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全光谱流式细胞术提高了高自发荧光生物样本的分辨率:再生骨骼肌中髓样细胞的鉴定。

Full spectrum cytometry improves the resolution of highly autofluorescent biological samples: Identification of myeloid cells in regenerating skeletal muscles.

作者信息

Kharraz Yacine, Lukesova Vera, Serrano Antonio L, Davison Adam, Muñoz-Cánoves Pura

机构信息

Application Department, Cytek Biosciences, Inc., Fremont, California, USA.

Department of Experimental and Health Sciences, Pompeu Fabra University (UPF), CIBER on Neurodegenerative Diseases (CIBERNED), Barcelona, Spain.

出版信息

Cytometry A. 2022 Oct;101(10):862-876. doi: 10.1002/cyto.a.24568. Epub 2022 May 24.

Abstract

Autofluorescence (AF) is an intrinsic characteristic of cells caused by the presence of fluorescent biological compounds within the cell; these can include structural proteins (e.g., collagen and elastin), cellular organelles, and metabolites (e.g., aromatic amino acids). In flow cytometric studies, the presence of AF can lead to reduced antigen and population resolution, as well as the presence of artifacts due to false positive events. Here, we describe a methodology that uses the inherent ability of full spectrum cytometry to treat AF as a fluorochrome and to thereby separate it from the other fluorochromes of the assay. This method can be applied to complex inflamed tissues; for instance, in regenerating skeletal muscle we have developed a 16-color panel targeting highly autofluorescent myeloid cells. This represents a first step toward overcoming technological limitations in flow cytometry due to AF.

摘要

自发荧光(AF)是细胞的一种固有特性,由细胞内存在的荧光生物化合物引起;这些化合物可包括结构蛋白(如胶原蛋白和弹性蛋白)、细胞器和代谢物(如芳香族氨基酸)。在流式细胞术研究中,自发荧光的存在会导致抗原分辨率和群体分辨率降低,以及由于假阳性事件而出现伪像。在此,我们描述了一种方法,该方法利用全光谱细胞术的固有能力将自发荧光视为一种荧光染料,从而将其与检测中的其他荧光染料分离。该方法可应用于复杂的炎症组织;例如,在再生骨骼肌中,我们开发了一个针对高自发荧光髓样细胞的16色面板。这代表了克服流式细胞术中由于自发荧光导致的技术限制的第一步。

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