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内皮祖细胞由血管内皮生长因子受体2(VEGFR2)和CD133的同时表面表达所定义,在健康的外周血和脐带血中无法检测到。

Endothelial progenitor cells, defined by the simultaneous surface expression of VEGFR2 and CD133, are not detectable in healthy peripheral and cord blood.

作者信息

Lanuti Paola, Rotta Gianluca, Almici Camillo, Avvisati Giuseppe, Budillon Alfredo, Doretto Paolo, Malara Natalia, Marini Mirella, Neva Arabella, Simeone Pasquale, Di Gennaro Elena, Leone Alessandra, Falda Alessandra, Tozzoli Renato, Gregorj Chiara, Di Cerbo Melania, Trunzo Valentina, Mollace Vincenzo, Marchisio Marco, Miscia Sebastiano

机构信息

Department of Medicine and Aging Science, School of Medicine and Health Science, University "G. d'Annunzio" of Chieti-Pescara, Chieti, 66013, Italy.

Center for Ageing Sciences (Ce.S.I.), "Università G. d'Annunzio" Foundation, Chieti, 66013, Italy.

出版信息

Cytometry A. 2016 Mar;89(3):259-70. doi: 10.1002/cyto.a.22730. Epub 2015 Aug 25.

Abstract

Circulating endothelial cells (CEC) and their progenitors (EPC) are restricted subpopulations of peripheral blood (PB), cord blood (CB), and bone marrow (BM) cells, involved in the endothelial homeostasis maintenance. Both CEC and EPC are thought to represent potential biomarkers in several clinical conditions involving endothelial turnover/remodeling. Although different flow cytometry methods for CEC and EPC characterization have been published so far, none of them have reached consistent conclusions, therefore consensus guidelines with respect to CEC and EPC identification and quantification need to be established. Here, we have carried out an in depth investigation of CEC and EPC phenotypes in healthy PB, CB and BM samples, by optimizing a reliable polychromatic flow cytometry (PFC) panel. Results showed that the brightness of CD34 expression on healthy PB and CB circulating cells represents a key benchmark for the identification of CEC (CD45neg/CD34bright/CD146pos) respect to the hematopoietic stem cell (HSC) compartment (CD45dim/CD34pos/CD146neg). This approach, combined with a dual-platform counting technique, allowed a sharp CEC enumeration in healthy PB (n = 38), and resulting in consistent CEC counts with previously reported data (median = 11.7 cells/ml). In parallel, by using rigorous PFC conditions, CD34pos/CD45dim/CD133pos/VEGFR2pos EPC were not found in any healthy PB or CB sample, since VEGFR2 expression was never detectable on the surface of CD34pos/CD45dim/CD133pos cells. Notably, the putative EPC phenotype was observed in all analyzed BM samples (n = 12), and the expression of CD146 and VEGFR2, on BM cells, was not restricted to the CD34bright compartment, but also appeared on the HSC surface. Altogether, our findings suggest that the previously reported EPC antigen profile, defined by the simultaneous expression of VEGFR2 and CD133 on the surface of CD45dim/CD34pos cells, should be carefully re-evaluated and further studies should be conducted to redefine EPC features in order to translate CEC and EPC characterization into clinical practice.

摘要

循环内皮细胞(CEC)及其祖细胞(EPC)是外周血(PB)、脐带血(CB)和骨髓(BM)细胞中的特定亚群,参与内皮稳态的维持。CEC和EPC在涉及内皮更新/重塑的多种临床状况中均被认为是潜在的生物标志物。尽管目前已发表了多种用于CEC和EPC鉴定的流式细胞术方法,但均未得出一致结论,因此需要建立关于CEC和EPC识别与定量的共识指南。在此,我们通过优化可靠的多色流式细胞术(PFC)方案,对健康PB、CB和BM样本中的CEC和EPC表型进行了深入研究。结果显示,健康PB和CB循环细胞上CD34表达的亮度是区分CEC(CD45阴性/CD34明亮/CD146阳性)与造血干细胞(HSC)亚群(CD45弱阳性/CD34阳性/CD146阴性)的关键基准。该方法结合双平台计数技术,能够精确计数健康PB(n = 38)中的CEC,所得CEC计数与先前报道的数据一致(中位数 = 11.7个细胞/毫升)。同时,在严格的PFC条件下,未在任何健康PB或CB样本中发现CD34阳性/CD45弱阳性/CD133阳性/VEGFR2阳性的EPC,因为在CD34阳性/CD45弱阳性/CD133阳性细胞表面从未检测到VEGFR2表达。值得注意的是,在所有分析的BM样本(n = 12)中均观察到了假定的EPC表型,并且BM细胞上CD146和VEGFR2的表达不仅限于CD34明亮亚群,也出现在HSC表面。总之,我们的研究结果表明,先前报道的由VEGFR2和CD133在CD45弱阳性/CD34阳性细胞表面同时表达所定义的EPC抗原谱应仔细重新评估,并且应开展进一步研究以重新定义EPC特征,从而将CEC和EPC的鉴定转化为临床实践。

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