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◆ Journal of controlled release : official journal of the Controlled Release Society2026-09-11

Engineered cryo-shocked tumor cells recruit T cells for lung cancer immunotherapy.

Huiheng Feng, Feng Liu, Zesheng Cheng, Huipeng Zhang, Wenyue Lv, Huanhuan Huang, Xuewen Yi, Kaixin He, Zhen Gu, Hongjun Li

原始摘要(英文原文)· Original abstract
Immune checkpoint blockade has transformed cancer therapy, yet its efficacy against solid tumors remains constrained by poor T cell infiltration and an immunosuppressive tumor microenvironment. Achieving localized and sustained chemokine signaling without systemic immune toxicity remains a central unmet challenge for cytokine-based immunotherapy. Here, we presented a cryo-engineered bio-depot platform derived from liquid‑nitrogen-treated (LNT) tumor cells for the site-restricted and controlled delivery of protein therapeutics. The cryo-shocked process preserves cellular integrity and protein bioactivity while abolishing pathogenicity of tumor cells, generating a versatile vehicle for therapeutic payloads. Applying this platform, we constructed LNT depots expressing C-X-C motif ligand 9 (CXCL9), which established a persistent chemokine gradient within the lung after intravenous injection, leading to robust T cell recruitment and augmented tumor growth inhibition. Furthermore, we demonstrated the platform adaptability by engineering LNT cells to secrete aPD-1, which significantly prolonged survival in a murine orthotopic lung cancer model. This cryo-engineered depot integrates the structural fidelity of biomaterials with the functional complexity of living systems, offering a generalizable route for personalized protein therapeutics in cancer immunotherapy.
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Engineered cryo-shocked tumor cells recruit T cells for lung cancer immunotherapy. — 科研速览 Science Skim