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◆ Talanta2026-08-18

Peptide-functionalized magnetic nanobeads for EpCAM-targeted CTC isolation and immunotherapy efficacy evaluation in liver cancer.

Xuejie Li, Shan Tian, Linyang Fan, Guangpeng Wang, Tianyi Ma, Haiqi Liao, Yuhan Zhang, Zhiyuan Hu, Zhe Wang, Xiaohong Xu, Yongyi Chen

原始摘要(英文原文)· Original abstract
Primary liver cancer lacks robust biomarkers for anti-PD-1/PD-L1 therapy. Methods: We engineered peptide-functionalized magnetic nanobeads (Pep@MNPs) for high-efficiency, EpCAM-dependent capture of circulating tumor cells (CTCs). This nanotechnology-based platform enabled a precise fluorescence quantitative system (cTPS) associate with immunotherapy outcomes in hepatocellular carcinoma and intrahepatic cholangiocarcinoma. The Pep@MNPs system revealed a significant correlation between high CTC PD-L1 expression and therapeutic response. Patients with baseline cTPShigh (≥20%) achieved a superior objective response rate compared to the low-expression group (40% vs. 0%; P = 0.005). Utilizing this nanobead-enabled quantification, cTPShigh patients demonstrated significantly prolonged progression-free survival (median 48.29 vs. 5.86 weeks, P = 0.005) and overall survival (median undefined vs. 25.71 weeks, P = 0.004). Furthermore, multivariate Cox regression confirmed cTPShigh as a robust independent predictor for both PFS and OS (both P = 0.005) after adjusting for clinical variables. This peptide-nanobead liquid biopsy strategy effectively stratifies patients benefiting from PD-1 inhibitors, highlighting its potential as a precise theranostic tool for clinical monitoring.
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Peptide-functionalized magnetic nanobeads for EpCAM-targeted CTC isolation and immunotherapy efficacy evaluation in liver cancer. — 科研速览 Science Skim