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BioWorld - Friday, April 10, 2026
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Cancer

Tyra Biosciences patents new FGFR inhibitors

Feb. 18, 2026
Tyra Biosciences Inc. has disclosed new indazole compounds acting as fibroblast growth factor receptor (FGFR) inhibitors. They are reported to be useful for the treatment of cancer and developmental disorders.
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Cardiovascular

China Pharmaceutical University identifies sphingomyelin phosphodiesterase inhibitors

Feb. 18, 2026
No Comments
China Pharmaceutical University has prepared and tested sphingomyelin phosphodiesterase (SMPD1; aSMase) inhibitors potentially useful for the treatment of cancer, autoimmune disease, chronic obstructive pulmonary disease (COPD), Alzheimer’s disease, depression, diabetes, hepatic steatosis and stroke, among others.
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Melanoma cells stained with an H & E stain and magnified to 320x.
Cancer

HOXD13 drives angiogenesis and immune evasion in melanoma

Feb. 18, 2026
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Although physiological immune responses require increased tissue vasculature, many solid tumors simultaneously activate angiogenesis to meet the increasing demand for oxygen and nutrients while excluding immune cells. The exact molecular mechanisms by which cancer cells control this immune-refractory angiogenic process remain widely unclear.
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Klebsiella pneumoniae colonies in petri dish
Infection

First-in-class non-β-lactam targeting AMR gram-negative pathogens

Feb. 18, 2026
No Comments
Antimicrobial resistance (AMR) is increasingly compromising the effectiveness of essential antibiotics, resulting in higher global mortality and morbidity rates. Despite this urgent need, few new antibiotics, particularly against gram-negative bacteria, are in development.
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Dollar sign droplet above test tube
Ocular

Financing at Gelmedix supports GMX-101 for geographic atrophy

Feb. 18, 2026
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Gelmedix Inc. has completed a $13 million seed financing to support progression of the company’s lead program, GMX-101, a retinal pigment epithelial (RPE) cell therapy to treat late-stage geographic atrophy.
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Cancer

New compound against tumors with aberrant FGFR2 signaling

Feb. 18, 2026
No Comments
Fibroblast growth factor receptor 2 (FGFR2) is a transmembrane tyrosine kinase that regulates signaling pathways controlling cell survival and proliferation. Dysregulation of FGFR2, through amplification or activating mutations, contributes to tumor development, making it an attractive target for therapeutic intervention in oncology.
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Photo of researchers shaking hands
Neurology/psychiatric

Nektar Therapeutics and UCSF explore TNFR2 agonism in MS

Feb. 18, 2026
No Comments
Nektar Therapeutics Inc. has established an academic research collaboration with the University of California, San Francisco (UCSF) to explore the role of tumor necrosis factor receptor 2 (TNFR2) agonism in models of multiple sclerosis (MS) with the aim of supporting progression of NKTR-0165, Nektar’s first-in-class TNFR2 agonist antibody.
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Cancer and blood cells
Cancer

Omeros reports Oncotox-AML primate data

Feb. 18, 2026
No Comments
Omeros Corp. has successfully completed its initial study in nonhuman primates evaluating the efficacy and safety of its Oncotox-AML cancer therapeutic platform for acute myeloid leukemia (AML). Oncotox-AML is an engineered biologic designed to selectively kill both AML blasts and relapse-related leukemia stem cells.
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Colorized scanning electron microscope image of regulatory T cells and antigen-presenting cells.
Immune

Cue’s CUE-401 well tolerated in mouse and NHP studies

Feb. 18, 2026
No Comments
Cue Biopharma Inc. has reported preclinical safety and tolerability data on CUE-401, the company’s lead asset for autoimmune and inflammatory diseases. CUE-401 is designed to act mechanistically both as a regulator of pro-inflammatory mechanisms, and as a master switch for regulatory T cell (Treg) differentiation to induce tolerance.
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3D illustration of organoid models in a petri dish
Drug design, drug delivery & technologies

Human organoid mimics cancer-induced cachexia

Feb. 17, 2026
By Mar de Miguel
No Comments
The variety of organoids that can be developed in vitro is enabling major advances. Depending on the type of tissues and the research goals, these small 3D cell-based structures that mimic real tissue offer certain advantages over animal models. Scientists at the University of Padova in Italy have created human neuromuscular organoids to reproduce cancer-induced muscle cachexia, a condition that murine models do not accurately replicate.
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