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Enhanced protection of Ins-1 β cells from apoptosis under hypoxia by delivery of DNA encoding secretion signal peptide-linked exendin-4

机译:通过递送DNA分泌信号肽连接的Exendin-4,通过递送缺氧下的INS-1β细胞免受凋亡的保护

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摘要

In this study, we developed an expression system of exendin-4, a glucagon-like peptide (GLP-1) analog, using a secretion signal peptide (SP) to facilitate exendin-4 secretion. For delivery of the exendin-4 expression system, high-molecular-weight polyethylenimine (25 kDa, PEI25k), low-molecular-weight polyethyl-enimine (2 kDa, PEI2k),and polyamidoamine (PAMAM) dendrimers were evaluated as gene carriers to lns-1 β cells. As a result, PEI25k showed the highest transfection efficiency. For the construction of the exendin-4 expression vector, DNA coding the SP sequence was inserted upstream of the exendin-4 cDNA, resulting in the construction of pβ-SP-Ex-4. Transfection assay showed that the secretion level of exendin-4 increased in the pβ-SP-Ex-4 transfected cells, compared with the pβ-Ex-4 transfected cells. To identify the β-cell protection effect of pβ-SP-Ex-4 delivery, the lns-1 β cells were transfected with pβ-SP-Ex-4or pβ-Ex-4 and incubated under normoxia or hypoxia. An MTT assay showed that the pβ-SP-Ex-4 transfected cells had higher β-cell viability than the pβ-Ex-4 transfected cells under hypoxia. In addition, the pβ-SP-Ex-4 transfected cells exhibited lower caspase-3 activity than the pβ-Ex-4 transfected cells. Therefore, PEI25k/pβ-SP-Ex-4 complex may be useful to protect isolated β cells from apoptosis during transplantation.
机译:在本研究中,我们使用分泌信号肽(SP)开发了Exendin-4,胰高血糖素肽(GLP-1)类似物的表达系统,以促进Exendin-4分泌。为了递送Exendin-4表达系统,评估为基因载体的高分子量聚乙烯(25kDa,PEI25K),低分子量聚乙烯 - 烯氨基(2kDA,PEI2K)和聚酰胺胺(PAMAM)树枝状大分子LNS-1β细胞。结果,PEI25K显示了最高的转染效率。为了构建exendin-4表达载体,将SP序列的DNA插入Exendin-4 cDNA的上游,导致Pβ-SP-EX-4的构建。转染检测结果表明,与Pβ-EX-4转染的电池相比,Pβ-SP-EX-4转染细胞中exendin-4的分泌水平增加。为了鉴定Pβ-SP-EX-4输送的β细胞保护作用,用Pβ-SP-EX-40RPβ-EX-4转染LNS-1β细胞并在常氧或缺氧下培养。 MTT测定显示Pβ-SP-EX-4转染的细胞比缺氧下的Pβ-EX-4转染的细胞具有较高的β细胞活力。此外,Pβ-SP-EX-4转染细胞表现出比Pβ-EX-4转染的细胞低的Caspase-3活性。因此,PEI25K /Pβ-SP-EX-4复合物可用于保护在移植过程中保护分离的β细胞免受细胞凋亡。

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