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神经对 1 型和 2 型糖尿病角膜基质代谢的影响:一项体外研究。

Nerve influence on the metabolism of type I and type II diabetic corneal stroma: an in vitro study.

机构信息

Department of Physiology, University of Oklahoma Health Sciences Center, 940 Stanton L. Young, Oklahoma City, OK, USA.

North Texas Eye Research Institute, University of North Texas Health Science Center, 3500 Camp Bowie Blvd, Fort Worth, TX, 76107, USA.

出版信息

Sci Rep. 2021 Jul 1;11(1):13627. doi: 10.1038/s41598-021-93164-1.

Abstract

Corneal innervation plays a major role in the pathobiology of diabetic corneal disease. However, innervation impact has mainly been investigated in the context of diabetic epitheliopathy and wound healing. Further studies are warranted in the corneal stroma-nerve interactions. This study unravels the nerve influence on corneal stroma metabolism. Corneal stromal cells were isolated from healthy (HCFs) and diabetes mellitus (Type1DM and Type2 DM) donors. Cells were cultured on polycarbonate membranes, stimulated by stable Vitamin C, and stroma-only and stroma-nerve co-cultures were investigated for metabolic alterations. Innervated compared to stroma-only constructs exhibited significant alterations in pyrimidine, glycerol phosphate shuttle, electron transport chain and glycolysis. The most highly altered metabolites between healthy and T1DMs innervated were phosphatidylethanolamine biosynthesis, and pyrimidine, methionine, aspartate metabolism. Healthy and T2DMs main pathways included aspartate, glycerol phosphate shuttle, electron transport chain, and gluconeogenesis. The metabolic impact on T1DMs and T2DMs was pyrimidine, purine, aspartate, and methionine. Interestingly, the glucose-6-phosphate and oxaloacetate was higher in T2DMs compared to T1DMs. Our in vitro co-culture model allows the examination of key metabolic pathways corresponding to corneal innervation in the diabetic stroma. These novel findings can pave the way for future studies to fully understand the metabolic distinctions in the diabetic cornea.

摘要

角膜神经支配在糖尿病性角膜疾病的病理生物学中起着重要作用。然而,神经支配的影响主要在糖尿病上皮病变和伤口愈合的背景下进行了研究。在角膜基质-神经相互作用方面还需要进一步的研究。本研究揭示了神经对角膜基质代谢的影响。从健康供体(HCFs)和糖尿病(1 型和 2 型)供体中分离出角膜基质细胞。细胞培养在聚碳酸酯膜上,用稳定的维生素 C 刺激,并研究了基质单独和基质-神经共培养物的代谢变化。与基质单独构建体相比,有神经支配的构建体在嘧啶、甘油磷酸穿梭、电子传递链和糖酵解方面表现出明显的改变。与健康对照组相比,1 型糖尿病有神经支配的细胞中改变最明显的代谢物为磷酸乙醇胺生物合成以及嘧啶、甲硫氨酸和天冬氨酸代谢。健康和 2 型糖尿病的主要途径包括天冬氨酸、甘油磷酸穿梭、电子传递链和糖异生。1 型和 2 型糖尿病的代谢影响涉及嘧啶、嘌呤、天冬氨酸和甲硫氨酸。有趣的是,与 1 型糖尿病相比,2 型糖尿病的葡萄糖-6-磷酸和草酰乙酸水平更高。我们的体外共培养模型允许检查与糖尿病基质中角膜神经支配相对应的关键代谢途径。这些新发现为进一步研究全面了解糖尿病角膜的代谢差异铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05e0/8249404/9a2322314860/41598_2021_93164_Fig1_HTML.jpg

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