癌症研究
结直肠癌
医学
细胞外小泡
化疗
癌症
细胞外
液体活检
微泡
免疫系统
癌症化疗
细胞凋亡
材料科学
细胞外基质
作者
Weilin Lv,S Li,Zhaohan Wei,Xin Li,Xi Zhang,Shiyi Xu,Zixiang Xie,Yaoli Zhao,Dai Ll,Ziqiao Ding,Muzi Tian,Ruoxi Wang,Liping Huang,Nana Bie,Xiaomin Yang,Fei Xiong,Lu Gan,Tuying Yong
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-07-22
卷期号:20 (30): 21388-21402
标识
DOI:10.1021/acsnano.6c08131
摘要
Oral chemotherapy for colorectal cancer (CRC) is limited by poor tumor selectivity and microenvironment-driven resistance. Addressing these limitations demands materials that integrate tumor-selective targeting with immune microenvironment modulation. Here, clinical analysis of CRC specimens revealed pronounced transferrin (Tf) enrichment in CRC-associated intestinal regions. Guided by this finding, we engineered a gastrointestinal-stable cyclic Tf-binding peptide (cp) with high Tf affinity and constructed cp-modified ginger-derived extracellular vesicles (cp-GEVs) for in situ Tf-mediated sandwich-like targeting. By recruiting endogenous Tf, cp-GEVs established a Tf-mediated bridging interface that selectively engages Tf receptor-overexpressing intestinal epithelium and tumor cells, enabling efficient epithelial transcytosis, tumor-selective accumulation, and deep intratumoral penetration after oral administration. When loaded with irinotecan (CPT-11), CPT@cp-GEVs significantly enhanced intracellular drug delivery and reprogrammed immunosuppressive M2-like tumor-associated macrophages toward a pro-inflammatory phenotype, thereby disrupting cancer stem cell-enriched drug-resistant niches. In AOM/DSS-induced primary CRC models and patient-derived ex vivo systems, CPT@cp-GEVs significantly improved chemotherapeutic efficacy while attenuating resistance. Collectively, this work establishes a Tf-mediated sandwich-like targeting framework for oral cancer therapy, offering a conceptually distinct materials design paradigm that integrates endogenous ligand recruitment with immune microenvironment reprogramming.
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