Novel fluorescence assay using calcein‐AM for the determination of human erythrocyte viability and aging

钙黄绿素 磷脂酰丝氨酸 流式细胞术 膜联蛋白 胞浆 Percoll公司 活力测定 红细胞 化学 生物化学 分子生物学 生物 细胞凋亡 离心 磷脂
作者
Daniela Bratosin,Laura Mitrofan,Carmen G. Palii,Jérôme Estaquier,Jean Montreuil
出处
期刊:Cytometry Part A [Wiley]
卷期号:66A (1): 78-84 被引量:182
标识
DOI:10.1002/cyto.a.20152
摘要

Abstract Background A highly sensitive, fast, and simple flow cytometric assay to assess human red blood cell (RBCs) viability and aging is reported. Methods The assay described in this report is based on the use of acetoxymethyl ester of calcein (calcein‐AM), a fluorescein derivative and nonfluorescent vital dye that passively crosses the cell membrane of viable cells and is converted by cytosolic esterases into green fluorescent calcein, which is retained by cells with intact membranes and inactive multidrug resistance protein. The loss of calcein can be easily determined by flow cytometry, and the cytosolic localization of esterases was demonstrated by spectrofluorometric analyses. Results We found that RBCs incubated with Ca 2+ , which induces a rapid and modulated self‐death that shares several features with apoptosis (Bratosin et al., Cell Death Differ 2001;8:1143–1156), externalized phosphatidylserine and lost calcein staining and cytosolic adenosine triphosphate content. Double labeling using phycoerythrin‐labeled annexin‐V and calcein‐AM showed that the decrease of esterase activity is an early event that precedes the externalization of phosphatidylserine residues. In addition, this assay allowed us to distinguish young and aged RBCs isolated by ultracentrifugation in a self‐forming Percoll gradient and can be considered as a reliable marker of RBC aging. Conclusions Calcein‐AM assay may represent a wide application for assessing RBC viability, particularly in blood banks. © 2005 Wiley‐Liss, Inc.

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