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通过受激拉曼激活细胞喷射进行高通量单细胞分选

High-throughput single-cell sorting by stimulated Raman-activated cell ejection.

作者信息

Zhang Jing, Lin Haonan, Xu Jiabao, Zhang Meng, Ge Xiaowei, Zhang Chi, Huang Wei E, Cheng Ji-Xin

机构信息

Department of Biomedical Engineering, Boston University, Boston, MA 02215, USA.

Photonics Center, Boston University, Boston, MA 02215, USA.

出版信息

bioRxiv. 2023 Oct 18:2023.10.16.562526. doi: 10.1101/2023.10.16.562526.

Abstract

Single-cell sorting is essential to explore cellular heterogeneity in biology and medicine. Recently developed Raman-activated cell sorting (RACS) circumvents the limitations of fluorescence-activated cell sorting, such as the cytotoxicity of labels. However, the sorting throughputs of all forms of RACS are limited by the intrinsically small cross-section of spontaneous Raman scattering. Here, we report a stimulated Raman-activated cell ejection (S-RACE) platform that enables high-throughput single-cell sorting based on high-resolution multi-channel stimulated Raman chemical imaging, image decomposition, and laser-induced cell ejection. The performance of this platform was illustrated by sorting a mixture of 1 μm polymer beads, where 95% yield, 98% purity, and 14 events per second throughput were achieved. Notably, our platform allows live cell ejection, allowing for the growth of single colonies of bacteria and fungi after sorting. To further illustrate the chemical selectivity, lipid-rich cells were successfully sorted from a mixture with , confirmed by downstream quantitative PCR. Furthermore, by integrating a closed-loop feedback control circuit into the system, we realized real-time single-cell imaging and sorting, and applied this method to precisely eject regions of interest from a rat brain tissue section. The reported S-RACE platform opens exciting opportunities for a wide range of single-cell applications in biology and medicine.

摘要

单细胞分选对于探索生物学和医学中的细胞异质性至关重要。最近开发的拉曼激活细胞分选(RACS)克服了荧光激活细胞分选的局限性,如标记物的细胞毒性。然而,所有形式的RACS的分选通量都受到自发拉曼散射固有小截面的限制。在这里,我们报告了一种受激拉曼激活细胞喷射(S-RACE)平台,该平台基于高分辨率多通道受激拉曼化学成像、图像分解和激光诱导细胞喷射实现高通量单细胞分选。通过对1μm聚合物珠混合物进行分选展示了该平台的性能,实现了95%的回收率、98%的纯度和每秒14次的通量。值得注意的是,我们的平台允许活细胞喷射,使得分选后细菌和真菌的单菌落能够生长。为了进一步说明化学选择性,从与……的混合物中成功分选了富含脂质的细胞,并通过下游定量PCR得到证实。此外,通过将闭环反馈控制电路集成到系统中,我们实现了实时单细胞成像和分选,并将该方法应用于从大鼠脑组织切片中精确喷射感兴趣区域。所报道的S-RACE平台为生物学和医学中的广泛单细胞应用开辟了令人兴奋的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ad/10614813/29f3e9f9615c/nihpp-2023.10.16.562526v1-f0001.jpg

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