循环肿瘤细胞
转移
乳腺癌
转移性乳腺癌
癌症研究
液体活检
癌细胞
癌症
体内
医学
乳腺癌转移
人体乳房
细胞骨架
活检
微流控
生物
肿瘤细胞
原发性肿瘤
癌症治疗
乳腺肿瘤
癌症生物标志物
病理
作者
Wen Luo,Yanfeng Gao,Shujun Feng,Bangshun He,Jingjing Li,Jingjing Yang,Yuxiang Yin,Meng Wang,Bin Xue,Yi Cao,Tony Hu,Yujun Song
标识
DOI:10.1038/s41467-025-68152-y
摘要
Emerging evidence underscores biophysical characteristics of cancer cells as key modulators of cancer progression and metastasis. Herein, we reported a cell-mechanophenotyping screening microfluidic chip (termed LesM) for the high-efficient capture of circulating tumor cells (CTCs) and evaluation of single-cell deformation to reveal the hematogenous metastatic potential of bacteria-infected breast cancer. LesM employs L-shaped traps to capture single cells, leveraging bacteria-infected CTCs with cytoskeletal reorganization traverse narrowed channels while rigid native cells are retained. The platform demonstrates an average single-cell capture efficiency of 95.42% and specificity of 85.34% in discriminating infected versus non-infected breast cancer cells, validated through parallel in vivo metastatic assays. LesM enables high-throughput sensing up to 10,240 cells of mechanical signatures and microbial cargo, correlating with metastatic risk and antibiotic response. By bridging biomechanics and intratumoral microbiota detection, LesM offers a transformative liquid biopsy tool for predicting distant metastasis and guiding antimicrobial therapies in bacteria-infected breast cancers.
科研通智能强力驱动
Strongly Powered by AbleSci AI