以模拟抗原呈递囊泡和肿瘤外泌体的囊泡功能化水凝胶纳米瓶可提高 T 细胞捕获与活化
Functionalizing Hydrogel Nanovials with Vesicles Mimicking Antigen-Presenting Vesicles and Cancer Exosomes Improves T Cell Capture and Activation.
FRONTIER PAPERS
Functionalizing Hydrogel Nanovials with Vesicles Mimicking Antigen-Presenting Vesicles and Cancer Exosomes Improves T Cell Capture and Activation.
Immune cell-derived exosomes in cancer: double-edged mechanisms of antitumor immunity and tumor progression.
Emerging biomarkers in melanoma: Bridging molecular discovery and precision oncology.
Engineered extracellular vesicles displaying bi-specific T-cell engagers for targeted therapy of B-cell malignancies.
Programmable iPSC-derived CAR-NK vesicles remodel the immune microenvironment and eradicate tumors.
DR5 CAR-T cells target melanoma and suppress MDSCs with minimal toxicity.
Target antigen-displaying extracellular vesicles boost CAR T cell efficacy in cell and mouse models of neuroblastoma.
The Architecture of Immune Escape in Neuroblastoma: Plasticity, Silence and Escape Engineer Immune Blindness.
The electrical and chemical hypoxia-optimized (ECHO) bioreactor system enables scalable production of functionally preserved NK-exosomes validated in
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