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基于光场的流式细胞术实现高分辨率、体积和多参数的 3D 单细胞分析。

Light-field flow cytometry for high-resolution, volumetric and multiparametric 3D single-cell analysis.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, USA.

Parker H. Petit Institute for Bioengineering and Biosciences, Georgia Institute of Technology, Atlanta, GA, USA.

出版信息

Nat Commun. 2024 Mar 4;15(1):1975. doi: 10.1038/s41467-024-46250-7.

Abstract

Imaging flow cytometry (IFC) combines flow cytometry and fluorescence microscopy to enable high-throughput, multiparametric single-cell analysis with rich spatial details. However, current IFC techniques remain limited in their ability to reveal subcellular information with a high 3D resolution, throughput, sensitivity, and instrumental simplicity. In this study, we introduce a light-field flow cytometer (LFC), an IFC system capable of high-content, single-shot, and multi-color acquisition of up to 5,750 cells per second with a near-diffraction-limited resolution of 400-600 nm in all three dimensions. The LFC system integrates optical, microfluidic, and computational strategies to facilitate the volumetric visualization of various 3D subcellular characteristics through convenient access to commonly used epi-fluorescence platforms. We demonstrate the effectiveness of LFC in assaying, analyzing, and enumerating intricate subcellular morphology, function, and heterogeneity using various phantoms and biological specimens. The advancement offered by the LFC system presents a promising methodological pathway for broad cell biological and translational discoveries, with the potential for widespread adoption in biomedical research.

摘要

成像流式细胞术(IFC)结合流式细胞术和荧光显微镜,实现高通量、多参数单细胞分析,并具有丰富的空间细节。然而,目前的 IFC 技术在揭示具有高 3D 分辨率、高吞吐量、高灵敏度和仪器简单性的亚细胞信息方面仍然受到限制。在本研究中,我们引入了一种光场流式细胞仪(LFC),这是一种 IFC 系统,能够以每秒高达 5750 个细胞的速度进行高内涵、单次、多色采集,在所有三个维度上的分辨率接近衍射极限,为 400-600nm。LFC 系统集成了光学、微流控和计算策略,通过方便地访问常用的明场荧光平台,促进各种 3D 亚细胞特征的体积可视化。我们使用各种幻影和生物样本证明了 LFC 在分析和计数复杂的亚细胞形态、功能和异质性方面的有效性。LFC 系统提供的进展为广泛的细胞生物学和转化发现提供了有前途的方法途径,有可能在生物医学研究中得到广泛采用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38cd/10912605/93647f0da862/41467_2024_46250_Fig1_HTML.jpg

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