首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Transferrin Fusion Technology: A Novel Approach to Prolonging Biological Half-Life of Insulinotropic Peptides
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Transferrin Fusion Technology: A Novel Approach to Prolonging Biological Half-Life of Insulinotropic Peptides

机译:转铁蛋白融合技术:延长促胰岛素肽的生物半衰期的新方法。

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摘要

Fusion proteins made up of glucagon-like peptide 1 (GLP-1) and exendin-4 (EX-4) fused to a nonglycosylated form of human transferrin (GLP-1-Tf or EX-4-Tf) were produced and characterized. GLP-1-Tf activated the GLP-1 receptor, was resistant to inactivation by peptidases, and had a half-life of approximately 2 days, compared with 1 to 2 min for native GLP-1. GLP-1-Tf retained the acute, glucose-dependent insulin-secretory properties of native GLP-1 in diabetic animals and had a profound effect on proliferation of pancreatic β-cells. In addition, Tf and the fusion proteins did not cross the blood-brain-barrier but still reduced food intake after peripheral administration. EX-4-Tf proved to be as effective as EX-4 but had longer lived effects on blood glucose and food intake. This novel transferrin fusion technology could improve the pharmacology of various peptides.
机译:产生并鉴定了由胰高血糖素样肽1(GLP-1)和exendin-4(EX-4)融合到人转铁蛋白的非糖基化形式(GLP-1-Tf或EX-4-Tf)组成的融合蛋白。与天然GLP-1的1至2分钟相比,GLP-1-Tf激活了GLP-1受体,对肽酶的灭活具有抗性,并且半衰期约为2天。 GLP-1-Tf在糖尿病动物中保留了天然GLP-1的急性,葡萄糖依赖的胰岛素分泌特性,并对胰腺β细胞的增殖产生了深远的影响。另外,Tf和融合蛋白没有穿过血脑屏障,但是在外周给药后仍然减少了食物摄入。事实证明,EX-4-Tf与EX-4一样有效,但对血糖和食物摄入的影响更长。这种新颖的转铁蛋白融合技术可以改善各种肽的药理作用。

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