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High glucose conditioned neonatal astrocytes results in impaired mitogenic activity in cerebral microvessel endothelial cells in co-culture

机译:高葡萄糖条件下的新生儿星形胶质细胞在共培养中导致脑微血管内皮细胞的促有丝分裂活性受损

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摘要

Angiogenesis is a highly complex and coordinated process in the brain. Under normal conditions, it is a vital process in growth and development, but under adverse conditions such as diabetes mellitus, it can lead to severe pathology. Astrocytes are a key constituent of the neurovascular unit and contribute to cerebral function, not only bridging the gap between metabolic supplies from blood vessels to neurons, but also regulating angiogenesis. Astrocytes affect angiogenesis by secreting angiogenic factors such as vascular endothelial growth factor (VEGF) into its microenvironment and regulating mitogenic activity in cerebral microvessel endothelial cells (CMEC). We hypothesized that astrocytes conditioned in high glucose media would produce and secrete decreased VEGF which would lead to impaired proliferation, migration, and tube formation of CMEC in vitro. Using neonatal rat astrocytes, we used normal glucose (NG, 5.5mM) vs. high glucose (HG, 25mM) feeding media and measured VEGF message and protein levels as well as secreted VEGF. We co-cultured conditioned astrocytes with isolated rat CMEC and measured mitogenic activity of endothelial cells using BrdU assay, scratch recovery assay, and tube formation assay. HG astrocytes produced and secreted decreased VEGF protein and resulted in impaired mitogenic activity when co-cultured with CMEC as demonstrated by decreased BrdU uptake, decreased scratch recovery, and slower tube formation. Our study provides insight into gliovascular adaptations to increased glucose levels resulting in impaired cellular cross-talk between astrocytes and CMEC which could be one explanation for cerebral microangiopathy seen in diabetic conditions.
机译:血管生成是大脑中高度复杂且协调的过程。在正常条件下,它是生长发育的重要过程,但在糖尿病等不利条件下,它可能导致严重的病理。星形胶质细胞是神经血管单位的关键组成部分,并有助于大脑功能,不仅弥合了从血管到神经元的代谢供给之间的鸿沟,而且还调节了血管生成。星形胶质细胞通过将诸如血管内皮生长因子(VEGF)的血管生成因子分泌到其微环境中并调节脑微血管内皮细胞(CMEC)的促有丝分裂活性来影响血管生成。我们假设在高葡萄糖培养基中调节的星形胶质细胞会产生并分泌减少的VEGF,这将导致体外CMEC的增殖,迁移和管形成受损。使用新生的大鼠星形胶质细胞,我们使用了正常葡萄糖(NG,5.5mM)与高葡萄糖(HG,25mM)的喂养介质,并测量了VEGF信息和蛋白水平以及分泌的VEGF。我们将培养的条件星形胶质细胞与分离的大鼠CMEC共培养,并使用BrdU测定,刮擦恢复测定和管形成测定来测量内皮细胞的促有丝分裂活性。当与CMEC共培养时,HG星形胶质细胞产生并分泌的VEGF蛋白减少,并导致有丝分裂活性受损,这可通过减少BrdU摄取,减少划痕恢复和减缓管形成来证明。我们的研究为神经胶质血管适应增加的葡萄糖水平导致了星形胶质细胞和CMEC之间的细胞串扰受损提供了见识,这可能是糖尿病患者中脑微血管病的一种解释。

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