PEI-miRNA-126/210复合物在人脐静脉内皮细胞中的构建和转移及其对胰岛存活和功能的影响

Q4 Pharmacology, Toxicology and Pharmaceutics
F. Sabet Sarvestani, A. Tamaddon, M. Karimi, R. Yaghoobi, B. Geramizadeh, M. Heydari, I. Al-Abdullah, N. Azarpira
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引用次数: 0

摘要

背景:1型糖尿病是一种以胰岛丧失为特征的自身免疫性疾病。胰岛异体移植是一种潜在的有益的糖尿病治疗方法。胰岛在分离期间遭受各种细胞损伤,包括缺血和部分血管丧失,导致移植前生存能力显著降低。本研究旨在间接探讨血管生成microRNA (miRNA)-126和-210对胰岛功能和活力的影响。方法:以不同的氮/磷酸盐(N/P)比构建聚乙亚胺(PEI)-miRNA-126和-210多聚物。经凝胶阻滞和溴化乙锭染色排除试验证实后,分别用MTT法和荧光法分析其细胞毒性和转染效率。之后,将选择的复合物体外转染人脐静脉内皮细胞(HUVECs),并与胰岛细胞间接共培养3天。实时聚合酶链反应和酶联免疫分析验证靶基因的调控和胰岛的功能。结果:PEI能在N/P=5时凝聚miRNAs。随着PEI用量的增加,HUVECs的活力降低。此外,ployplex-126和-210导致靶基因、磷酸肌醇-3激酶调控亚基2、发芽相关EVH1结构域含蛋白1和ephrin-A3在胰岛中的表达减少。此外,在polyplex-126和-210处理组中,Bax和Bcl2的表达及其比值导致胰岛的生存和功能改善,胰岛素表达增加,对葡萄糖刺激的反应增加。此外,与其他组相比,polyplex-210可以下调抗血管生成蛋白血栓反应蛋白1。最后,经胰岛素分泌调整后,polyplex-210的c肽分泌高于其他组。结论:血管生成mirna可通过与靶细胞的相互作用促进胰岛细胞的存活和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction and transfer of PEI-miRNA-126/210 polyplex into Human Umbilical Vein Endothelial Cells with investigation of its effect on islets survival and function
Background:Type 1 diabetes is an autoimmune disorder characterized by the loss of pancreatic islets. Islet allotransplantation is a potentially beneficial therapeutic approach for diabetes. Islets suffer a variety of cellular insults including ischemia and partial vascular loss during isolation, resulting in a significant reduction in viability prior to transplantation. The present study aimed to investigate the effect of angiogenic microRNA (miRNA)-126 and -210 on islet function and viability in an indirect way. Methods:Poly Ethylenimine (PEI)-miRNA-126 and -210 polyplexes were constructed at various Nitrogen/Phosphate (N/P) ratios. After confirmation by gel retardation and ethidium bromide dye exclusion assay, its cytotoxicity and transfection efficiency were analyzed by MTT and fluorescent assays, respectively. After that, the selected polyplexes were used to transfect Human Umbilical Vein Endothelial Cells (HUVECs) in vitro and were indirectly co-cultured with islet cells for three days. Real-time polymerase chain reaction and enzyme-linked immunoassay were conducted to verify the regulation of target genes and the functionality of the islets. Results:The findings showed that PEI could condense miRNAs at N/P=5. The viability of the HUVECs was decreased by increasing the amount of PEI. Additionally, ployplex-126 and -210 led to a decrease in the expressions of target genes, phosphoinositol-3 kinase regulatory subunit 2, sprouty-related EVH1 domain-containing protein 1, and ephrin-A3 in the islets. Moreover, the expressions of Bax and Bcl2 and their ratio in the treated groups by polyplex-126 and -210 led to better survival and function of the islets, with a higher expression of insulin and response to glucose stimulations. Furthermore, polyplex-210 could downregulate the anti-angiogenic protein, thrombospondin 1, compared to the other groups. Finally, the secretion of C-peptide was higher in polyplex-210 than in the other groups, adjusted for insulin secretion. Conclusion:The results indicated that angiogenic miRNAs could promote the survival and function of islet cells by interacting with their targets.
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CiteScore
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