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基于介电泳单细胞捕获与释放的拉曼激活细胞分选

Raman-activated cell sorting based on dielectrophoretic single-cell trap and release.

作者信息

Zhang Peiran, Ren Lihui, Zhang Xu, Shan Yufei, Wang Yun, Ji Yuetong, Yin Huabing, Huang Wei E, Xu Jian, Ma Bo

机构信息

Single Cell Center, CAS Key Laboratory of Biofuels and Shandong Key Laboratory of Energy Genetics, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences , Qingdao, Shandong 266101, China.

出版信息

Anal Chem. 2015 Feb 17;87(4):2282-9. doi: 10.1021/ac503974e. Epub 2015 Feb 4.

Abstract

Raman-activated cell sorting (RACS) is a promising single-cell technology that holds several significant advantages, as RACS is label-free, information-rich, and potentially in situ. To date, the ability of the technique to identify single cells in a high-speed flow has been limited by inherent weakness of the spontaneous Raman signal. Here we present an alternative pause-and-sort RACS microfluidic system that combines positive dielectrophoresis (pDEP) for single-cell trap and release with a solenoid-valve-suction-based switch for cell separation. This has allowed the integration of trapping, Raman identification, and automatic separation of individual cells in a high-speed flow. By exerting a periodical pDEP field, single cells were trapped, ordered, and positioned individually to the detection point for Raman measurement. As a proof-of-concept demonstration, a mixture of two cell strains containing carotenoid-producing yeast (9%) and non-carotenoid-producing Saccharomyces cerevisiae (91%) was sorted, which enriched the former to 73% on average and showed a fast Raman-activated cell sorting at the subsecond level.

摘要

拉曼激活细胞分选(RACS)是一项很有前景的单细胞技术,具有多项显著优势,因为RACS无需标记、信息丰富且可能实现原位操作。迄今为止,该技术在高速流动中识别单细胞的能力一直受到自发拉曼信号固有弱点的限制。在此,我们展示了一种替代性的暂停分选RACS微流控系统,该系统将用于单细胞捕获和释放的正介电泳(pDEP)与基于电磁阀抽吸的细胞分离开关相结合。这使得在高速流动中实现单个细胞的捕获、拉曼识别和自动分离成为可能。通过施加周期性的pDEP场,单个细胞被捕获、排序并逐个定位到检测点进行拉曼测量。作为概念验证演示,对含有产类胡萝卜素酵母(9%)和不产类胡萝卜素酿酒酵母(91%)的两种细胞株混合物进行了分选,平均将前者富集到73%,并在亚秒级实现了快速的拉曼激活细胞分选。

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