Abdulla Aynur, Zhang Ting, Li Shanhe, Guo Wenke, Warden Antony R, Xin Yufang, Maboyi Nokuzola, Lou Jiatao, Xie Haiyang, Ding Xianting
Institute for Personalized Medicine, School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, 200030 China.
Shanghai General Hospital, Shanghai Jiao Tong University, No.85 Wujing Road, Shanghai, 200080 China.
Microsyst Nanoeng. 2022 Feb 2;8:13. doi: 10.1038/s41378-021-00342-2. eCollection 2022.
Effective capture and analysis of a single circulating tumor cell (CTC) is instrumental for early diagnosis and personalized therapy of tumors. However, due to their extremely low abundance and susceptibility to interference from other cells, high-throughput isolation, enrichment, and single-cell-level functional protein analysis of CTCs within one integrated system remains a major challenge. Herein, we present an integrated multifunctional microfluidic system for highly efficient and label-free CTC isolation, CTC enrichment, and single-cell immunoblotting (ieSCI). The ieSCI-chip is a multilayer microfluidic system that combines an inertia force-based cell sorter with a membrane filter for label-free CTC separation and enrichment and a thin layer of a photoactive polyacrylamide gel with microwell arrays at the bottom of the chamber for single-cell immunoblotting. The ieSCI-chip successfully identified a subgroup of apoptosis-negative (Bax-negative) cells, which traditional bulk analysis did not detect, from cisplatin-treated cells. Furthermore, we demonstrated the clinical application of the ieSCI-chip with blood samples from breast cancer patients for personalized CTC epithelial-to-mesenchymal transition (EMT) analysis. The expression level of a tumor cell marker (EpCAM) can be directly determined in isolated CTCs at the single-cell level, and the therapeutic response to anticancer drugs can be simultaneously monitored. Therefore, the ieSCI-chip provides a promising clinical translational tool for clinical drug response monitoring and personalized regimen development.
有效捕获和分析单个循环肿瘤细胞(CTC)对于肿瘤的早期诊断和个性化治疗至关重要。然而,由于CTC丰度极低且易受其他细胞干扰,在一个集成系统中对其进行高通量分离、富集以及单细胞水平的功能蛋白分析仍然是一项重大挑战。在此,我们展示了一种集成多功能微流控系统,用于高效且无标记的CTC分离、富集和单细胞免疫印迹(ieSCI)。ieSCI芯片是一种多层微流控系统,它将基于惯性力的细胞分选器与用于无标记CTC分离和富集的膜过滤器以及在腔室底部带有微孔阵列的光活性聚丙烯酰胺凝胶薄层相结合,用于单细胞免疫印迹。ieSCI芯片成功地从顺铂处理的细胞中鉴定出了传统批量分析未检测到的凋亡阴性(Bax阴性)细胞亚群。此外,我们展示了ieSCI芯片在乳腺癌患者血样中的临床应用,用于个性化的CTC上皮-间质转化(EMT)分析。可以在单细胞水平直接测定分离出的CTC中肿瘤细胞标志物(EpCAM)的表达水平,同时监测对抗癌药物的治疗反应。因此,ieSCI芯片为临床药物反应监测和个性化治疗方案制定提供了一种有前景的临床转化工具。