Melanoma remains challenging due to pronounced heterogeneity, early metastasis, and dynamic treatment resistance. Conventional tissue biopsy and imaging provide essential information but are limited by invasiveness, sampling bias, and an inability to capture longitudinal tumor-immune evolution. As endogenous bio-nanomaterials, small extracellular vesicles/exosomes circulate stably in body fluids and carry multi-omic cargo (DNA, RNA, proteins, lipids), enabling minimally invasive liquid biopsy and real-time disease monitoring. Beyond diagnostics, engineered exosomal nanomaterials can be functionalized and loaded with therapeutic payloads to improve targeted delivery and support combination regimens, including immunotherapy. This review highlights mechanistic roles of exosomes in melanoma progression, summarizes key liquid-biopsy biomarkers (e.g., exosomal PD-L1 and EV-miRNA/protein signatures), and discusses translational barriers such as standardization, scalable manufacturing, safety, and clinical validation.
Li Li, Xin Zheng, Jingrui Shi et al.· Microstructures· 0 citations
This review examines the transition from single‐axis engineering to an integrated framework that addresses hurdles in sequence, and delineates how next‐generation CAR‐T cells are designed for precise spatiotemporal activation through logic‐gated and pharmacologically regulatable receptors, while being reinforced by metabolic and epigenetic reprogramming to resist TME‐driven exhaustion.
Chao Yang, Tan Li, Ping He et al.· Cell Proliferation· 0 citations
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