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向血管生成抑制基因表达的转变会损害低出生体重早产儿内皮祖细胞的血管生成特性。

A switch toward angiostatic gene expression impairs the angiogenic properties of endothelial progenitor cells in low birth weight preterm infants.

机构信息

Inserm, Unité Mixte de Recherche 608, Physiopathologie de l'Endothélium Marseille, Marseille, France.

出版信息

Blood. 2011 Aug 11;118(6):1699-709. doi: 10.1182/blood-2010-12-325142. Epub 2011 Jun 9.

Abstract

Low birth weight (LBW) is associated with increased risk of cardiovascular diseases at adulthood. Nevertheless, the impact of LBW on the endothelium is not clearly established. We investigate whether LBW alters the angiogenic properties of cord blood endothelial colony forming cells (LBW-ECFCs) in 25 preterm neonates compared with 25 term neonates (CT-ECFCs). We observed that LBW decreased the number of colonies formed by ECFCs and delayed the time of appearance of their clonal progeny. LBW dramatically reduced LBW-ECFC capacity to form sprouts and tubes, to migrate and to proliferate in vitro. The angiogenic defect of LBW-ECFCs was confirmed in vivo by their inability to form robust capillary networks in Matrigel plugs injected in nu/nu mice. Gene profile analysis of LBW-ECFCs demonstrated an increased expression of antiangiogenic genes. Among them, thrombospondin 1 (THBS1) was highly expressed at RNA and protein levels in LBW-ECFCs. Silencing THBS1 restored the angiogenic properties of LBW-ECFCs by increasing AKT phosphorylation. The imbalance toward an angiostatic state provide a mechanistic link between LBW and the impaired angiogenic properties of ECFCs and allows the identification of THBS1 as a novel player in LBW-ECFC defect, opening new perspectives for novel deprogramming agents.

摘要

低出生体重(LBW)与成年后患心血管疾病的风险增加有关。然而,LBW 对血管内皮的影响尚不清楚。我们研究了 25 名早产儿(LBW-ECFCs)与 25 名足月新生儿(CT-ECFCs)相比,LBW 是否会改变脐带血内皮祖细胞的血管生成特性。我们观察到 LBW 减少了 ECFC 形成的集落数量,并延迟了其克隆后代出现的时间。LBW 显著降低了 LBW-ECFC 体外形成芽和管、迁移和增殖的能力。LBW-ECFC 在体内的血管生成缺陷通过其在裸鼠注射的 Matrigel 塞中无法形成强健的毛细血管网络得到证实。LBW-ECFC 的基因谱分析表明抗血管生成基因的表达增加。其中,血栓素 1(THBS1)在 LBW-ECFCs 的 RNA 和蛋白质水平上均高度表达。沉默 THBS1 通过增加 AKT 磷酸化来恢复 LBW-ECFC 的血管生成特性。向血管生成抑制状态的不平衡为 LBW 与 ECFC 血管生成特性受损之间提供了一种机制联系,并确定 THBS1 为 LBW-ECFC 缺陷的新参与者,为新型去编程剂开辟了新的前景。

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