Pharmacy, Centre for Optimisation of Medicines, School of Allied Health , The University of Western Australia , 35 Stirling Highway , Crawley , WA 6009 , Australia.
Mol Pharm. 2018 Aug 6;15(8):3369-3382. doi: 10.1021/acs.molpharmaceut.8b00391. Epub 2018 Jul 24.
Simple alginate, alginate-stearic acid, and alginate-C18 conjugate nanoparticles and tripolyphosphate-cross-linked chitosan-oleic acid conjugate-coated calcium alginate beads as the vehicle of nanoparticles were designed. Their size, ζ potential, morphology, drug load, drug release, matrix molecular characteristics, mucus penetration, HT-29 cell line cytotoxicity and intracellular trafficking, in vivo blood glucose lowering, and insulin delivery profiles were characterized. Alginate-C18 conjugate nanoparticles were nontoxic. Among all nanoparticle variants, they had reduced size and ζ potential thus enhancing particulate mucus penetration and intracellular trafficking. Their insulin reabsorption tendency was minimized as alginate active COOH/COO- sites were preoccupied with C18. Their loading into coated beads was translated to reduced drug release in simulated gastric phase with nanoparticles being released in the intestinal phase. The combination dosage form increased the blood glucose lowering extent of insulin and blood insulin level compared with nanoparticles or beads alone. Nanoparticles in beads represented a viable approach for oral insulin delivery.
设计了简单的海藻酸钠、海藻酸钠-硬脂酸和海藻酸钠-C18 缀合物纳米粒子以及三聚磷酸交联壳聚糖-油酸缀合物涂层的海藻酸钙珠作为纳米粒子的载体。对它们的粒径、ζ电位、形态、载药量、药物释放、基质分子特征、黏液穿透性、HT-29 细胞系细胞毒性和细胞内转运、体内降血糖作用和胰岛素传递特性进行了表征。海藻酸钠-C18 缀合物纳米粒子是无毒的。在所有纳米粒子变体中,它们的粒径和 ζ 电位减小,从而增强了颗粒状黏液穿透性和细胞内转运。由于海藻酸钠的活性 COOH/COO- 位点被 C18 占据,它们对胰岛素的再吸收趋势最小化。将其包埋在珠粒中可减少在模拟胃相中的药物释放,而在肠相中释放纳米粒子。与单独使用纳米粒子或珠粒相比,组合剂型增加了胰岛素的降血糖作用和血液胰岛素水平。珠粒中的纳米粒子为口服胰岛素传递提供了一种可行的方法。