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Wave Life Sciences Unveils Promising Preclinical Data for Obesity Treatment WVE-007 at ADA Scientific Sessions
Wave Life Sciences Unveils Promising Preclinical Data for Obesity Treatment WVE-007 at ADA Scientific Sessions

Yahoo

time15-07-2025

  • Business
  • Yahoo

Wave Life Sciences Unveils Promising Preclinical Data for Obesity Treatment WVE-007 at ADA Scientific Sessions

Wave Life Sciences Ltd. (NASDAQ:WVE) is one of the best low priced pharma stocks to buy now. From June 20 to 23, Wave Life Sciences presented preclinical data for WVE-007, which is its investigational GalNAc-siRNA targeting INHBE mRNA, at the American Diabetes Association's 85th Annual Scientific Sessions in Chicago. The oral presentation was delivered on June 21 and highlighted WVE-007 as a potential novel and distinct obesity treatment designed to induce healthy weight loss by reducing fat while preserving muscle mass. WVE-007 functions by silencing INHBE mRNA, which in turn reduces the production of Activin E protein. Activin E is a lipolysis suppressor that is upregulated in obesity. By inhibiting Activin E, WVE-007 promotes lipolysis, or fat breakdown. A biotechnology laboratory filled with computers and equipment to support research. Human genetics provides strong support for INHBE as a therapeutic target. Individuals with a protective loss-of-function variant in one copy of the INHBE gene exhibit a healthier cardiometabolic profile, which includes less abdominal fat, lower triglycerides, and reduced risk of type 2 diabetes/T2D and cardiovascular disease/CAD. These individuals also show favorable associations with liver traits, such as reductions in cT1 (reflecting liver inflammation and fibrosis) and ALT (reflecting liver damage), without impacting liver fat. Wave Life Sciences Ltd. (NASDAQ:WVE) is a clinical-stage biotechnology company that designs, develops, and commercializes ribonucleic acid/RNA medicines through PRISM, which is a discovery and drug development platform. While we acknowledge the potential of WVE as an investment, we believe certain AI stocks offer greater upside potential and carry less downside risk. If you're looking for an extremely undervalued AI stock that also stands to benefit significantly from Trump-era tariffs and the onshoring trend, see our free report on the . READ NEXT: and . Disclosure: None. This article is originally published at Insider Monkey. Error while retrieving data Sign in to access your portfolio Error while retrieving data Error while retrieving data Error while retrieving data Error while retrieving data

iBio Presents Next-Generation Obesity and Cardiometabolic Pipeline Candidates on June 24 Conference Call
iBio Presents Next-Generation Obesity and Cardiometabolic Pipeline Candidates on June 24 Conference Call

Yahoo

time23-06-2025

  • Business
  • Yahoo

iBio Presents Next-Generation Obesity and Cardiometabolic Pipeline Candidates on June 24 Conference Call

Review of promising Myostatin and Activin E antibody data iBio to announce 3rd target in Astral Bio Collaboration Conference call Tuesday, June 24 at 8:30 a.m. ET SAN DIEGO, June 23, 2025 (GLOBE NEWSWIRE) -- iBio, Inc. (Nasdaq: IBIO), an AI-driven innovator of precision antibody therapies, today announced the Company will host a conference call on Tuesday, June 24, at 8:30 a.m. ET to review its latest advances in obesity and cardiometabolic disease treatments and announce a third target in the AstralBio Collaboration in addition to Myostatin and Activin Brenner, DVM, Ph.D., iBio's CEO and Chief Scientific Officer, will outline how iBio is pioneering the next generation of antibody medicines—targeted, longer-lasting, and potentially better tolerated therapies with more sustainable efficacy. Dr. Brenner will present a strategic overview of the obesity strategy, including details on their long acting Myostatin, IBIO-600, new preclinical data on Activin E and, more safe and effective treatment webcast of the live call may be accessed on the Investors section of the iBio website at A replay of the webcast will be available on the iBio website for approximately 60 days following the join the live call, participants need to access this link for dial-in numbers and a unique participation code. About iBio, Inc. iBio (Nasdaq: IBIO) is a cutting-edge biotech company leveraging AI and advanced computational biology to develop next-generation biopharmaceuticals for cardiometabolic diseases, obesity, cancer and other hard-to-treat diseases. By combining proprietary 3D modeling with innovative drug discovery platforms, iBio is creating a pipeline of breakthrough antibody treatments to address significant unmet medical needs. Our mission is to transform drug discovery, accelerate development timelines, and unlock new possibilities in precision medicine. For more information, visit or follow us on LinkedIn. Forward-Looking Statements Any statements contained in this press release about future expectations, plans, and prospects, as well as any other statements regarding matters that are not historical facts, may constitute 'forward-looking statements.' These statements include statements regarding pioneering the next generation of antibody medicines, which are potentially better tolerated therapies with more sustainable efficacy, and Activin E and amylin agonist, which are promising pathways for more safe and effective treatment options. The words 'anticipate,' 'believe,' 'continue,' 'could,' 'estimate,' 'expect,' 'intend,' 'may,' 'plan,' 'potential,' 'predict,' 'project,' 'should,' 'target,' 'will,' 'would' and similar expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Actual results may differ materially from those indicated by such forward-looking statements as a result of various important factors, including iBio's ability to obtain regulatory approvals for commercialization of its product candidates, or to comply with ongoing regulatory requirements; regulatory limitations relating to iBio's ability to promote or commercialize its product candidates for specific indications; acceptance of iBio's product candidates in the marketplace and the successful development, marketing or sale of products; and whether iBio will incur unforeseen expenses or liabilities or other market factors; and the other factors discussed in iBio's filings with the SEC including its Annual Report on Form 10-K for the year ended June 30, 2024 and its subsequent filings with the SEC on Forms 10-Q and 8-K. The information in this release is provided only as of the date of this release, and iBio undertakes no obligation to update any forward-looking statements contained in this release on account of new information, future events, or otherwise, except as required by law. Corporate Contact: iBio, Inc. Investor Relations ir@ Media Contacts: Ignacio Guerrero-Ros, Ph.D., or David Schull Russo Partners, LLC (858) 717-2310 or (646) 942-5604

Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions
Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions

Yahoo

time21-06-2025

  • Health
  • Yahoo

Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions

Presentation to highlight WVE-007 (INHBE GalNAc-siRNA) as a potential novel and unique obesity treatment leading to healthy weight loss and supporting preclinical data demonstrating potent and durable reduction in Activin E resulting in fat loss with muscle preservation New preclinical data demonstrate that a single dose of INHBE siRNA leads to lower inflammation of adipose tissue with strong suppression of pro-inflammatory M1 macrophages in visceral fat in DIO mice, highlighting potential mechanistic insights into the risk reduction for type 2 diabetes (T2D) and coronary artery disease (CAD) suggested by human genetics CAMBRIDGE, Mass., June 20, 2025 (GLOBE NEWSWIRE) -- Wave Life Sciences Ltd. (Nasdaq: WVE), a clinical-stage biotechnology company focused on unlocking the broad potential of RNA medicines to transform human health, today announced the presentation of preclinical data supporting WVE-007, its GalNAc-siRNA designed to silence INHBE mRNA, an obesity target with strong evidence from human genetics. The data demonstrate the ability of Wave's long-acting GalNAc-siRNA to reduce INHBE mRNA and Activin E protein, induce weight loss mainly through reduction of fat mass, and reduce pro-inflammatory macrophage recruitment in a diet-induced obese (DIO) mouse model. The data were highlighted today in an oral presentation at the American Diabetes Association's 85th Annual Scientific Sessions, taking place June 20 to 23, in Chicago. 'These exciting preclinical data highlighted in today's presentation both recapitulate human genetics findings and continue to support the potential of WVE-007 to drive weight reduction by reducing Activin E to induce lipolysis – or fat breakdown, preferentially reducing visceral fat, and decreasing inflammation of adipose tissue – all without impacting lean muscle mass. These data suggest a highly differentiated therapeutic profile with lower visceral fat, less insulin resistance and less inflammation, supporting potential for risk reduction of T2D, CAD and other obesity-related co-morbidities,' said Erik Ingelsson, MD, PhD, Chief Scientific Officer. 'Silencing of INHBE is an entirely orthogonal mechanism from GLP-1s, which are centrally acting and impact the digestive system and central nervous system to decrease appetite. If these preclinical data translate in the clinic, WVE-007 has the potential to transform the obesity treatment paradigm by delivering healthy weight loss, preservation of muscle mass, and infrequent dosing of once or twice a year. We are evaluating WVE-007 in our ongoing INLIGHT clinical trial in adults living with overweight or obesity, and we are on track to deliver the first clinical data in the second half of this year.' Human genetics provides strong evidence for INHBE as a therapeutic target. Individuals who have a protective loss-of-function variant in one copy of the INHBE gene have a healthier cardiometabolic profile, including less abdominal fat, lower triglycerides, and lower risk of type 2 diabetes and cardiovascular disease. These heterozygous carriers also exhibit favorable associations with liver traits, including reductions in cT1 (reflecting liver inflammation and fibrosis) and ALT (reflecting liver damage), with no impact on liver fat. The oral presentation titled, 'siRNA-INHBE Silencing in Mice Recapitulates Human Genetic Data and Demonstrates Improved Healthy Weight Loss Profile,' highlighted results from studies in DIO mice that evaluated monotherapy (INHBE-siRNA alone) as well as combination (INHBE siRNA and semaglutide), and maintenance (INHBE siRNA when semaglutide treatment is discontinued) treatment settings. Key results are as follows: A single dose of INHBE-siRNA led to robust target engagement, including reduction of INHBE mRNA and Activin E protein, a lipolysis suppressor that is upregulated in obesity. Liver INHBE mRNA was strongly correlated with serum Activin E levels following INHBE-siRNA treatment. A single dose of INHBE-siRNA led to weight loss on par with semaglutide. There was a decrease in diet-induced visceral adipose mass and shrinkage of adipocytes compared with PBS treatment, supporting the restoration of healthy adipose tissue with this mechanism of action. Muscle mass was preserved. Infiltration of activated macrophages in visceral adipose was significantly decreased by a single dose of INHBE-siRNA compared with PBS controls. INHBE-siRNA also significantly reduced proinflammatory M1 macrophage (CD11c positive) recruitment while sustaining levels of anti-inflammatory M2 macrophages in visceral fat, indicating an overall shift away from a pro-inflammatory state. When administered as an add-on to semaglutide, a single dose of INHBE-siRNA doubled the amount of weight loss, highlighting potential for combination treatment. Wave's INHBE siRNA curtailed rebound weight gain when semaglutide treatment was discontinued, highlighting its potential as an off-ramp and maintenance treatment following GLP-1 treatment. The full presentation can be accessed by visiting 'Scientific Presentations' on the Investors section of the Wave Life Sciences website: About Wave Life SciencesWave Life Sciences (Nasdaq: WVE) is a biotechnology company focused on unlocking the broad potential of RNA medicines to transform human health. Wave's RNA medicines platform, PRISM®, combines multiple modalities, chemistry innovation and deep insights in human genetics to deliver scientific breakthroughs that treat both rare and common disorders. Its toolkit of RNA-targeting modalities includes editing, splicing, RNA interference and antisense silencing, providing Wave with unmatched capabilities for designing and sustainably delivering candidates that optimally address disease biology. Wave's diversified pipeline includes clinical programs in Alpha-1 antitrypsin deficiency, Duchenne muscular dystrophy, Huntington's disease, and Obesity, as well as several preclinical programs utilizing the company's broad RNA therapeutics toolkit. Driven by the calling to 'Reimagine Possible', Wave is leading the charge toward a world in which human potential is no longer hindered by the burden of disease. Wave is headquartered in Cambridge, MA. For more information on Wave's science, pipeline and people, please visit and follow Wave on X (formerly Twitter) and LinkedIn. Forward-Looking Statements This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995, as amended, including, without limitation, statements regarding our expectations for WVE-007 and the anticipated therapeutic benefits thereof; the anticipated timing of clinical data from our INLIGHT clinical trial of WVE-007; the novelty of our approach to silence INHBE mRNA in order to achieve healthy, sustainable weight loss and the potential for once- or twice-yearly dosing; the potential benefits of WVE-007 over existing obesity therapies; the potential of WVE-007's mechanism (INHBE) as a novel and unique obesity treatment to induce fat loss, preserve muscle, and drive weight loss; our understanding of our preclinical data for WVE-007 and our expectations of how such data will translate in humans; beliefs that Wave's portfolio of RNA medicines is differentiated, potentially best-in-class and potentially transformative; the broad potential of Wave's RNA medicines pipeline and oligonucleotide chemistry and any benefits that may arise as a result thereof. The words 'may,' 'will,' 'could,' 'would,' 'should,' 'expect,' 'plan,' 'anticipate,' 'intend,' 'believe,' 'estimate,' 'predict,' 'project,' 'potential,' 'continue,' 'target' and similar expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Any forward-looking statements in this press release are based on management's current expectations and beliefs and are subject to a number of risks, uncertainties and important factors that may cause actual events or results to differ materially from those expressed or implied by any forward-looking statements contained in this press release and actual results may differ materially from those indicated by these forward-looking statements as a result of these risks, uncertainties and important factors, including, without limitation, the risks and uncertainties described in the section entitled 'Risk Factors' in Wave's most recent Annual Report on Form 10-K filed with the Securities and Exchange Commission (SEC), as amended, and in other filings Wave makes with the SEC from time to time. Wave undertakes no obligation to update the information contained in this press release to reflect subsequently occurring events or circumstances. Contact:Kate RauschVP, Corporate Affairs and Investor Relations+1 617-949-4827Investors:InvestorRelations@ Media:MediaRelations@ in to access your portfolio

Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions
Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions

Business Upturn

time20-06-2025

  • Health
  • Business Upturn

Wave Life Sciences Announces Oral Presentation of Preclinical Data Supporting WVE-007's Mechanism (INHBE) to Reduce Fat, Preserve Muscle, and Induce Healthy Weight Loss at ADA's Annual Scientific Sessions

Presentation to highlight WVE-007 (INHBE GalNAc-siRNA) as a potential novel and unique obesity treatment leading to healthy weight loss and supporting preclinical data demonstrating potent and durable reduction in Activin E resulting in fat loss with muscle preservation New preclinical data demonstrate that a single dose of INHBE siRNA leads to lower inflammation of adipose tissue with strong suppression of pro-inflammatory M1 macrophages in visceral fat in DIO mice, highlighting potential mechanistic insights into the risk reduction for type 2 diabetes (T2D) and coronary artery disease (CAD) suggested by human genetics CAMBRIDGE, Mass., June 20, 2025 (GLOBE NEWSWIRE) — Wave Life Sciences Ltd. (Nasdaq: WVE), a clinical-stage biotechnology company focused on unlocking the broad potential of RNA medicines to transform human health, today announced the presentation of preclinical data supporting WVE-007, its GalNAc-siRNA designed to silence INHBE mRNA, an obesity target with strong evidence from human genetics. The data demonstrate the ability of Wave's long-acting GalNAc-siRNA to reduce INHBE mRNA and Activin E protein, induce weight loss mainly through reduction of fat mass, and reduce pro-inflammatory macrophage recruitment in a diet-induced obese (DIO) mouse model. The data were highlighted today in an oral presentation at the American Diabetes Association's 85th Annual Scientific Sessions, taking place June 20 to 23, in Chicago. 'These exciting preclinical data highlighted in today's presentation both recapitulate human genetics findings and continue to support the potential of WVE-007 to drive weight reduction by reducing Activin E to induce lipolysis – or fat breakdown, preferentially reducing visceral fat, and decreasing inflammation of adipose tissue – all without impacting lean muscle mass. These data suggest a highly differentiated therapeutic profile with lower visceral fat, less insulin resistance and less inflammation, supporting potential for risk reduction of T2D, CAD and other obesity-related co-morbidities,' said Erik Ingelsson, MD, PhD, Chief Scientific Officer. 'Silencing of INHBE is an entirely orthogonal mechanism from GLP-1s, which are centrally acting and impact the digestive system and central nervous system to decrease appetite. If these preclinical data translate in the clinic, WVE-007 has the potential to transform the obesity treatment paradigm by delivering healthy weight loss, preservation of muscle mass, and infrequent dosing of once or twice a year. We are evaluating WVE-007 in our ongoing INLIGHT clinical trial in adults living with overweight or obesity, and we are on track to deliver the first clinical data in the second half of this year.' Human genetics provides strong evidence for INHBE as a therapeutic target. Individuals who have a protective loss-of-function variant in one copy of the INHBE gene have a healthier cardiometabolic profile, including less abdominal fat, lower triglycerides, and lower risk of type 2 diabetes and cardiovascular disease. These heterozygous carriers also exhibit favorable associations with liver traits, including reductions in cT1 (reflecting liver inflammation and fibrosis) and ALT (reflecting liver damage), with no impact on liver fat. The oral presentation titled, 'siRNA-INHBE Silencing in Mice Recapitulates Human Genetic Data and Demonstrates Improved Healthy Weight Loss Profile,' highlighted results from studies in DIO mice that evaluated monotherapy (INHBE-siRNA alone) as well as combination (INHBE siRNA and semaglutide), and maintenance (INHBE siRNA when semaglutide treatment is discontinued) treatment settings. Key results are as follows: A single dose of INHBE-siRNA led to robust target engagement, including reduction of INHBE mRNA and Activin E protein, a lipolysis suppressor that is upregulated in obesity. Liver INHBE mRNA was strongly correlated with serum Activin E levels following INHBE-siRNA treatment. A single dose of INHBE-siRNA led to weight loss on par with semaglutide. There was a decrease in diet-induced visceral adipose mass and shrinkage of adipocytes compared with PBS treatment, supporting the restoration of healthy adipose tissue with this mechanism of action. Muscle mass was preserved. Infiltration of activated macrophages in visceral adipose was significantly decreased by a single dose of INHBE-siRNA compared with PBS controls. INHBE-siRNA also significantly reduced proinflammatory M1 macrophage (CD11c positive) recruitment while sustaining levels of anti-inflammatory M2 macrophages in visceral fat, indicating an overall shift away from a pro-inflammatory state. When administered as an add-on to semaglutide, a single dose of INHBE-siRNA doubled the amount of weight loss, highlighting potential for combination treatment. Wave's INHBE siRNA curtailed rebound weight gain when semaglutide treatment was discontinued, highlighting its potential as an off-ramp and maintenance treatment following GLP-1 treatment. The full presentation can be accessed by visiting 'Scientific Presentations' on the Investors section of the Wave Life Sciences website: About Wave Life Sciences Wave Life Sciences (Nasdaq: WVE) is a biotechnology company focused on unlocking the broad potential of RNA medicines to transform human health. Wave's RNA medicines platform, PRISM®, combines multiple modalities, chemistry innovation and deep insights in human genetics to deliver scientific breakthroughs that treat both rare and common disorders. Its toolkit of RNA-targeting modalities includes editing, splicing, RNA interference and antisense silencing, providing Wave with unmatched capabilities for designing and sustainably delivering candidates that optimally address disease biology. Wave's diversified pipeline includes clinical programs in Alpha-1 antitrypsin deficiency, Duchenne muscular dystrophy, Huntington's disease, and Obesity, as well as several preclinical programs utilizing the company's broad RNA therapeutics toolkit. Driven by the calling to 'Reimagine Possible', Wave is leading the charge toward a world in which human potential is no longer hindered by the burden of disease. Wave is headquartered in Cambridge, MA. For more information on Wave's science, pipeline and people, please visit and follow Wave on X (formerly Twitter) and LinkedIn. Forward-Looking Statements This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995, as amended, including, without limitation, statements regarding our expectations for WVE-007 and the anticipated therapeutic benefits thereof; the anticipated timing of clinical data from our INLIGHT clinical trial of WVE-007; the novelty of our approach to silence INHBE mRNA in order to achieve healthy, sustainable weight loss and the potential for once- or twice-yearly dosing; the potential benefits of WVE-007 over existing obesity therapies; the potential of WVE-007's mechanism (INHBE) as a novel and unique obesity treatment to induce fat loss, preserve muscle, and drive weight loss; our understanding of our preclinical data for WVE-007 and our expectations of how such data will translate in humans; beliefs that Wave's portfolio of RNA medicines is differentiated, potentially best-in-class and potentially transformative; the broad potential of Wave's RNA medicines pipeline and oligonucleotide chemistry and any benefits that may arise as a result thereof. The words 'may,' 'will,' 'could,' 'would,' 'should,' 'expect,' 'plan,' 'anticipate,' 'intend,' 'believe,' 'estimate,' 'predict,' 'project,' 'potential,' 'continue,' 'target' and similar expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Any forward-looking statements in this press release are based on management's current expectations and beliefs and are subject to a number of risks, uncertainties and important factors that may cause actual events or results to differ materially from those expressed or implied by any forward-looking statements contained in this press release and actual results may differ materially from those indicated by these forward-looking statements as a result of these risks, uncertainties and important factors, including, without limitation, the risks and uncertainties described in the section entitled 'Risk Factors' in Wave's most recent Annual Report on Form 10-K filed with the Securities and Exchange Commission (SEC), as amended, and in other filings Wave makes with the SEC from time to time. Wave undertakes no obligation to update the information contained in this press release to reflect subsequently occurring events or circumstances. Contact:Kate RauschVP, Corporate Affairs and Investor Relations +1 617-949-4827

iBio's First-in-Class Activin E Antibody Achieves >26% Fat Reduction Without Muscle Loss and Shows Synergy with GLP-1s in Preclinical Model
iBio's First-in-Class Activin E Antibody Achieves >26% Fat Reduction Without Muscle Loss and Shows Synergy with GLP-1s in Preclinical Model

Yahoo

time05-05-2025

  • Health
  • Yahoo

iBio's First-in-Class Activin E Antibody Achieves >26% Fat Reduction Without Muscle Loss and Shows Synergy with GLP-1s in Preclinical Model

Activin E antibody demonstrates significant decrease in fat in obese mice by reducing visceral fat depots, which are strongly linked to increased risk of cardiovascular and metabolic diseases, resulting in a 26% reduction in fat mass with no loss in muscle Strong synergistic effect on fat mass (77% reduction) was observed when the Activin E antibody was combined with a GLP-1 receptor agonist, resulting in total weight loss of 35.3%, 7.5% greater than GLP-1 alone SAN DIEGO, May 05, 2025 (GLOBE NEWSWIRE) -- iBio, Inc. (Nasdaq: IBIO), an AI-driven innovator of precision antibody therapies, today announced new promising preclinical data for its first-in-class Activin E antibody unveiled in January. Data from the recently completed 4-week study in diet-induced obese mice show a 26% reduction in fat mass following treatment with the Activin E antibody, with muscle mass fully preserved. These findings highlight a significant fat loss can be achieved without the double-digit weight reductions typically required by other obesity drugs. GLP-1 receptor agonists are effective at promoting weight loss. However, they can also reduce lean body mass, including muscle, which may limit some of the intended health benefits. In contrast, fat-specific weight loss is considered a higher-quality form of weight loss. It reduces fat—linked to lower risk of heart and metabolic diseases—while preserving muscle, which helps maintain strength, supports a healthy metabolism, and may prevent or reduce weight regain over time. 'We believe achieving high-quality weight loss, by reducing fat mass while preserving muscle, is essential in addressing the obesity epidemic,' said Martin Brenner, DVM, PhD, Chief Executive Officer and Chief Scientific Officer of iBio. 'For example, a person with a BMI of 30 is classified as obese and often has a body fat percentage exceeding 25%. Reducing fat by 25% while maintaining muscle mass and strength could shift them into a healthier weight category without compromising physical function.' The study also analyzed specific fat depots in obese mice and found a significant 31% reduction in subcutaneous fat. More notably, reductions of 34% and 37% were observed in the epididymal and retroperitoneal fat depots, respectively—both of which are forms of visceral fat closely linked to increased risk of cardiometabolic disease. When combined with a GLP-1 receptor agonist, the Activin E antibody produced additive effects, reducing total fat mass by 77%. Subcutaneous fat loss increased to 74%, while visceral fat depots—epididymal and retroperitoneal—were reduced by 69% and 81%, respectively. The data was presented at the 14th International BMP Conference that occurred May 2–6 in Philadelphia, Pennsylvania. About iBio, Inc. iBio (Nasdaq: IBIO) is a cutting-edge biotech company leveraging AI and advanced computational biology to develop next-generation biopharmaceuticals for cardiometabolic diseases, obesity, cancer and other hard-to-treat diseases. By combining proprietary 3D modeling with innovative drug discovery platforms, iBio is creating a pipeline of breakthrough antibody treatments to address significant unmet medical needs. Our mission is to transform drug discovery, accelerate development timelines, and unlock new possibilities in precision medicine. For more information, visit or follow us on LinkedIn. Forward-Looking Statements Certain statements in this press release constitute "forward-looking statements" within the meaning of the federal securities laws. Words such as "may," "might," "will," "should," "believe," "expect," "anticipate," "estimate," "continue," "predict," "forecast," "project," "plan," "intend" or similar expressions, or statements regarding intent, belief, or current expectations, are forward-looking statements. These forward-looking statements are based upon current estimates and assumptions and include statements regarding the therapeutic potential of Activin E as a target for cardiometabolic disorders and obesity; Activin E being a promising novel therapeutic target whose inhibition is believed to induce fat-selective weight loss and offer protection against obesity and cardiometabolic disease; plans to rapidly advance testing of the antibody in more complex models; the in-licensed antibody being the first functional inhibitor of Activin E; inhibiting Activin E-mediated signaling offering a novel therapeutic strategy to reduce internal abdominal fat while preserving muscle mass potentially reversing obesity, preventing diabetes, and improving overall cardiometabolic health. As one of several cellular components involved in cardiometabolic regulation; Activin E, along with amylin, GLP-1 and others, having the potential to be targeted simultaneously to yield synergistic benefits for patients; and the antibody having the potential to deliver meaningful benefits to patients. While iBio believes these forward-looking statements are reasonable, undue reliance should not be placed on any such forward-looking statements, which are based on information available to us on the date of this release. These forward-looking statements are subject to various risks and uncertainties, many of which are difficult to predict that could cause actual results to differ materially from current expectations and assumptions from those set forth or implied by any forward-looking statements. Important factors that could cause actual results to differ materially from current expectations include, among others, the ability of Activin E to be a successful target for cardiometabolic disorders and obesity and iBio's antibody to induce fat-selective weight loss and offer protection against obesity and cardiometabolic disease; iBio's ability to obtain regulatory approvals for commercialization of its product candidates, or to comply with ongoing regulatory requirements; regulatory limitations relating to iBio's ability to promote or commercialize its product candidates for specific indications; acceptance of iBio's product candidates in the marketplace and the successful development, marketing or sale of products; and whether iBio will incur unforeseen expenses or liabilities or other market factors; and the other factors discussed in iBio's filings with the SEC including its Annual Report on Form 10-K for the year ended June 30, 2024 and its subsequent filings with the SEC on Forms 10-Q and 8-K. The information in this release is provided only as of the date of this release, and iBio undertakes no obligation to update any forward-looking statements contained in this release on account of new information, future events, or otherwise, except as required by law. Corporate Contact:iBio, Relationsir@ Media Contacts:Ignacio Guerrero-Ros, Ph.D., or David SchullRusso Partners, 717-2310 or (646) 942-5604Sign in to access your portfolio

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