首页> 外文期刊>Brain research >Vascular endothelial growth factor-stimulated cerebral microvascular endothelial cells mediate the recruitment of neural stem cells to the neurovascular niche.
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Vascular endothelial growth factor-stimulated cerebral microvascular endothelial cells mediate the recruitment of neural stem cells to the neurovascular niche.

机译:血管内皮生长因子刺激的脑微血管内皮细胞介导神经干细胞向神经血管利基的募集。

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摘要

Endogenous and transplanted neural stem cells (NSC) are highly migratory and display a unique tropism for areas of neuro-pathology. However, signals controlling NSC motility in health and disease are still ill-defined. NSC appear to be intimately associated with the cerebral vasculature and angiogenesis is a hallmark of many neurological disorders. This has led us to investigate the influence of quiescent and angiogenically active human endothelial cells on human NSC migration. In vivo we observed frequent perivascular accumulation of human NSC in the proximity of cerebral microvessels upon induction of angiogenesis by cerebral infusion of vascular endothelial growth factor (VEGF) into the murine brain. We analyzed the in vitro effects of conditioned media from human endothelial cells before and after angiogenic stimulation with VEGF on the migration of human NSC in vitro. Non-stimulated endothelial cells induced a moderate chemotactic migration that was significantly enhanced after angiogenic activation by VEGF. In order to identify cytokines that may function as stimulators of NSC chemotaxis, we screened endothelial cell-conditioned media for the expression of 120 different cytokines. We identified PDGF-BB, RANTES, I-TAC, NAP-2, GROalpha, Ang-2, and M-CSF as endothelial cell-released chemoattractants for human NSC in vitro. VEGF-stimulated cerebral microvascular endothelial cells secreted higher levels of Ang-2 and GROalpha, which in part were responsible for the enhanced chemoattraction of NSC. Our findings support the hypothesis that the angiogenically active microvasculature modulates the local guidance of NSC through endothelial cell-derived chemoattractants.
机译:内源性和移植的神经干细胞(NSC)具有高度的迁移能力,并且在神经病理学领域表现出独特的向性。但是,在健康和疾病中控制NSC运动性的信号仍不清楚。 NSC似乎与脑血管密切相关,血管生成是许多神经系统疾病的标志。这已导致我们研究静态和具有血管生成活性的人内皮细胞对人NSC迁移的影响。在体内,我们观察到在通过向鼠脑中脑内注入血管内皮生长因子(VEGF)诱导血管生成后,人NSC在脑微血管附近频繁出现血管周围蓄积。我们分析了血管内皮生长因子刺激前后人内皮细胞条件培养液对人NSC体外迁移的体外影响。未刺激的内皮细胞诱导中度趋化性迁移,该迁移在被血管生成激活后明显增强。为了鉴定可能起NSC趋化性刺激作用的细胞因子,我们筛选了内皮细胞条件培养基中120种不同细胞因子的表达。我们将PDGF-BB,RANTES,I-TAC,NAP-2,GROalpha,Ang-2和M-CSF鉴定为体外人NSC释放的内皮细胞趋化因子。 VEGF刺激的脑微血管内皮细胞分泌更高水平的Ang-2和GROalpha,部分原因是NSC的化学引诱力增强。我们的发现支持以下假设:血管生成活性微血管通过内皮细胞衍生的趋化因子调节NSC的局部引导。

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