Majzoob Sayeh, Atyabi Fatemeh, Dorkoosh Farid, Kafedjiiski Krum, Loretz Brigitta, Bernkop-Schnürch Andreas
Department of Pharmaceutics, Tehran University of Medical Sciences, Tehran 14174, Iran.
J Pharm Pharmacol. 2006 Dec;58(12):1601-10. doi: 10.1211/jpp.58.12.0006.
This study was aimed at improving certain properties of pectin by introduction of thiol moieties on the polymer. Thiolated pectin was synthesized by covalent attachment of cysteine. Pectin-cysteine conjugate was evaluated for its ability to be degraded by pectinolytic enzyme. The toxicity profile of the thiolated polymer in Caco-2-cells, its permeation enhancing effect and its mucoadhesive and swelling properties were studied. Moreover insulin-loaded hydrogel beads of the new polymer were examined for their stability in simulated gastrointestinal conditions and their drug release profile. The new polymer displayed 892.27 +/- 68.68 micromol thiol groups immobilized per g polymer, and proved to have retained its biodegradability, upon addition of Pectinex Ultra SPL in-vitro, determined by viscosity measurements and titration method. Pectin-cysteine showed no severe toxicity in Caco-2 cells, as tested by 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyl tetrazolium bromide (MTT) and lactate dehydrogenase (LDH) assays. Moreover, the synthesized polymer exhibited a relative permeation enhancement ratio of 1.61 for sodium fluorescein, compared to unmodified pectin. Pectin-cysteine conjugate exhibited approximately 5-fold increased in in-vitro adhesion duration and significantly improved cohesive properties. Zinc pectin-cysteine beads showed improved stability in simulated gastrointestinal media; however, insulin release from these beads followed the same profile as unmodified zinc pectinate beads. Due to favourable safety and biodegradability profile, and improved cohesive and permeation-enhancing properties, pectin-cysteine might be a promising excipient in various transmucosal drug delivery systems.
本研究旨在通过在聚合物上引入硫醇部分来改善果胶的某些性能。通过半胱氨酸的共价连接合成了硫醇化果胶。评估了果胶 - 半胱氨酸共轭物被果胶分解酶降解的能力。研究了硫醇化聚合物在Caco - 2细胞中的毒性概况、其渗透增强作用以及其粘膜粘附和溶胀特性。此外,还研究了新型聚合物负载胰岛素的水凝胶珠在模拟胃肠道条件下的稳定性及其药物释放曲线。新型聚合物每克聚合物固定有892.27±68.68微摩尔硫醇基团,通过粘度测量和滴定法测定,在体外添加Pectinex Ultra SPL后,证明其保留了生物降解性。通过3 - [4,5 - 二甲基噻唑 - 2 - 基] - 2,5 - 二苯基四氮唑溴盐(MTT)和乳酸脱氢酶(LDH)测定法测试,果胶 - 半胱氨酸在Caco - 2细胞中未显示出严重毒性。此外,与未修饰的果胶相比,合成的聚合物对荧光素钠的相对渗透增强率为1.61。果胶 - 半胱氨酸共轭物的体外粘附持续时间增加了约5倍,内聚性显著改善。锌果胶 - 半胱氨酸珠在模拟胃肠道介质中显示出改善的稳定性;然而,这些珠中胰岛素的释放曲线与未修饰的锌果胶酸盐珠相同。由于具有良好的安全性和生物降解性,以及改善的内聚性和渗透增强性能,果胶 - 半胱氨酸可能是各种经粘膜给药系统中有前景的辅料。