μg/g and an imprinting factor of 6.02, demonstrating excellent template recognition. At the cellular level, MIP selectively bound to EpCAM-high tumor cells (e.g., PANC-1, HeLa) while showing negligible adsorption to normal cells (293T), confirming its targeting specificity. Proteomic analysis of preoperative versus postoperative urine samples and matched tumor versus peritumor tissues revealed that MIP-captured EVs reliably reflect tumor status, with tumor-associated proteins such as GPC1 and TIMP1 exhibiting consistent expression changes across both sample types. In summary, this study establishes a method for specific capture of EpCAM+ EVs in complex biological environments. The low cost and high stability of the MIP material offer a novel tool for liquid biopsy. With further validation using large-scale clinical samples, this approach may have potential for advancing EpCAM+ EV-based early diagnosis of malignant tumors such as pancreatic cancer (PC) and for enabling new strategies in tumor microenvironment research and personalized therapy.
Yu et al. (Tue,) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: