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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Design of novel injectable cationic microspheres based on aminated gelatin for prolonged insulin action.
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Design of novel injectable cationic microspheres based on aminated gelatin for prolonged insulin action.

机译:基于胺化明胶的新型可注射阳离子微球的设计,可延长胰岛素作用。

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The aim of this study was to prepare two types of injectable cationized microspheres based on a native gelatin (NGMS) and aminated gelatin with ethylenediamine (CGMS) to prolong the action of insulin. Release of rhodamin B isothiocyanate insulin from CGMS was compared with that from NGMS under in-vitro and in-vivo conditions. Lower release of insulin from CGMS compared with that from NGMS was caused by the suppression of initial release. The disappearance of 125I-insulin from the injection site after intramuscular administration by NGMS and CGMS had a biphasic profile in mice. Almost all the 125I-insulin had disappeared from the injection site one day after administration by NGMS. The remaining insulin at the injection site after administration by CGMS was prolonged, with approximately 59% remaining after one day and 16% after 14 days. The disappearance of CGMS from the injection site was lower than that of NGMS. However, the difference in these disappearance rates was not great compared with those of 125I-insulin from the injection site by NGMS and CGMS. The time course of disappearance of 125I-CGMS from the injection site was similar to that of 125I-insulin by CGMS. The initial hypoglycaemic effect was observed 1 h after administration of insulin by NGMS, thereafter its effect rapidly disappeared. The hypoglycaemic effect was observed 2-4 h after administration by CGMS and continued to be exhibited for 7 days. The prolonged hypoglycaemic action by CGMS depended on the time profiles of the disappearance of insulin from muscular tissues, which occurs due to the enzymatic degradation of CGMS.
机译:这项研究的目的是基于天然明胶(NGMS)和胺化的明胶与乙二胺(CGMS)制备两种类型的可注射阳离子化微球,以延长胰岛素的作用。在体外和体内条件下,将CGMS和NGMS中的若丹明B异硫氰酸酯胰岛素的释放进行了比较。 CGMS胰岛素释放量低于NGMS胰岛素释放量的原因是抑制了初始释放。 NGMS和CGMS肌肉注射后,注射部位125 I-胰岛素的消失在小鼠中呈双相分布。 NGMS给药后一天,几乎所有125I胰岛素都已从注射部位消失。通过CGMS给药后,注射部位的胰岛素残留得以延长,一天后约59%,14天后约16%。注射部位CGMS的消失低于NGMS。但是,与通过NGMS和CGMS从注射部位得到的125I胰岛素相比,这些消失率的差异并不大。从注射部位消失的125I-CGMS的时间过程与CGMS消失的125I-胰岛素的时间过程相似。 NGMS注射胰岛素后1小时观察到了最初的降血糖作用,此后其作用迅速消失。通过CGMS给药后2-4小时观察到降血糖作用,并持续显示7天。 CGMS延长的降血糖作用取决于胰岛素从肌肉组织中消失的时间曲线,这是由于CGMS的酶促降解引起的。

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