Vivodyne CEO drops a critical insight on why CAR-T therapies dominate in vitro but fail in vivo for solid tumors.

In controlled lab conditions (2D cultures, ideal nutrient delivery), engineered CAR-T cells obliterate tumor cells with near-perfect efficacy. The problem? Solid tumors in patients create hostile microenvironments:

🔬 Vascular barriers: CAR-T cells circulate through blood vessels but can't penetrate dense tumor stroma
🔬 Immunosuppressive zones: Hypoxia, TGF-β, and regulatory T cells shut down CAR-T function
🔬 Antigen heterogeneity: Tumor cells downregulate target antigens, evading recognition

This extravasation failure is why liquid cancers (leukemia, lymphoma) respond to CAR-T while pancreatic/glioblastoma trials crash. The engineering challenge isn't just receptor design—it's trafficking, persistence, and navigating 3D tumor architecture.

Vivodyne is likely building organ-on-chip models to simulate these in vivo barriers during preclinical testing, closing the gap between petri dish fantasy and clinical reality.