolno: Thank you. I think we've been clear at the start of this year that we were going to seek a partnership for N531. And I think we remain consistent in discussions on partnering with N531. I think to the point of -- and the last part of the question of would we file absent the partner and advance file in advance of a partnership, I think we're going to continue to evaluate the space.

I think what's evolved in this space, particularly with the update that the existing PMO 53 Golodirsen is going to file for potential full approval early in the year, and there'll be regulatory feedback around that, I think, in advance of recognizing that you need to fully enroll or have well underway a confirmatory study in advance wouldn't be prudent at this point in time until we understand that pathway and continue to have the discussions that are ongoing around potential partnerships and collaborations. So I think we've just evaluated all of that relative to where the current funds are invested and that was the decision we made.

Operator: Our next question comes from Alec Stranahan with Bank of America.

Alec Stranahan: Maybe one for Paul. Curious if after regaining the rights to 006, whether the pace or the nature of the FDA interactions have changed within AATD. And I guess looking ahead to the meeting this summer, is your expectation kind of in line with endpoints and study size based on recent precedents or any sort of unique aspects of your data set that could warrant say, an even smaller study, for example?

Paul Bolno: No, thank you for the question. And I think the short answer to your first part of your question is yes. Obviously, by regaining the rights means that we can control the pace of regulatory interactions and with that, could obviously accelerate them. So that's obviously wonderful. I think to the second point, we wouldn't expect differences in terms of biomarker-driven approaches for potential pathway, but I think it's again incumbent upon us and which is why we want to have a face-to-face meeting to get alignment, not just on that biomarker-driven pathway to potential accelerated approval.

But as you point out, just because others have requirements in terms of duration of study and numbers of patients, may not be equivalent for us. If we're doing a repeat administration, it may not have to run as long a period of time. And one of the other nature of the conversation that we're interested in is being able to open and explore what the full approval pathway looks like and how we might be able to more efficiently design a study that could have an interim analysis for a biomarker-driven accelerated approval with the potential to sustain those patients on for full approval. So we expedite the time and pathway to get there.

So all of this will be the nature of the discussions with the agency, and we're excited to have that.

Operator: Our next question comes from Madison El-Saadi with B. Riley.

Madison Wynne El-Saadi: So what MRI-PDFF liver fat reduction would the team consider a meaningful cross read to MASH? Is this something we would benchmark against Rezdiffra, which I think was around a 30% relevant reduction? Or is there a population difference we should be aware of? And then maybe if you could just touch on your fall Investor Day, this is something that's really anchored by 006 regulatory update, obesity progress? Or is this really more about the broader earlier-stage platform?

Paul Bolno: Thanks, Madison. I think at a high level, I mean, look, as you point out, we've already seen from others in the field in a high BMI, high fat setting that they could achieve 44% reduction. So greater than existing therapies and products that are approved in MASH. So I think the potential is out there. I think the signals, I think we're going to look for similar signals and potentially the opportunity for more robust signals that we have a more potent drug, but also the ability to have a therapy to achieve that, which could potentially be, as a reminder, we have still the potential for once a year dosing.

So as we think about the opportunity in the field for once or twice a year dosing to be able to achieve that alongside beyond just the treatment of liver fat, all of the other potential cardiometabolic benefits that come with INHBE silencing, we think there's a tremendous opportunity in it as a differentiated product for the treatment of MASH, but we need to generate that data. And I think it's important, as Chris outlined, that the current Phase IIa study beyond obesity is designed to elicit these signals so that we can look at the data, evaluate that and evaluate a potential path forward.

As it relates to our fall research Day or Investor Day as it's evolved to, that's pretty consistent. I think you all have attended, we've done these now for nearly a decade. And so we try to do that consistent piece of understanding what's coming. I mean, if you think about the history over the last couple of years, it was INHBE introduction and then pass the clinic. Last year PNPLA3 passed the clinic. So I think there's an opportunity to learn about future programs. I think as we talked about, bispecific is an important deal that we're opening up and so the opportunity to continue to see more there.

We'll always guide if that's the best place for where data is coming or where updates are coming. As you also know, historically, if there's a meaningful update, we'll provide that absent having an intent to hold that for. So again, it's always been an opportunity for us to share whether that's data preclinically or clinically, we have that opportunity coming up. And we'll share more on what's going to be that schedule in the very near future.

Operator: Our next question comes from Catherine Novack with JonesTrading.

Catherine Novack: I just wanted to drill down on expectations for monotherapy body weight loss for 007 in patients with type 2 diabetes. We've seen combination data with incretins showing INHBE knockdown might help some size patients to therapy. But what do you exactly expect to see with monotherapy in type 2 diabetes relative to what you've seen in the healthy overweight patients?

Paul Bolno: Yes. No, thank you for the question because I think early on there were a lot of discussions that I think confounded this field into diabetic, nondiabetics and that, that would be different around thinking about combinations. And I think it's important as we think about how we bifurcated it. And again, as we shared on the prior question, the work that's encouraging is that there doesn't appear to be for INHBE in BMI and insulin sensitivity and truncal fat. That observational study that was run was in nondiabetics. So this correlation is not tied to a diabetic subcohort of population. It's the whole population that would be amenable to that.

So when we step back and look at it, we're not going to miss an opportunity. If there's a signal either in one versus the other, we'll have both. The real opportunity we have in bifurcating and studying the diabetic population is because we have hemoglobin A1c, we'll be able to look at what's seen in human genetics and the ability of INHBE or Activin E reduction to actually improve insulin sensitivity and improve hemoglobin A1c levels potentially. So we'll be able to see that signal.

But the study design, as we said, is designed to capture body weight reduction in a total -- in a patient population that has higher BMI, higher subcu fat, higher visceral fat, look for those cardiometabolic improvements more broadly. But again, not tied specifically to a subpopulation. And I think that was kind of a red herring like a year ago that I know spiraled into this being a diabetic subpopulation for effect. But actually, the data in human genetics and in the population studies that have been run don't demonstrate that to be an effect, but we'll have the study elicit that.

Operator: Our next question comes from Ben Burnett with Wells Fargo.

Benjamin Burnett: I wanted to ask about the 008 program as this is now moving towards the clinic, the PNPLA3 liver disease program. I think you mentioned that a 50% editing, you would expect to see sort of a positive clinical effect. How did you arrive at that threshold? And is that the threshold that you might expect in patients?

Paul Bolno: Erik, you want to speak to the genetics and the driver?

Erik Ingelsson: Yes. Thanks for the question. So this is anchored on the human genetics observations where it's known that individuals that are homozygous for this variant, they have a 9x higher risk of dying from liver disease during follow-up versus the heterozygous that are just mildly increased risk. And so the risk reduction, if you go from homozygous state to heterozygous state is more than 80%. So that's kind of what drives this 50%. That's the bar that we want to try to achieve. Getting higher than 50% is also better, but at 50%, we would expect to have the therapeutic effect. So that's kind of at the center of what. And yes.

Paul Bolno: And then just to follow on to that because I think as we spend more time on this program, I do think it's an exciting one. I think the confounding data too that's coming out on the siRNA silencing of that enzyme is equivalently important, right? So we're talking about now fixing it and repairing it and bringing it up to 50%. I think the human experiments that have shown that decreasing that continually actually leads to potential worsening in liver disease.

And we just to think about this not just in the fat accumulation, but in the inflammatory aspect and fibrotic aspect, which is actually this particular enzyme works on both where the fat is located and on that anti-inflammatory antifibrotic effect. And so I think on both sides, the data continues on human genetics, why 50%, but also why silencing it is potentially detrimental.

Operator: Next question comes from Cha Yang with Jefferies.

Cha Cha Yang: This is Cha on for Roger. Mostly just a question on timing for your Phase II. Can you just let us know what we can expect for your data releases? Are you still going to be doing updates for 3 months, 6 months, 9 months, et cetera? And then just a sense on timing for that.

Paul Bolno: Thanks. As we've said previously, the study is initiating. Recruitment is going extraordinarily well, all things moving. And so once we have a cadence for when we can expect that we don't have to provide multiple updates on guidance, we'll have a good sense of patients and timing, and we'll provide that updated guidance as soon as we have a sense of the enrollment. Chris, is there anything you want to add to that?

Christopher Wright: No I think you covered it. We're just bringing on some new sites and just trying to accelerate it as much as possible, and there's a lot of interest. And so once that's kind of at a steady state, we'll be able to provide guidance.

Operator: Our next question comes from Danielle Brill with Truist Securities.

Alexander Nackenoff: This is Alex on for Danielle. Question on AATD. I know it's a little bit early to talking about the potential commercial question. But as we think about the opportunity, any initial market research or anecdotes about physician or patient preference for a mechanism that is not a gene therapy, whether that's hesitation or awareness of off-target permanent editing potential of gene therapeutics. Just curious what your current temperature checks are from patients and clinicians.

Paul Bolno: Thank you, Alex. And yes, I mean, we're doing our market research and analysis, obviously, in preparation for feedback from the agency on potential pathways to accelerated approval. And they include not just as you outlined, patients and clinicians, but also payers. And I think as we're engaging around this, I think we're seeing a lot of support across all 3 constituencies.

To your point, hesitancy on permanent genetic mutations with the potential for editing cancer-associated genes and what that risk factor looks like to be discharged over time, the risk that maybe you might not be able to get -- be amenable to other editing therapies if you were to come on, not to mention, as you point out, the potential safety risk. So as we're seeing that, we're seeing a lot of support for RNA medicines and not dissimilar to other therapeutic spaces like TTR, where people are seeing if you can get through a redosable durable.

So pushing potential monthly dosing or less frequent, that ability to see that play out with correction, we're seeing a lot of support for that. And as we think about the payer conversations, I think the idea that you need like over a decade of safe durability to breakeven on an RNA medicine, we're seeing a lot of support on that side. So again, as we're testing the constituencies, we're continuing to see a lot of support for RNA medicine approach to ATP.

Operator: Our next question comes from Ananda Ghosh with H.C. Wainwright & Co.

Ananda Ghosh: Continuing on the diabetic question, historically, the impact of incretins on the body weight in T2D patients has been always lower compared to pure obese patients. So given the differentiated MOA of incretins, what are your thoughts? Like what do you think the 007 might have an impact on in the diabetic patients differentially? And then I have 2 follow-up questions.

Paul Bolno: Yes, Erik, I'll let you start, and then I'll join.

Erik Ingelsson: Yes. So I think that's a great question. It's actually kind of at the center of why we think it's important to look at diabetics and nondiabetics separately because we know that weight loss mechanisms are different mechanistically. For a mechanism like this that is directly driving weight loss through fat loss, we do think it has a lot of potential for diabetics. But to Paul's point, we also know based on both human genetics and observational studies that this effect is also important in nondiabetics. So that's why we're going to study both in the Phase IIa trial.

Paul Bolno: I don't have anything to add to that.

Operator: Our next question comes from Cassie Yuan with RBC Capital Markets.

Jiayi Yuan: Maybe Chris, on your PNPLA3 program, can you just elaborate how RNA editing of I148M variant is expected to be superior to siRNA silencing. But meanwhile, Madrigal recently in-licensed an siRNA. You did mention preclinical data showing [ Amer ] reduced, is it accumulation more effectively than siRNA and given evidence that PNPLA3 silencing may also lead residual pathology in inflammation and fibrosis. So just curious how you would articulate the potential clinical differentiation of 008 to patients and potential partners and how you're thinking about patient enrichment and selection for first-in-human study.

Paul Bolno: No, thank you. And one, I think there's a lot to unpack there. I think on one hand, as you point out, it is a commonly detected mutation. So when we think about the ability for PNPLA3, it's in consumer genetic tests. So since we had a patient here even just a week ago kind of discussing the disease from one of the liver foundations and she found out to have PNPLA3 liver disease through one of her consumer genetic tests like that and her kind of starting to diagnosis, she knew she had liver disease, was getting evaluated. And I think the drive to actually drive genetic testing there is increasing. So I think that's encouraging.

And there's work that we're doing, obviously, in preparation for the clinic about enriching and identifying these patients in advance. So again, work that can be done that Chris and the development team are doing to enhance the enrollment and speed with which we can generate human data sets. I think to your point, the growing body of evidence, both in preclinical and clinical data on silencing versus editing is continuing to accumulate. We shared at the last -- our Investor Day last year where we provided some of the preclinical data, yes, we see that there's a shift in terms of silencing where we can do SI, so we can knock it out if we wanted to.

Editing was much more efficient in terms of driving not just that reduction, but also improvements in other inflammatory biomarkers. I think more we can end up sharing there as we think ahead. I think what's encouraging as well as we think about this distinction is recent presentations at EASL on siRNA therapies that did show dose-dependent worsening in the liver disease.

So I think the clinical data is continuing to accumulate on what happens if you knock out that important enzyme and the data is continuing to obviously amass preclinically and with us going into the clinic in June 1, we'll demonstrate human data, the ability to show that by restoring the function of this enzyme as the human genetics suggest we should be able to make efficiently not just the treatment for what happens with fat, but the reason that enzyme may be at the center of so many different liver diseases beyond just MASH is a function of its impact on this reactive oxygen system, kind of this pro-inflammatory system.

And it's been seen time and time again that if you can increase this, you can improve the fibrotic side. I don't know, Erik, if there's anything to add on the preclinical data and Chris, on the Erik, if there's anything to add on the preclinical.

Erik Ingelsson: No, I think you were very comprehensive. The bottom line is that you want to restore it to a function. It has an important wild-type function. So if you knock it out, you can exacerbate some aspects of the disease, and that's really where we -- by using an RNA editing approach, we're restoring it back to normal.

Operator: Our last question comes from Mara Goldstein with Clear Street.

Mara Goldstein: I know it's late in the call, but I'm just curious if you can provide some color as you're thinking about sort of the cardiometabolic signals that you're looking for, for 007 in the trial, sort of how do you weigh that and -- or rank order what you'd be looking at and what the threshold might be?

Paul Bolno: Thank you. I'll step back from rank ordering. I think they're all important as we think about cardiometabolic diseases. They're all different, right? As we have elucidated like the ability, and I think this all stems as Erik shared during the remarks earlier, visceral fat drives -- we think about what's so important ultimately in this disease process is visceral fat as you go 5% to 10%, that difference, that increase in visceral fat, just 5% to 10% drives a whole bunch of different cardiometabolic output. So this ability to see that substantial reduction in the output of that becomes important as we think improvement, as we said, we've already seen 14% reduction, 15% reduction in visceral fat.

So we're consequentially changing that now in an otherwise healthy population. And again, being able to evaluate that in the IIa population is interesting for us, right, because it's going to allow us to look at each of these markers, what happens with hemoglobin A1c as a function, not just in stratifying patients, diabetic not, but really the impact on hemoglobin A1c, which by itself is a marker for registration in type 2 diabetes. What's happening with lipid levels and improvement in lipid levels as seen in the human genetics, but also potentially for insulin sensitivity as we think about HDL triglyceride ratios.

And then the ability to look at that in its compendium of obviously, fat loss and weight loss and obesity in more general. So I think -- and MASH with liver fat. So I think we're looking at all of these independently and in their global association with each other in the context of obesity and cardiometabolic disease. I don't know, Chris or Erik, if there's anything to add to that.

Christopher Wright: No, I would just say we'll look at the data and see where we're best differentiated and where we can move forward the fastest. And you can think about MASH, for example, where you can get an accelerated approval, that could be attractive if we're seeing strong effects on lipids there in the liver. So that's sort of how we're looking at it, just following the data and taking the best things forward into the most accelerated path we can to get this approved, yes.

Paul Bolno: Erik, anything to add?

Erik Ingelsson: No, I think you covered it. I think they're all -- I guess the only thing I would add is that it all comes back to the mechanism as in driving fat loss and decreasing visceral fat and that mechanism is really linked to all of these outcomes. So there are a lot of opportunities here.

Operator: Thank you. There are no further questions at this time. I'll now hand the call back over to Paul Bolno for closing remarks.

Paul Bolno: Thank you for joining our call this morning. We appreciate your continued support. Have a great day.

Operator: This concludes today's call. Thank you, everyone, for joining. You may now disconnect.

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