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用于心力衰竭中单核细胞亚群和端粒长度同步多色流式细胞术 - 荧光原位杂交测量的亮紫色荧光染料

Brilliant violet fluorochromes in simultaneous multicolor flow cytometry-fluorescence in situ hybridization measurement of monocyte subsets and telomere length in heart failure.

作者信息

Roura Santiago, Fernández Marco A, Elchinova Elena, Teubel Iris, Requena Gerard, Cabanes Roser, Lupón Josep, Bayes-Genis Antoni

机构信息

ICREC Research Program, Germans Trias i Pujol Health Science Research Institute, Badalona, Spain.

Center of Regenerative Medicine in Barcelona, Barcelona, Spain.

出版信息

Lab Invest. 2016 Nov;96(11):1223-1230. doi: 10.1038/labinvest.2016.100. Epub 2016 Sep 12.

Abstract

Conventional analytical methods to determine telomere length (TL) have been replaced by more precise and reproducible procedures, such as fluorescence in situ hybridization coupled with flow cytometry (flow-FISH). However, simultaneous measurement of TL and cell phenotype remains difficult. Relatively expensive and time-consuming cell-sorting purification is needed to counteract the loss, due to stringent FISH conditions, of prehybridization fluorescence by the organic fluorochromes conventionally used in the phenotyping step. Here, we sought to assess whether the newly developed Brilliant Violet (BV) dyes are valuable to specifically and simultaneously assess the distribution and telomere attrition of monocyte subsets circulating in the blood of a cohort of patients with heart failure. We performed flow-FISH on blood samples from 28 patients with heart failure. To differentiate among monocyte subsets, we used BV and conventional fluorochromes conjugated to antibodies against CD86, CD14, CD16, and CD15. We simultaneously assessed the TLs of the monocyte subsets with a telomere-specific peptide nucleic acid probe labeled with fluorescein isothiocyanate. The BV dyes completely tolerated the harsh conditions required for adequate DNA denaturation and simultaneously provided accurate identification of monocyte subpopulations and respective TLs. The presented protocol may be faster and less expensive than those used currently for purposes such as establishing associations among patient categories, disease progression, monocyte heterogeneity, and aging in the context of heart failure.

摘要

用于确定端粒长度(TL)的传统分析方法已被更精确且可重复的程序所取代,比如结合流式细胞术的荧光原位杂交技术(流式荧光原位杂交)。然而,同时测量TL和细胞表型仍然具有挑战性。由于表型分析步骤中常规使用的有机荧光染料在严格的荧光原位杂交条件下会导致杂交前荧光损失,因此需要相对昂贵且耗时的细胞分选纯化来抵消这种损失。在此,我们试图评估新开发的灿烂紫(BV)染料对于特异性且同时评估一组心力衰竭患者血液中循环单核细胞亚群的分布和端粒损耗是否有价值。我们对28例心力衰竭患者的血样进行了流式荧光原位杂交。为区分单核细胞亚群,我们使用了与抗CD86、CD14、CD16和CD15抗体偶联的BV和传统荧光染料。我们同时用异硫氰酸荧光素标记的端粒特异性肽核酸探针评估单核细胞亚群的TL。BV染料完全耐受了充分DNA变性所需的严苛条件,同时能准确鉴定单核细胞亚群及其各自的TL。与目前用于诸如在心力衰竭背景下建立患者类别、疾病进展、单核细胞异质性和衰老之间关联等目的的方法相比,本文所介绍的方案可能更快且成本更低。

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