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首页> 外文期刊>Stem Cell Research & Therapy >High-throughput immunophenotypic characterization of bone marrow- and cord blood-derived mesenchymal stromal cells reveals common and differentially expressed markers: identification of angiotensin-converting enzyme (CD143) as a marker differentially expressed between adult and perinatal tissue sources
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High-throughput immunophenotypic characterization of bone marrow- and cord blood-derived mesenchymal stromal cells reveals common and differentially expressed markers: identification of angiotensin-converting enzyme (CD143) as a marker differentially expressed between adult and perinatal tissue sources

机译:骨髓和脐带血间充质基质细胞的高通量免疫表型表征揭示了共同且差异表达的标志物:鉴定血管紧张素转化酶(CD143)作为成年和围产期组织来源之间差异表达的标志物

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Mesenchymal stromal cells (MSC) are a heterogeneous population of multipotent progenitors used in the clinic because of their immunomodulatory properties and their ability to differentiate into multiple mesodermal lineages. Although bone marrow (BM) remains the most common MSC source, cord blood (CB) can be collected noninvasively and without major ethical concerns. Comparative studies comprehensively characterizing the MSC phenotype across several tissue sources are still lacking. This study provides a 246-antigen immunophenotypic analysis of BM- and CB-derived MSC aimed at identifying common and strongly expressed MSC markers as well as the existence of discriminating markers between the two sources. BM-MSC (n?=?4) were expanded and analyzed as bulk (n?=?6) or single clones isolated from the bulk culture (n?=?3). CB-MSC (n?=?6) were isolated and expanded as single clones in 5/6 samples. The BM-MSC and CB-MSC phenotype was investigated by flow cytometry using a panel of 246 monoclonal antibodies. To define the markers common to both sources, those showing the smallest variation between samples (coefficient of variation of log2 fold increase?≤?0.5, n?=?59) were selected for unsupervised hierarchical cluster analysis (HCL). Differentially expressed markers were identified by directly comparing the expression of all 246 antigens between BM-MSC and CB-MSC. Based on HCL, 18 markers clustered as strongly expressed in BM-MSC and CB-MSC, including alpha-smooth muscle antigen (SMA), beta-2-microglobulin, CD105, CD13, CD140b, CD147, CD151, CD276, CD29, CD44, CD47, CD59, CD73, CD81, CD90, CD98, HLA-ABC, and vimentin. All except CD140b and alpha-SMA were suitable for the specific identification of ex-vivo expanded MSC. Notably, only angiotensin-converting enzyme (CD143) was exclusively expressed on BM-MSC. CD143 expression was tested on 10 additional BM-MSC and CB-MSC and on 10 umbilical cord- and adipose tissue-derived MSC samples, confirming that its expression is restricted to adult sources. This is the first study that has comprehensively compared the phenotype of BM-MSC and CB-MSC. We have identified markers that could complement the minimal panel proposed for the in-vitro MSC definition, being shared and strongly expressed by BM- and CB-derived MSC. We have also identified CD143 as a marker exclusively expressed on MSC derived from adult tissue sources. Further studies will elucidate the biological role of CD143 and its potential association with tissue-specific MSC features.
机译:间充质基质细胞(MSC)是临床中使用的多能祖细胞的异质群体,因为它们的免疫调节特性和分化为多个中胚层谱系的能力。尽管骨髓(BM)仍然是最常见的MSC来源,但脐带血(CB)可以无创地收集且无重大伦理问题。尚缺乏全面表征多种组织来源的MSC表型的比较研究。这项研究提供了BM和CB衍生的MSC的246抗原免疫表型分析,旨在鉴定常见和强烈表达的MSC标记以及两种来源之间存在的区分标记。扩增BM-MSC(n≥3)并分析为大块(n≥6)或从大批培养物中分离出的单个克隆(n≥3)。分离出CB-MSC(n≥6),并在5/6个样品中扩增为单个克隆。使用一组246种单克隆抗体通过流式细胞术研究了BM-MSC和CB-MSC表型。为了定义两种来源共有的标记,选择了显示样本间最小差异的标记(log2倍数增加的变异系数≤≤0.5,n≤= 59)进行无监督的层次聚类分析(HCL)。通过直接比较BM-MSC和CB-MSC之间所有246种抗原的表达来鉴定差异表达的标志物。基于HCL,在BM-MSC和CB-MSC中强烈表达的18种标记物聚集在一起,包括α平滑肌抗原(SMA),β-2-微球蛋白,CD105,CD13,CD140b,CD147,CD151,CD276,CD29,CD44 ,CD47,CD59,CD73,CD81,CD90,CD98,HLA-ABC和波形蛋白。除CD140b和α-SMA外,其他所有蛋白都适合特异性鉴定离体扩增的MSC。值得注意的是,仅血管紧张素转化酶(CD143)在BM-MSC上专门表达。在另外10个BM-MSC和CB-MSC以及10个脐带和脂肪组织衍生的MSC样品上测试了CD143的表达,证实了其表达仅限于成人。这是第一项全面比较BM-MSC和CB-MSC表型的研究。我们已经确定了可以补充为体外MSC定义建议的最小面板的标记,这些标记可以由BM和CB衍生的MSC共享并强烈表达。我们还确定了CD143为仅在来源于成人组织来源的MSC上表达的标志物。进一步的研究将阐明CD143的生物学作用及其与组织特异性MSC功能的潜在联系。

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