Innovent Announces IBI363 (PD-1/IL-2α-bias Bispecific Fusion Protein) Received Third NMPA Breakthrough Therapy Designation for MSS/pMMR Metastatic Colorectal Cancer

On May 10, 2026 Innovent Biologics, Inc. (Innovent) (HKEX: 01801), a world-class biopharmaceutical company that develops, manufactures, and commercializes high-quality medicines for the treatment of oncology, autoimmune, cardiovascular and metabolic, ophthalmology, and other major diseases, reported that the Center for Drug Evaluation (CDE) of China’s National Medical Products Administration (NMPA) has granted a third Breakthrough Therapy Designation (BTD) to its first-in-class PD-1/IL-2α-bias bispecific fusion protein, IBI363, in combination with bevacizumab, for the treatment of patients with advanced microsatellite stable or proficient mismatch repair (MSS/pMMR) colorectal cancer (CRC) who have failed at least two prior lines of standard therapy. A Phase III clinical trial is about to initiate in China for this indication in the near term.

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Previously, IBI363 has received two BTDs from China’s NMPA CDE and two Fast Track Designations (FTDs) from the U.S. FDA, covering indications in non-small cell lung cancer and melanoma. The latest BTD further validates IBI363’s potential in addressing immunotherapy resistance and cold tumor challenges which represent a significant unmet medical need. The early-stage clinical data of IBI363 in advanced MSS/pMMR colorectal cancer were reported at 2025 ASCO (Free ASCO Whitepaper) conference (link), in which IBI363, in combination with bevacizumab, demonstrated promising efficacy in patients who have failed multiple prior lines of standard therapy.

Dr. Hui Zhou, Chief R&D Officer (Oncology Pipeline) of Innovent, stated: "IBI363 is a promising next-generation IO agent by combining dual mechanisms—PD-1 blockade and IL-2-driven tumor-specific T-cell populations expansion—thus reshaping the tumor microenvironment. The new regulatory milestone underscores its clinical value in addressing unmet needs. We are accelerating IBI363’s global development across multiple tumor types together with our partner Takeda, to bring innovation therapies at the forefront of immunotherapy to benefit global patients."

NMPA Breakthrough Therapy Designation is intended to facilitate and expedite the development and review of investigational drugs for serious diseases or conditions when preliminary clinical evidence indicates substantial improvement over current therapies. BTD qualifies a drug candidate for accelerated review by the CDE and provides the sponsor with timely advice and communication to expedite the approval process, helping to address the unmet clinical needs of patients more swiftly.

About MSS/pMMR Colorectal Cancer

Colorectal cancer (CRC) is one of the most common malignancies worldwide, with MSS/pMMR being the predominant subtype, accounting for approximately 95% of advanced CRC cases. For patients with advanced MSS/pMMR CRC who have failed standard therapies, there remains a significant unmet medical need. Treatment options are limited, and prognosis remains poor.

About IBI363

IBI363 is a first-in-class PD-1/IL-2α-bias bispecific fusion protein developed by Innovent Biologics. It functions by both blocking the PD-1/PD-L1 pathway and selectively activating the IL-2 pathway. The IL-2 arm of IBI363 is designed to maintain its affinity for IL-2Rα while reducing binding to IL-2Rβ and IL-2Rγ, thereby minimizing toxicity. The PD-1 binding arm not only blocks PD-1 but also selectively delivers IL-2 to the tumor.

IBI363 is being evaluated in a series of clinical trials globally, led by a pivotal Phase II study in China in previously untreated acral and mucosal melanoma and a global multi-regional Phase III trial in immunotherapy-resistant squamous NSCLC. In parallel, multiple Phase Ib/II trials are evaluating IBI363 in NSCLC and CRC including the first-line and later line settings, and in additional tumor types. IBI363 has received two Fast Track Designations (FTD) from the U.S. FDA and three Breakthrough Therapy Designations (BTD) from China NMPA so far.

In October 2025, Innovent entered into a license and collaboration agreement with Takeda, under which Innovent and Takeda will co-develop IBI363 (Takeda R&D code: TAK-928) globally and co-commercialize IBI363 in the U.S., and Takeda will exclusively commercialize IBI363 worldwide other than the U.S. and greater China.

(Press release, Innovent Biologics, MAY 10, 2026, View Source [SID1234665406])

Prokarium to present at the American Urology Association (AUA) Annual Meeting

On May 8, 2026 Prokarium reported that it will present at the American Urology Association (AUA) Annual Meeting.

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Dr Michael Oefelein will be presenting on behalf of Prokarium at the American Urology Association (AUA) Annual Meeting, Washington, DC, 15-18th May 2026.

Presentation information:

Presentation Title: PD09-03: PARADIGM 1 – A multi-center Phase 1 study evaluating the safety and clinical effect of a novel microbial immunotherapeutic (ZH9) in patients with relapsed NMIBC – A first interim review
Session Title: PD09: Bladder Cancer: Non-invasive III
Session Date and Time: Saturday 16th May, 07:00 – 09:00

(Press release, Prokarium, MAY 8, 2026, View Source [SID1234665387])

Azalea Therapeutics Announces Late-Breaking Oral Presentation at ASGCT Annual Meeting Demonstrating First-in-Primate In Vivo TRAC-CAR T Cell Engineering

On May 8, 2026 Azalea Therapeutics, Inc., a biotechnology company redefining precision genomic medicines in vivo, reported that first-in-primate data from its proprietary in vivo CAR T cell platform have been accepted as a late-breaking abstract for oral presentation at the American Society of Gene and Cell Therapy (ASGCT) (Free ASGCT Whitepaper) 2026 Annual Meeting, taking place May 11 – 15, 2026 in Boston, Massachusetts.

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The late-breaking abstract, titled "A first-in-primate demonstration of in vivo TRAC-CAR T cell engineering via cell-selective delivery and genomic locus-specific integration," describes the first in vivo generation of genomic site-specific engineered TRAC-CAR T cells in non-human primates. Azalea’s platform is designed to generate CAR T cells directly inside the body through a dual-vector approach that combines CD3-targeted enveloped delivery vehicles (EDVs) delivering transient Cas9 complexes with a T cell-tropic AAV (AAV-T) carrying a promoterless CAR gene flanked by TRAC homology arms. This approach enables precise insertion of the CAR gene at the TRAC locus, placing CAR expression under control of the endogenous T cell promoter.

In the study, six rhesus macaques received a single intravenous administration of EDV and AAV-T vectors at different dose levels without prior lymphodepletion. The study assessed in vivo TRAC-CAR T cell generation, TRAC-CAR-mediated B cell depletion in peripheral blood, lymph nodes and bone marrow, and safety parameters.

"These first-in-primate data represent a major milestone for Azalea and for the broader field of in vivo cell engineering," said Jenny Hamilton, Ph.D., co-founder, president and chief executive officer of Azalea Therapeutics. "In immune-competent non-human primates, a single intravenous administration of our dual-vector platform generated TRAC-CAR T cells in vivo and achieved complete target B cell depletion across peripheral blood, lymph nodes and bone marrow without lymphodepletion. We believe that achieving precise insertion at a defined genomic locus will be foundational to the safety, durability and physiologic regulation of future in vivo cell therapies. We believe these findings provide important translational support for our approach and the potential to make powerful cell therapies more accessible by eliminating the need for individualized ex vivo manufacturing."

First-in-Primate In Vivo TRAC-CAR T Cell Engineering

In the study, animals demonstrated in vivo generation of TRAC-CAR T cells, with TRAC-CAR T cells peaking as high as 41% of all peripheral T cells on Day 11. All six animals demonstrated deep B cell aplasia of greater than 90% in peripheral blood by Day 10.

The study also demonstrated potent target B cell clearance beyond peripheral blood. In lymph nodes and bone marrow, B cells were deeply depleted by greater than 90% in five of six animals at the highest dose level within two weeks following treatment.

Treatment was generally well tolerated, with no deaths, no neurotoxicity and a favorable safety profile. Molecular analyses confirmed no off-target CAR expression or integration in non-T cells in the blood.

"To our knowledge, this is the first demonstration of site-specific gene integration in T cells in a non-human primate in vivo. This study demonstrates that Azalea’s platform can achieve cell-selective delivery, genomic locus-specific CAR insertion and robust pharmacodynamic activity in a clinically relevant non-human primate model," said Connor Tsuchida, Ph.D., scientific co-founder, vice president of research and development at Azalea Therapeutics and presenting author of the abstract. "The combination of TRAC-targeted integration, endogenous promoter-driven CAR expression and activity across multiple tissue compartments supports continued advancement of this genome editing-based in vivo CAR T platform toward clinical translation."

Azalea will present these data at the ASGCT (Free ASGCT Whitepaper) 2026 Annual Meeting.

Abstract Title: A first-in-primate demonstration of in vivo TRAC-CAR T cell engineering via cell-selective delivery and genomic locus-specific integration
Presenting Author: Connor A. Tsuchida, Ph.D., Azalea Therapeutics
Session: Oral Abstract Sessions – Late-breaking abstracts
Date/Time: Friday, May 15, 2026, 8:00 am – 9:45 am ET
Location: Westin Seaport Commonwealth Ballroom ABC (Concourse Level)

(Press release, Azalea Therapeutics, MAY 8, 2026, View Source [SID1234665405])

Soligenix Announces Recent Updates and First Quarter 2026 Financial Results

On May 8, 2026 Soligenix, Inc. (Nasdaq: SNGX) (Soligenix or the Company), a late-stage biopharmaceutical company focused on developing and commercializing products to treat rare diseases where there is an unmet medical need, reported its recent updates and financial results for the quarter ended March 31, 2026.

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"We remain disappointed with the unanticipated outcome of the FLASH2 (Fluorescent Light Activated Synthetic Hypericin 2) study," stated Christopher J. Schaber, PhD, President and Chief Executive Officer of Soligenix. "Despite the fact that HyBryte (synthetic hypericin) demonstrated statistically significant reductions in cutaneous T-cell lymphoma (CTCL) lesions after 6 weeks treatment in the first FLASH study, a similar signal was not observed with 18 weeks of treatment in this study. Over the coming weeks, we will analyze the data to better determine why the study did not meet expectations. If there is any clarity gained from further analysis of the dataset, especially with respect to specific subsets of patients that may benefit from HyBryte therapy, then we intend to communicate our findings and explore follow-up discussions with the European Medicines Agency (EMA) and the Food and Drug Administration (FDA)."

With approximately $6.0 million in cash at March 31, 2026, and cash runway into the 2nd quarter of 2027, we will evaluate all strategic options moving forward, including but not limited to merger and acquisition opportunities, and the potential of advancing SGX945 (dusquetide) for the treatment of Behçet’s Disease, which demonstrated promising biological efficacy in a Phase 2 study last year while most recently receiving orphan drug designation from EMA and Promising Innovative Medicine (PIM) designation from the United Kingdom Medicines and Healthcare Products Regulatory Agency (MHRA). In December, we announced the extended results of the Phase 2a trial of SGX302 (synthetic hypericin) for the treatment of mild-to-moderate psoriasis where SGX302 gel therapy was well tolerated by all patients with no drug related adverse events identified. With the completion of the pilot study, we have laid the groundwork for a more detailed evaluation in this large underserved market.

Soligenix Recent Updates

On April 28, 2026, the Company announced that the Data Monitoring Committee completed the interim efficacy analysis of its pivotal Phase 3 FLASH2 trial evaluating HyBryte in the treatment of CTCL and recommended the study halt for futility. To view this press release, please click here.
On April 2, 2026, the Company announced that the positive results of its comparability study evaluating HyBryte versus Valchlor (mechlorethamine) for the treatment of CTCL have been published in Oncology and Therapy. To view this press release, please click here.
Financial Results – Quarter Ended March 30, 2026

Soligenix had no revenue or related costs for the quarter ended March 31, 2026 and 2025, respectively.

Soligenix’s net loss was $2.8 million, or ($0.28) per share, for the quarter ended March 31, 2026, compared to $3.0 million, or ($0.97) per share, for the same prior year period. This decrease in net loss was primarily due to a decrease in operating expenses.

Research and development expenses were $1.8 million as compared to $1.9 million for the quarter ended March 31, 2026 and 2025, respectively. The decrease was primarily due to decreases in costs associated with third-party manufacturing, the completed Phase 2 study in BD and site initiation fees for the second confirmatory Phase 3 CTCL trial, partially offset by an increase in patient fees for the second confirmatory Phase 3 CTCL trial.

General and administrative expenses were $1.1 million for the quarter ended March 31, 2026 as compared to $1.1 million for the same period in 2025, relatively flat with a de minimis increase.

As of March 31, 2026, the Company’s cash position was approximately $6.0 million.

(Press release, Soligenix, MAY 8, 2026, View Source [SID1234665388])

Non-consolidated Financial Results for the Three Months Ended March 31, 2026

On May 8, 2026 Oncolys BioPharma reported Non-consolidated Financial Results for the Three Months Ended March 31, 2026.

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(Press release, Oncolys BioPharma, MAY 8, 2026, View Source [SID1234669195])