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.