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Synthesis and evaluation of lauryl succinyl chitosan particles towards oral insulin delivery and absorption

机译:月桂基琥珀酰壳聚糖颗粒的合成及其口服胰岛素吸收吸收的评价

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摘要

In this work a novel chitosan derivative, lauryl succinyl chitosan (LSC) was developed for the purpose of evaluating its applications towards oral peptide delivery system. Nano/microparticles were developed from this derivative by sodium tripolyphosphate (TPP) cross linking. Human insulin was used as the model protein drug and the release kinetics was studied at gastrointestinal pH. The presence of succinyl carboxyl groups had inhibitory effect on the release kinetics of insulin at pH 1.2 minimizing up to about 8.5 +/- 0.45% in two hours. Results showed that the presence of hydrophobic moieties controlled the release of the loaded insulin from the particles at intestinal pH. The particles were negatively charged with size ranging from 315 nm to 1.090 mu m. The rnucoadhesive capacity was established ex vivo using the jejunum of rat intestine. Confocal microscopy Studies proved the tight junction permeability in Caco 2 cells and in vivo uptake of the FITC-insulin from loaded nanciparticles by the rat intestinal epithelium. The results demonstrated that the modified chitosan with both hydrophilic (succinyl) and hydrophobic (lauryl) moieties had improved the release characteristics, mucoadhesivity as well as the permeability of the insulin compared to the native chitosan particles. The LSC2 particles were capable of reducing blood glucose levels in diabetic rats for the duration of about 6 h. This indicated that this novel derivative Could be a promising candidate for Oral peptide delivery.
机译:在这项工作中,开发了一种新颖的壳聚糖衍生物月桂基琥珀酰壳聚糖(LSC),以评估其在口服肽递送系统中的应用。通过三聚磷酸钠(TPP)交联从该衍生物形成了纳米/微粒。人胰岛素用作模型蛋白药物,并在胃肠道pH下研究了释放动力学。琥珀酰基羧基的存在对pH 1.2的胰岛素的释放动力学具有抑制作用,在两个小时内将其最小化至约8.5 +/- 0.45%。结果表明,在肠道pH值下,疏水部分的存在控制了胰岛素从颗粒中的释放。所述颗粒带负电,尺寸为315nm至1.090μm。使用大鼠肠的空肠离体建立了核粘连能力。共聚焦显微镜研究证明了大鼠肠上皮细胞在Caco 2细胞中具有紧密的连接通透性,并从负载的纳米颗粒体内吸收FITC胰岛素。结果表明,与天然壳聚糖颗粒相比,具有亲水性(琥珀酰基)和疏水性(月桂基)部分的改性壳聚糖具有改善的释放特性,粘膜粘附性以及胰岛素的渗透性。 LSC2颗粒能够降低糖尿病大鼠的血糖水平,持续约6小时。这表明该新型衍生物可能是口服肽递送的有前途的候选者。

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