Department of Biomedical Engineering, School of Materials Science and Engineering, South China University of Technology, Guangzhou 510641, P. R. China.
Beijing Engineering Research Center for BioNanotechnology and CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, CAS Center for Excellence in Nanoscience, National Center for NanoScience and Technology, No. 11 Zhongguancun Beiyitiao, Beijing 100190, P. R. China.
Anal Chem. 2020 May 19;92(10):6968-6976. doi: 10.1021/acs.analchem.9b05844. Epub 2020 Apr 29.
Here we describe a fluorescent microspheres-based separation and analysis that enables the isolation of circulating tumor cells (CTCs) from whole blood of patients with metastatic cancer and the identification of isolated CTCs in situ without immunostaining. This approach uses antibody-functionalized fluorescent polystyrene (PS) microspheres that can selectively bind to CTCs. The binding of CTCs and fluorescent PS microspheres leads to the formation of complexes of CTCs and fluorescent PS microspheres, thereby the CTCs are size-amplified and labeled simultaneously. A pyramidal microcavity array (PMCA) is fabricated using microfabrication technology to create a precise microfilter structure with a high aspect ratio. The PMCA filter device can effectively isolate microspheres-labeled CTCs, while allow hematologic cells to deform and pass through. Using this approach, CTCs are isolated and identified in 15 of 18 patients with metastatic colorectal cancer. This approach will open new possibilities for CTCs isolation and identification and can serve a versatile platform to facilitate CTCs analysis in diverse biomedical applications.
在这里,我们描述了一种基于荧光微球的分离和分析方法,该方法能够从转移性癌症患者的全血中分离循环肿瘤细胞(CTC),并在无需免疫染色的情况下原位鉴定分离的 CTC。该方法使用抗体功能化的荧光聚苯乙烯(PS)微球,其可以选择性地与 CTC 结合。CTC 与荧光 PS 微球的结合导致 CTC 和荧光 PS 微球形成复合物,从而使 CTC 同时被放大和标记。使用微制造技术制造金字塔形微腔阵列(PMCA),以创建具有高纵横比的精确微滤结构。PMCA 滤器装置可以有效地分离微球标记的 CTC,同时允许血细胞变形并通过。使用这种方法,在 18 名转移性结直肠癌患者中的 15 名中成功分离和鉴定了 CTC。该方法将为 CTC 的分离和鉴定开辟新的可能性,并可作为一个多功能平台,促进在不同的生物医学应用中对 CTC 进行分析。