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Application of a Flow-Based Hollow-Fiber Co-Culture System to Study Cellular Influences under Hyperglycemic Conditions

机译:基于流动的中空纤维共培养系统在高血糖条件下研究细胞影响的应用

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摘要

Elucidation of the basic mechanisms underlying human disease pathogenesis depends on the findings afforded to us through in vivo and in vitro approaches. While there are inherent limitations in any model system, 2D in vitro culture systems tend to be particularly restricted due to their static nature. Here, we adapted a flow-based hollow-fiber cartridge system to better understand the cellular influences of human retinal microvascular endothelial cells and mouse-derived neutrophils under high glucose conditions similar to those observed in diabetes. Analyses by western blot and flow cytometry indicate that pro-inflammatory molecules known to be associated with the pathogenesis of diabetic retinopathy were significantly elevated following high glucose exposure, including VEGF, ICAM-1, and ROS. Changes in mitochondrial potential were also observed. Further, we demonstrate that this innovative system allows for cross-species co-culture as well as long-term culturing conditions. This in vitro modeling system not only mimics the retinal microvasculature, it also allows for the examination of cellular interactions and mechanisms that contribute to diabetic retinopathy, a visually debilitating complication of diabetes.
机译:阐明人类疾病发病机制的基本机制取决于通过体内和体外方法提供给我们的发现。尽管任何模型系统都有固有的局限性,但二维体外培养系统由于其静态特性而往往受到特别的限制。在这里,我们改编了基于流动的中空纤维药筒系统,以更好地了解在类似于糖尿病患者观察到的高葡萄糖条件下,人视网膜微血管内皮细胞和小鼠衍生的中性粒细胞的细胞影响。通过蛋白质印迹和流式细胞仪进行的分析表明,已知与糖尿病性视网膜病的发病机理相关的促炎分子在高葡萄糖暴露后明显升高,包括VEGF,ICAM-1和ROS。还观察到线粒体电位的变化。此外,我们证明了该创新系统可进行跨物种共培养以及长期培养条件。这种体外建模系统不仅可以模拟视网膜微脉管系统,还可以检查导致糖尿病性视网膜病变(糖尿病在视觉上使人衰弱的并发症)的细胞相互作用和机制。

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