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Repression of retinal microvascular endothelial cells by transthyretin under simulated diabetic retinopathy conditions

机译:通过模拟糖尿病视网膜病变下的Transthyretin抑制视网膜微血管内皮细胞

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摘要

AIM: To investigate biological effects of transthyretin (TTR) on the development of neovascularization under simulated diabetic retinopathy (DR) condition associated with high glucose and hypoxia.METHODS: Human retinal microvascular endothelial cells (hRECs) were cultured in normal and simulated DR environments with high glucose and hypoxia. The normal serum glucose concentration is approximately 5.5 mmol/L; thus, hyperglycemia was simulated with 25 mmol/L glucose, while hypoxia was induced using 200 µmol/L CoCl2. The influence of TTR on hRECs and human retinal pigment epithelial cells (hRPECs) was determined by incubating the cells with 4 μmol/L TTR in normal and abnormal media. A co-culture system was then employed to evaluate the effects of hRPECs on hRECs.RESULTS: Decreased hRECs and hRPECs were observed under abnormal conditions, including high-glucose and hypoxic media. In addition, hRECs were significantly inhibited by 4 μmol/L exogenous TTR during hyperglycemic culture. During co-culture, hRPECs inhibited hRECs in both the normal and abnormal environments.CONCLUSION: hREC growth is inhibited by exogenous TTR under simulated DR environments with high-glucose and hypoxic, particularly in the medium containing 25 mmol/L glucose. hRPECs, which manufacture TTR in the eye, also represses hRECs in the same environment. TTR is predicted to inhibit the proliferation of hRECs and neovascularization.
机译:目的:探讨Transthyretin(TTR)对与高葡萄糖和缺氧相关的模拟糖尿病视网膜病变(DR)病症下新生血管形成的生物学效应。方法:具有高葡萄糖和缺氧的正常和模拟DR环境中培养人视网膜微血管内皮细胞(HREC)。正常的血清葡萄糖浓度约为5.5mmol / L;因此,用25mmol / L葡萄糖模拟高血糖,而使用200μmol/ L COCl2诱导缺氧。通过在正常和异常和异常培养基中孵育细胞通过将细胞孵育4μmol/ l ttr,测定TTR对HREC和人视线性上皮细胞(HRPEC)的影响。然后使用共培养系统来评估HRPEC对HREC的影响。结果:在异常条件下观察到HRECs和HRPEC,包括高葡萄糖和缺氧介质。此外,HREC在高血糖培养过程中由4μmol/ L外源TTR显着抑制。在共同培养期间,HRPEC在正常和异常环境中抑制了HREC。结论:具有高葡萄糖和缺氧的模拟DR环境下的外源TTR抑制HREC生长,特别是在含有25mmol / L葡萄糖的培养基中。在眼睛中制造TTR的HRPEC也在同一环境中抑制HREC。预测TTR抑制HREC和新血管形成的增殖。

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  • 作者

    Yong Yao; Jun Shao;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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