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首页> 外文期刊>International Journal of Pharmaceutics >In-vitro and in-vivo cytotoxicity and efficacy evaluation of novel glycyl-glycine and alanyl-alanine conjugates of chitosan and trimethyl chitosan nano-particles as carriers for oral insulin delivery
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In-vitro and in-vivo cytotoxicity and efficacy evaluation of novel glycyl-glycine and alanyl-alanine conjugates of chitosan and trimethyl chitosan nano-particles as carriers for oral insulin delivery

机译:在体外和体内细胞毒性和壳聚糖和三甲基壳聚糖纳米颗粒的新糖基 - 甘氨酸和丙氨酸 - 丙氨酸缀合物的疗效评价作为口服胰岛素递送的载体

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Graphical abstract Display Omitted Abstract Purpose The aim of this research work was to explore the possibility of providing multifunctional oral insulin delivery system by conjugating several types of dipeptides on chitosan and trimethyl chitosan to be used as drug carriers. Method Conjugates of Glycyl-glycine and alanyl-alanine of chitosan and trimethyl chitosan (on primary alcohol group of polymer located on carbon 6) were synthesized and nanoparticles containing insulin were prepared for oral delivery. Preparation conditions of nanoparticles were optimized and their performance to enhance the permeability of insulin as well as cytotoxicity of nanoparticles in Caco-2 cell line was evaluated. To evaluate the efficacy of orally administered nanoparticles, nanoparticles with the most permeability enhancing ability were studied in male Wistar rats as animal model by measuring insulin and glucose Serum levels. Result Structural study of all the conjugates by infrared spectroscopy and nuclear magnetic resonance confirmed the successful formation of the conjugates with the desirable substitution degree. By optimizing preparation conditions, nanoparticles with expected size (157.3–197.7?nm), Zeta potential (24.35–34.37?mV), polydispersity index (0.365–0.512), entrapment efficiency (70.60–86.52%) and loading capacity (30.92–56.81%), proper morphology and desirable release pattern were obtained. Glycyl-glycine and alanyl-alanine conjugate nanoparticles of trimethyl chitosan showed 2.5–3.3 folds more effective insulin permeability in Caco-2 cell line than their chitosan counterparts. In animal model, oral administration of glycyl-glycine and alanyl-alanine conjugate nanoparticles of trimethyl chitosan demonstrated reasonable increase in Serum insulin level with relative bioavailability of 17.19% and 15.46% for glycyl-glycine and alanyl-alanine conjugate nanoparticles, respectively, and reduction in Serum glucose level compared with trimethyl chitosan nanoparticles ( p ? Conclusion It seems that glycyl-glycine and alanyl-alanine conjugate nanoparticles of trimethyl chitosan have met the aim of this research work and have been able to orally deliver insulin with more than one mechanism in animal model. Hence, they are promising candidates for further research studies.
机译:图形抽象显示省略了本研究工作的目的是探讨通过在壳聚糖和三甲基壳聚糖上缀合几种类型的二肽来使用壳聚糖和三甲基壳聚糖作为药物载体来提供多功能口服胰岛素递送系统的可能性。合成糖甘氨酸和三甲基壳聚糖的甘氨酸 - 甘氨酸和丙氨酸 - 丙氨酸的方法(在位于碳6上的聚合物的伯醇基上),并制备含含胰岛素的纳米颗粒。评价了纳米颗粒的制备条件,并评估了增强胰岛素的渗透性的性能以及Caco-2细胞系中纳米颗粒的细胞毒性。为了评价口服给予纳米颗粒的功效,用最渗透性增强能力的纳米颗粒在雄性Wistar大鼠作为动物模型,通过测量胰岛素和葡萄糖血清水平的影响。结果对红外光谱和核磁共振的所有缀合物的结构研究证实了与所需的替代度的成功形成缀合物。通过优化制备条件,具有预期尺寸的纳米颗粒(157.3-197.7μm),Zeta电位(24.35-34.37〜mV),多分散指数(0.365-0.512),夹紧效率(70.60-86.52%)和装载能力(30.92-56.81 %),获得了适当的形态和理想的释放模式。甘氨酸 - 甘氨酸和丙氨酸三乙基壳聚糖的纳米颗粒显示为2.5-3.3倍比其壳聚糖对应物在Caco-2细胞系中更有效的胰岛素渗透性。在动物模型中,甘氨酰甘氨酸和在与17.19%的相对生物利用度和对甘氨酰甘氨酸和丙氨酰 - 丙氨酸偶联纳米颗粒15.46%,分别和减少血清胰岛素水平三甲基壳聚糖证明合理增加丙氨酰 - 丙氨酸偶联物的纳米颗粒的口服给药与三甲基壳聚糖纳米颗粒相比(P?结论似乎甘氨酸 - 甘氨酸和奥丙基 - 丙氨酸族酰缀合物的三甲基壳聚糖纳米颗粒都达到了这项研究工作的目的,并且能够口服含有多种机制的胰岛素动物模型。因此,他们是进一步研究研究的承诺候选人。

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