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早产儿生发基质血管周细胞数量不足。

Paucity of pericytes in germinal matrix vasculature of premature infants.

作者信息

Braun Alex, Xu Hongmin, Hu Furong, Kocherlakota Praneeth, Siegel Donald, Chander Praveen, Ungvari Zoltan, Csiszar Anna, Nedergaard Maiken, Ballabh Praveen

机构信息

Department of Pathology, New York Medical College, Westchester Medical Center, Valhalla, New York 10595, USA.

出版信息

J Neurosci. 2007 Oct 31;27(44):12012-24. doi: 10.1523/JNEUROSCI.3281-07.2007.

Abstract

Germinal matrix (GM) is a richly vascularized collection of neuronal-glial precursor cells in the developing brain, which is selectively vulnerable to hemorrhage in premature infants. It has rapid angiogenesis associated with high levels of vascular endothelial growth factor (VEGF). Because pericytes provide structural stability to blood vessels, we asked whether pericytes were fewer in the GM than in the subjacent white matter and neocortex and, if so, whether angiogenic inhibition could increase the pericyte density in the GM. We found pericyte coverage and density less in the GM vasculature than in the cortex or white matter in human fetuses, premature infants, and premature rabbit pups. Notably, although VEGF suppression significantly enhanced pericyte coverage in the GM, it remained less than in other brain regions. Therefore, to further elucidate the basis of fewer pericytes in the GM vasculature, we examined expression of ligand-receptor systems responsible for pericyte recruitment. Transforming growth factor-beta1 (TGF-beta1) protein expression was lower, whereas sphingosine-1-phosphate1 (S1P1) and N-cadherin levels were higher in the GM than in the cortex or white matter. Low TGF-beta1 may be involved in promoting endothelial proliferation, whereas elevated S1P1 with N-cadherin may assist vascular maturation. Hence, a paucity of pericytes in the GM vasculature may contribute to its propensity to hemorrhage, and a lower expression of TGF-beta1 could be a basis of reduced pericyte density in its vasculature.

摘要

生发基质(GM)是发育中大脑中富含血管的神经胶质前体细胞集合,早产儿的生发基质对出血具有选择性易损性。它具有与高水平血管内皮生长因子(VEGF)相关的快速血管生成。由于周细胞为血管提供结构稳定性,我们想知道生发基质中的周细胞是否比其下方的白质和新皮质中的周细胞少,如果是这样,血管生成抑制是否可以增加生发基质中的周细胞密度。我们发现,在人类胎儿、早产儿和早产兔幼崽中,生发基质脉管系统中的周细胞覆盖度和密度低于皮质或白质。值得注意的是,虽然VEGF抑制显著增强了生发基质中的周细胞覆盖度,但仍低于其他脑区。因此,为了进一步阐明生发基质脉管系统中周细胞较少的原因,我们研究了负责周细胞募集的配体-受体系统的表达。与皮质或白质相比,生发基质中转化生长因子-β1(TGF-β1)蛋白表达较低,而1-磷酸鞘氨醇1(S1P1)和N-钙黏蛋白水平较高。低水平的TGF-β1可能参与促进内皮细胞增殖,而升高的S1P1与N-钙黏蛋白可能有助于血管成熟。因此,生发基质脉管系统中周细胞数量不足可能导致其出血倾向,而TGF-β1表达降低可能是其脉管系统中周细胞密度降低的一个原因。

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