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N-三甲基壳聚糖修饰的脂质体作为鲑鱼降钙素口服给药的载体。

N-trimethyl chitosan-modified liposomes as carriers for oral delivery of salmon calcitonin.

机构信息

School of Pharmacy, China Pharmaceutical University, Nanjing-210009, PR China.

出版信息

Drug Deliv. 2011 Nov;18(8):562-9. doi: 10.3109/10717544.2011.596585. Epub 2011 Aug 8.

DOI:10.3109/10717544.2011.596585
PMID:21823926
Abstract

Therapeutic peptide and protein drugs have high specificity and activity in their functions but present challenges in their administration route, requiring development of new delivery systems to improve their bioavailability. The aim of this work was to investigate the role of N-trimethyl chitosan- (TMC-) coated liposomes in the oral administration of calcitonin. TMC with a degree of quaternization around 78% was synthesized and its mucoadhesive properties were examined in vitro using the mucin-particle method, which confirmed that TMC showed mucoadhesion comparable to that of chitosan. TMC-coated liposomes containing calcitonin were prepared and characterized as having a particle size of 262 nm, zeta potential of 35.8 mV and high entrapment efficiency (89.1%). The in vivo evaluation of mucoadhesion was carried out using confocal laser microscopy to observe the residence time and permeation extent after intragastric administration. The results showed that TMC-coated liposomes prolonged the residence time and increased the penetration effect of the liposomal system compared to non-coated liposomes. The study of pharmacological effects confirmed that TMC-coated liposomes increased the area above the blood calcium concentration-time curves (AAC) from 3.13 ± 20.50 to 448.84 ± 103.56 compared to the calcitonin solution. These results support the feasibility of TMC-coated liposomes as a new oral delivery system for peptide and protein drugs.

摘要

治疗性肽和蛋白质药物在功能上具有高度的特异性和活性,但在给药途径方面存在挑战,需要开发新的给药系统来提高其生物利用度。本工作旨在研究 N-三甲基壳聚糖(TMC)包被脂质体在降钙素口服给药中的作用。合成了季铵化度约为 78%的 TMC,并通过粘蛋白-颗粒法体外考察其粘膜黏附性能,结果表明 TMC 具有与壳聚糖相当的粘膜黏附性。制备并表征了载有降钙素的 TMC 包被脂质体,其粒径为 262nm,zeta 电位为 35.8mV,包封率高达 89.1%。通过共聚焦激光显微镜观察胃内给药后的停留时间和渗透程度,对粘膜黏附性进行体内评价。结果表明,与未包被的脂质体相比,TMC 包被脂质体延长了脂质体系统的停留时间并增加了渗透效果。药代动力学研究证实,与降钙素溶液相比,TMC 包被脂质体使血药浓度-时间曲线下面积(AAC)从 3.13±20.50 增加到 448.84±103.56。这些结果支持 TMC 包被脂质体作为一种新型肽和蛋白质药物口服给药系统的可行性。

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