OnKure Therapeutics to Host Virtual KOL Event to Discuss PI3Kα Inhibitor Medicines: Selectivity Matters & Pan-Mutant Allosteric Inhibition Delivers, on July 15, 2026

On July 2, 2026 OnKure Therapeutics, Inc. (Nasdaq: OKUR), a clinical-stage biopharmaceutical company focused on developing novel precision medicines, reported that it will host a virtual key opinion leader (KOL) event on Wednesday, July 15, 2026 at 11:00 AM ET featuring Benjamin F. Cravatt, PhD (The Scripps Research Institute) and Robert Abraham, PhD (Engine Biosciences). They will join company management to discuss the significance of PI3Kα selectivity and the Company’s structure-based drug design approach for discovering allosteric pan-mutant PI3Kα inhibitors. To register, click here.

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Management will provide an overview of OnKure’s strategy for designing its portfolio of next-generation pan-mutant PI3Kα inhibitors.

A live question and answer session will follow the formal presentations.

About Benjamin F. Cravatt, PhD
Benjamin F. Cravatt, PhD, is Professor and Norton B. Gilula Chair of Chemical Biology in the Department of Chemistry at The Scripps Research Institute. His research group has developed several innovative chemical technologies that enable and expand protein and drug discovery on a global scale. Further application of these methods has offered insights to biological pathways that play important roles in human physiology and disease. Dr. Cravatt obtained his undergraduate education at Stanford University, receiving a B.S. in the Biological Sciences and a B.A. in History. He then received a Ph.D. from The Scripps Research Institute (TSRI) in 1996. Professor Cravatt joined the faculty at TSRI in 1997. Dr. Cravatt is co-founder of several biotechnology companies, including Activx Biosciences, Abide Therapeutics, Vividion Therapeutics, and Belharra Therapeutics. Dr. Cravatt’s honors include a Searle Scholar Award, the Eli Lilly Award in Biological Chemistry, the ASBMB Merck Award, the Wolf Prize in Chemistry, the Heinrich Wieland Prize, the Tetrahedron Award for Creativity in Bioorganic and Medicinal Chemistry, The NAS Award in Chemical Science, and memberships in the National Academies of Inventors, Medicine, and Sciences.

About Robert Abraham, PhD
Robert Abraham, PhD, currently serves as the Chief Scientific Officer at Engine Biosciences. He has previously held leadership roles in several successful biotechnology companies, including Odyssey Therapeutics and Vividion Therapeutics. Prior to entering the biotech sector, Bob was Chief Scientific Officer of the Oncology R&D Group at Pfizer, where he led teams that delivered multiple clinical candidates and 11 FDA-approved oncology drugs. One of those clinical candidates, gedatolisib, is a pan-PI3K/mTOR inhibitor, which has recently delivered highly promising clinical data in ER+ HER2- breast cancer patients. Before joining the pharmaceutical industry, Bob was a prolific immunology and pharmacology researcher with over 230 scientific publications while at Sanford-Burnham-Prebys Medical Research Institute, Duke University Medical Center, and the Mayo Clinic. His research accomplishments included the molecular cloning and functional characterization of the key PI3K pathway component, mTOR. He is also a member of the scientific advisory boards of several public and private companies, and a retained scientific advisor for Google Ventures.

About Next-Generation PI3Kα Pan-Mutant Programs

OnKure is advancing a portfolio that includes two next-generation PI3Kα pan-mutant inhibitor programs, OKI-345 for breast cancer and OKI-355 for vascular anomalies. These candidates are designed to selectively inhibit mutant PI3Kα while sparing wildtype PI3Kα, with the potential to deliver a wider therapeutic index while avoiding class-limiting toxicities associated with first-generation PI3Kα inhibitors. By providing high and sustained target coverage across all hotspot PI3Kα mutations, these programs are designed to support the potential for deep and durable responses as both monotherapy and in combination regimens. In addition, the Company’s pan-mutant candidates are designed to have minimal drug-drug interaction potential, supporting broad combinability with current standards of care. Together with a commanding intellectual property estate, OnKure believes it is well positioned to address a significant unmet need across various PI3Kα-driven indications.

PI3Kα mutations represent the most common driver alterations in key subtypes of vascular anomalies, where PIK3CA variants lead to dysregulated signaling that promotes abnormal cell growth, proliferation, and survival. OnKure believes that OKI-355 has significant potential to address this large and underserved patient population as a differentiated systemic chronic therapy.

OnKure plans to submit an Investigational New Drug (IND) application to the U.S. Food and Drug Administration (FDA) for each of OKI‑345 and OKI‑355 in the first half of 2027.

(Press release, OnKure Therapeutics, JUL 2, 2026, View Source [SID1234669056])

Partner Therapeutics Announces Publication of Results From the eNRGy Trial of Zenocutuzumab in Patients with NRG1+ Cholangiocarcinoma in Journal of Clinical Oncology (JCO)

On July 2, 2026 Partner Therapeutics, Inc. (PTx), a private, fully integrated biotechnology company, reported that results from the cholangiocarcinoma cohort of the eNRGy trial (NCT02912949) have been published in the Journal of Clinical Oncology (JCO).1 These data supported the recent U.S. Food and Drug Administration (FDA) approval of BIZENGRI (zenocutuzumab-zbco) for the treatment of adults with advanced unresectable or metastatic cholangiocarcinoma harboring an NRG1 gene fusion with disease progression on or after prior systemic therapy. The approval was expedited by PTx’s receipt of a Commissioner’s National Priority Voucher (CNPV) underscoring the urgent unmet need in this patient population.

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"The FDA approval of BIZENGRI and the publication of these data in the Journal of Clinical Oncology highlight the clinical relevance of the eNRGy trial and reinforces our commitment to advancing therapies for patients with unmet medical needs, including those with NRG1 fusion-positive cholangiocarcinoma. The JCO publication further supports the therapeutic potential of zenocutuzumab in this rare population, which has historically experienced limited treatment options and poor outcomes with chemotherapy."

— Fiona Garner, Executive Director, Clinical Development, Partner Therapeutics

Data in NRG1+ Cholangiocarcinoma

The eNRGy trial is a multicenter, open-label, phase 2 study evaluating zenocutuzumab in adults with advanced solid tumors harboring NRG1 gene fusions. Data published in JCO include 22 patients with unresectable or metastatic NRG1 fusion-positive cholangiocarcinoma, of whom 19 were evaluable for efficacy. Most patients were pre-treated, with a median of one prior line of therapy (range up to 6). Notably, RNA-based next-generation sequencing (NGS) identified 100% of NRG1 fusions, compared with 29% detected by DNA-based testing.

The investigator-assessed overall response rate (ORR), defined as the proportion of patients with tumor shrinkage or disappearance, was 36.8%. Median duration of response was 7.4 months, and median progression-free survival was 9.2 months. The clinical benefit rate was 57.9%, defined as the percentage of patients achieving a complete or partial response or stable disease lasting longer than 6 months.

Zenocutuzumab was generally well tolerated. Most treatment-related adverse events were grade 1-2, with diarrhea (27.3%), fatigue (18.2%), and nausea (13.6%) being reported most frequently. No patients discontinued treatment due to treatment-related adverse events.

"The FDA approval of zenocutuzumab and the publication of these data represent important progress for patients with NRG1 fusion–positive cholangiocarcinoma. Limited efficacy and poor tolerability of second-line chemotherapy remain a significant clinical challenge in the treatment of patients with advanced cholangiocarcinoma. Zenocutuzumab provided meaningful tumor responses, durable clinical benefit, and a favorable tolerability profile. These findings also underscore the critical importance of comprehensive molecular testing—particularly tissue-based RNA sequencing—to reliably identify NRG1 gene fusions and ensure patients are matched with appropriate targeted therapy."

— James M. Cleary, MD, PhD, Director, Clinical Research, Division of Gastrointestinal Oncology, Dana-Farber Cancer Institute; and senior author.

FDA Approval in Three NRG1+ Solid Tumors

BIZENGRI was first FDA approved under accelerated approval in 2024 for advanced, unresectable or metastatic non-small cell lung cancer and pancreatic adenocarcinoma for patients harboring an NRG1 gene fusion on or after systemic therapy. In May 2026, BIZENGRI received FDA approval for advanced, unresectable or metastatic cholangiocarcinoma for patients harboring an NRG1 gene fusion on or after systemic therapy. Additionally, zenocutuzumab is included in the National Comprehensive Cancer Network (NCCN) Clinical Practice Guidelines in Oncology (NCCN Guidelines) for non-small cell lung cancer, pancreatic adenocarcinoma, and cholangiocarcinoma.

For more information on the eNRGy trial and zenocutuzumab-zbco, please visit www.partnertx.com.

About NRG1+ Cholangiocarcinoma

Cholangiocarcinoma is a rare, aggressive malignancy of the bile ducts with an all-stage 5-year overall survival of less than 15%. NRG1 gene fusions occur in fewer than 1% of cholangiocarcinoma cases. NRG1 fusions typically occur in patients who are otherwise driver negative, leaving affected patients, many of whom are younger adults, without approved targeted therapy. Standard cytotoxic regimens carry substantial toxicity, and second-line options such as FOLFOX produce objective responses in only approximately 5% of patients.

About NRG1 Gene Fusions

NRG1 fusions are unique cancer drivers that create oncogenic chimeric ligands rather than the more widely described chimeric receptors (NTRK, RET, ROS1, ALK, and FGFR fusions). The chimeric ligands bind to HER3, triggering HER2/HER3 heterodimerization and activating downstream signaling pathways that cause cancer cells to grow and proliferate. Zenocutuzumab-zbco is a bispecific antibody that blocks HER2/HER3 dimerization and NRG1 fusion interactions with HER3, resulting in the suppression of these pathways. Comprehensive molecular testing, notably the combination of tissue-based DNA and RNA next generation sequencing, is essential to identify rare and actionable gene fusions like NRG1.

About BIZENGRI (zenocutuzumab-zbco)

INDICATIONS

BIZENGRI is indicated for the treatment of adults with advanced unresectable or metastatic non-small cell lung cancer (NSCLC) harboring a neuregulin 1 (NRG1) gene fusion with disease progression on or after prior systemic therapy.*

BIZENGRI is indicated for the treatment of adults with advanced unresectable or metastatic pancreatic adenocarcinoma harboring a neuregulin 1 (NRG1) gene fusion with disease progression on or after prior systemic therapy.*

BIZENGRI is indicated for the treatment of adults with advanced unresectable or metastatic cholangiocarcinoma harboring a neuregulin 1 (NRG1) gene fusion with disease progression on or after prior systemic therapy.

*This indication is approved under accelerated approval based on overall response rate and duration of response. Continued approval for this indication may be contingent upon verification and description of clinical benefit in a confirmatory trial(s).

Important Safety Information

BOXED WARNING: EMBRYO-FETAL TOXICITY

Embryo-Fetal Toxicity: Exposure to BIZENGRI during pregnancy can cause embryo-fetal harm. Advise patients of this risk and the need for effective contraception.

WARNINGS AND PRECAUTIONS

Infusion-Related Reactions/Hypersensitivity/Anaphylactic Reactions

BIZENGRI can cause serious and life-threatening infusion-related reactions (IRRs), hypersensitivity and anaphylactic reactions. Signs and symptoms of IRR may include chills, nausea, fever, and cough.

In the eNRGy study, 13% of patients experienced IRRs, all were Grade 1 or 2; 91% occurred during the first infusion.

Administer BIZENGRI in a setting with emergency resuscitation equipment and staff who are trained to monitor for IRRs and to administer emergency medications. Monitor patients closely for signs and symptoms of infusion reactions during infusion and for at least 1 hour following completion of first BIZENGRI infusion and as clinically indicated. Interrupt BIZENGRI infusion in patients with ≤ Grade 3 IRRs and administer symptomatic treatment as needed. Resume infusion at a reduced rate after resolution of symptoms. Immediately stop the infusion and permanently discontinue BIZENGRI for Grade 4 or life-threatening IRR or hypersensitivity/anaphylaxis reactions.

Interstitial Lung Disease/Pneumonitis

BIZENGRI can cause serious and life-threatening interstitial lung disease (ILD)/pneumonitis.

In the eNRGy study, ILD/pneumonitis occurred in 2 (1.1%) patients treated with BIZENGRI. Grade 2 ILD/pneumonitis (Grade 2) resulting in permanent discontinuation of BIZENGRI occurred in 1 (0.6%) patient. Monitor for new or worsening pulmonary symptoms indicative of ILD/pneumonitis (e.g., dyspnea, cough, fever). Immediately withhold BIZENGRI in patients with suspected ILD/pneumonitis and administer corticosteroids as clinically indicated.

Permanently discontinue BIZENGRI if ILD/pneumonitis ≥ Grade 2 is confirmed.

Left Ventricular Dysfunction

BIZENGRI can cause left ventricular dysfunction.

Left ventricular ejection fraction (LVEF) decrease has been observed with anti-HER2 therapies, including BIZENGRI. Treatment with BIZENGRI has not been studied in patients with a history of clinically significant cardiac disease or LVEF less than 50% prior to initiation of treatment.

In the eNRGy study, Grade 2 LVEF decrease (40%-50%; 10 – 19% drop from baseline) occurred in 2% of evaluable patients. Cardiac failure without LVEF decrease occurred in 1.7% of patients, including 1 (0.6%) fatal event.

Before initiating BIZENGRI, evaluate LVEF and monitor at regular intervals during treatment as clinically indicated. For LVEF of less than 45% or less than 50% with absolute decrease from baseline of 10% or greater which is confirmed, or in patients with symptomatic congestive heart failure (CHF), permanently discontinue BIZENGRI.

Embryo-Fetal Toxicity

Based on its mechanism of action, BIZENGRI can cause fetal harm when administered to a pregnant woman. No animal reproduction studies were conducted with BIZENGRI. In post marketing reports, use of a HER2-directed antibody during pregnancy resulted in cases of oligohydramnios manifesting as fatal pulmonary hypoplasia, skeletal abnormalities, and neonatal death. In animal models, studies have demonstrated that inhibition of HER2 and/or HER3 results in impaired embryo-fetal development, including effects on cardiac, vascular and neuronal development, and embryolethality. Advise patients of the potential risk to a fetus. Verify the pregnancy status of females of reproductive potential prior to the initiation of BIZENGRI. Advise females of reproductive potential to use effective contraception during treatment with BIZENGRI and for 2 months after the last dose.

ADVERSE REACTIONS

NRG1 Gene Fusion Positive Unresectable or Metastatic NSCLC

Serious adverse reactions occurred in 25% of patients with NRG1 gene fusion positive NSCLC who received BIZENGRI (n=99). Serious adverse reactions in ≥ 2% of patients included pneumonia (n=4) dyspnea and fatigue (n=2 each).

Fatal adverse reactions occurred in 3 (3%) patients and included respiratory failure (n=2), and cardiac failure (n=1).

Permanent discontinuation of BIZENGRI due to an adverse reaction occurred in 3% of patients. Adverse reactions resulting in permanent discontinuation of BIZENGRI included dyspnea, pneumonitis and sepsis (n=1 each).

In patients with NRG1 gene fusion positive NSCLC who received BIZENGRI, the most common (>20%) adverse reactions, including laboratory abnormalities, were decreased hemoglobin (35%), increased alanine aminotransferase (30%), decreased magnesium (28%), increased alkaline phosphatase (27%), decreased phosphate (26%), diarrhea (25%), musculoskeletal pain (23%), increased gamma-glutamyl transferase (23%), increased aspartate aminotransferase (22%), and decreased potassium (21%).

NRG1 Gene Fusion Positive Unresectable or Metastatic Pancreatic Adenocarcinoma

Serious adverse reactions occurred in 23% of patients with NRG1 gene fusion positive pancreatic adenocarcinoma who received BIZENGRI (n=39).

There were 2 fatal adverse reactions, one due to COVID-19 and one due to respiratory failure.

In patients with NRG1 gene fusion positive pancreatic adenocarcinoma who received BIZENGRI the most common (≥20%) adverse reactions, including laboratory abnormalities, were increased alanine aminotransferase (51%), diarrhea (36%), increased aspartate aminotransferase (31%), increased bilirubin (31%), decreased phosphate (31%), increased alkaline phosphatase (28%), decreased sodium (28%), musculoskeletal pain (28%), decreased albumin (26%), decreased potassium (26%), decreased platelets (26%), decreased magnesium (24%), increased gamma-glutamyl transferase (23%), decreased hemoglobin (23%), vomiting (23%), nausea (23%), decreased leukocytes (21%), and fatigue (21%).

NRG1 Gene Fusion Positive Advanced, Unresectable or Metastatic Cholangiocarcinoma

Serious adverse reactions occurred in 23% of patients with NRG1 gene fusion positive cholangiocarcinoma who received BIZENGRI (n=22).

In patients with NRG1 gene fusion positive cholangiocarcinoma who received BIZENGRI the most common (≥20%) adverse reactions, including laboratory abnormalities, were decreased magnesium (59%), increased alanine aminotransferase (50%), fatigue (46%), decreased platelets (46%), decreased hemoglobin (41%), increased aspartate aminotransferase (41%), increased alkaline phosphatase (41%), decreased phosphate (41%), diarrhea (41%), abdominal pain (36%), musculoskeletal pain (36%), increased gamma-glutamyl transferase (36%), increased bilirubin (32%), decreased potassium (32%), decreased sodium (32%), nausea (27%), cough (27%), increased activated partial thromboplastin time (aPTT) (27%), dyspnea (23%), decreased appetite (23%), and decreased albumin (23%).

Please see full Prescribing Information, including BOXED WARNING.

(Press release, Partner Therapeutics, JUL 2, 2026, View Source [SID1234669055])

Northwest Biotherapeutics Announces Scientific Presentation on Propensity Score Matching at the British Neuro-Oncology Society Annual Meeting

On July 2, 2026 Northwest Biotherapeutics (OTCQB:NWBO) (the "Company" or "NWBio"), a biotechnology company developing DCVax personalized immune therapies for solid tumor cancers, reported that Dr. Marnix Bosch, the Company’s Chief Technical Officer, will be making a scientific presentation entitled "DCVax-L–Associated Survival Extension Assessed Through Propensity Score Matching Analyses" at the 2026 Annual Meeting of the British Neuro-Oncology Society (BNOS).

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The presentation is scheduled for Friday, July 3, at 10:00 a.m. GMT, and will address the association between DCVax-L treatment and patient survival using propensity score matching methodologies (PSM). The slide deck will be posted on the Northwest Biotherapeutics website after Dr. Bosch’s presentation.

(Press release, Northwest Biotherapeutics, JUL 2, 2026, View Source [SID1234669054])

Molecular Partners and Orano Med Announce First Patients Dosed in Phase 1/2a Trial of DLL3 Radio-DARPin MP0712

On July 2, 2026 Molecular Partners AG (SIX: MOLN; NASDAQ: MOLN), a clinical-stage biotech company developing a novel class of custom-built protein drugs known as DARPin therapeutics ("Molecular Partners"), and Orano Med, a clinical-stage radiopharmaceutical company and a pioneer in the development of lead-212 (212Pb) based targeted alpha therapies (TAT), reported that the first patients were dosed in the ongoing US multicenter Phase 1/2a study of drug candidate MP0712.

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MP0712, targeting the tumor-associated protein delta-like ligand 3 (DLL3) and carrying the therapeutic payload 212Pb, is the lead Radio-DARPin candidate being developed under a strategic partnership between Molecular Partners and Orano Med. DLL3 is a highly relevant target for radiopharmaceutical therapy due to its abundant expression in tumors of patients with small cell lung cancer (DLL3 is present in over 85% of SCLC tumors) and multiple other aggressive neuroendocrine tumors, while expression in healthy tissues is low.

"MP0712 is a Radio-DARPin designed to attack tumors by specifically leveraging DLL3 biology. With the first patient now in repeat dosing and Cohort 1 now recruited, we are establishing the clinical safety profile of this novel therapy in real time. Working closely with investigators in our trial, we remain on track to report initial study data in 2026, and, also paving the way for other Radio-DARPin candidates to move forward," said Patrick Amstutz, Ph.D., CEO of Molecular Partners.

"The dosing of the first patients in this study marks an important step for Orano Med and our collaboration. It further illustrates the potential of lead-212 to support a broad clinical pipeline of targeted alpha therapies, leveraging its versatility across different vector formats to address a wide range of cancer types," said Frédéric Desdouits, Ph.D., CEO of Orano Med.

The program employs a "matched-pair" approach, in which a diagnostic imaging agent and a therapeutic agent share the same targeting molecule, allowing for accurate prediction of tumor uptake prior to treatment. Following an imaging and dosimetry step with 203Pb-labeled MP0712, patients in the Phase 1/2a study receive up to four doses of 212Pb-labeled MP0712 within their assigned dose level cohort. Dosing of patients is ongoing in cohort 1, with patients moving to repeat dosing. The study contains up to four dose levels. At present, five centers are open and actively recruiting in the US, with additional sites planned to open this year (ClinicalTrials.gov: NCT07278479). Initial data from the MP0712 Phase 1/2a study are expected in the upcoming months, with a more comprehensive dataset on safety and efficacy in 2027.

(Press release, Molecular Partners, JUL 2, 2026, View Source [SID1234669053])

HUTCHMED Announces NMPA Approval for ORPATHYS® for the treatment of Gastric Cancer Patients with MET Amplification

On July 2, 2026 HUTCHMED (China) Limited ("HUTCHMED") (Nasdaq/AIM:HCM; HKEX:13) reported that the New Drug Application (NDA) for ORPATHYS (savolitinib) has been granted conditional approval by the China National Medical Products Administration ("NMPA") for the treatment of locally advanced or metastatic gastric cancer or gastroesophageal junction (GC/GEJ) adenocarcinoma patients with MET amplification who have failed at least two prior systemic treatments.

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Gastric cancer remains one of the most common cancers and leading causes of cancer death in China. MET-driven gastric cancer has a very poor prognosis.1 It is estimated that MET amplification accounts for approximately 4-6% of gastric cancer patients.2,3 The annual incidence of MET amplification gastric cancer is estimated to be approximately 18,000 in China.

The approval is supported by data from the pivotal Phase II registration study of ORPATHYS in gastric cancer or gastroesophageal junction adenocarcinoma patients with MET amplification in China (NCT04923932). The results were recently published in Nature Medicine and highlighted at the American Society of Clinical Oncology (ASCO) (Free ASCO Whitepaper) Annual Meeting. The study met its primary endpoint of objective response rate ("ORR") per RECIST 1.1, as assessed by the Independent Review Committee ("IRC"). As of the data cut-off of October 8, 2025, the IRC-assessed ORR was 32.3% (95%CI: 21.2%, 45.1%), exceeding the pre-specified efficacy threshold. Secondary endpoints included the IRC-assessed disease control rate (DCR) of 63.1%, median time to response (TTR) of 1.4 months, median duration of response (DoR) of 9.7 (95%CI: 3.7, 18.5) months, and median progression-free survival (PFS) of 4.0 (95%CI: 2.6, 5.0) months, respectively.

"This milestone approval marks a critical leap forward for biomarker-driven precision medicine in gastrointestinal oncology," said Professor Lin Shen of Peking University Cancer Hospital and leading Principal Investigator of the registration study. "The clinical data from our pivotal study, recently recognized and published by Nature Medicine, provided compelling evidence that identifying MET amplification through timely molecular testing can directly guide patients to a highly effective, targeted oral option. ORPATHYS’s entry into the MET-amplified gastric cancer clinical setting offers clinicians a powerful, precise new tool to interrupt this aggressive oncogenic driver." 5

"The approval of ORPATHYS for MET-amplified advanced gastric cancer is an important achievement that underscores HUTCHMED’s enduring commitment to bringing in-house discovered innovations to patients," said Mr Johnny Cheng, Acting Chief Executive Officer and Chief Financial Officer of HUTCHMED. "This marks the third approved indication for ORPATHYS in China and further validates our proprietary R&D platform’s ability to address deep unmet medical needs. Together with our partner AstraZeneca, we are proud to expand the clinical application of this highly selective MET inhibitor and look forward to accelerating its commercial availability to transform gastric cancer treatment landscapes in China."

Ms Mary Guan, General Manager of AstraZeneca China Oncology Business, said: "Following its success in lung cancer, the approval of ORPATHYS in gastric cancer marks another pivotal chapter in our joint development journey with HUTCHMED. This regulatory milestone reinforces our shared vision of pairing the right treatments with the right patients through precision medicine. We look forward to maximizing the potential of this highly selective MET inhibitor and advancing its broader clinical lifecycle management to address the evolving unmet needs of cancer patients in China and beyond."

About ORPATHYS

ORPATHYS (savolitinib) is an oral, potent, and highly selective MET tyrosine kinase inhibitor (TKI) being jointly developed by AstraZeneca and HUTCHMED and commercialized by AstraZeneca. MET is a tyrosine kinase receptor that has an essential role in normal cell development.6 ORPATHYS blocks atypical activation of the MET receptor tyrosine kinase pathway that occurs because of mutations (such as exon 14 skipping alterations or other point mutations), gene amplification or protein overexpression.

ORPATHYS is approved in China and is marketed by our partner, AstraZeneca, representing the first selective MET inhibitor approved in China. It has been included in the National Reimbursement Drug List of China (NRDL) since March 2023.

It is currently under clinical development for multiple tumor types, including lung and gastric cancers as a single treatment and in combination with other medicines.

(Press release, Hutchison China MediTech, JUL 2, 2026, View Source [SID1234669052])