...
首页> 外文期刊>Chemistry central journal >Colon targeted drug delivery of branch-chained disulphide cross-linked polymers: design, synthesis, and characterisation studies
【24h】

Colon targeted drug delivery of branch-chained disulphide cross-linked polymers: design, synthesis, and characterisation studies

机译:分支链二硫键交联聚合物的结肠靶向药物递送:设计,合成和表征研究

获取原文
           

摘要

Drug delivery directly to the colon is a very useful approach for treating localised colonic diseases such as inflammatory bowel disease, ulcerative colitis, and Crohn鈥檚 disease. The use of disulphide cross-linked polymers in colon targeted drug delivery systems has received much attention because these polymers are redox sensitive, and the disulphide bonds are only cleaved by the low redox potential environment in the colon. The goal of this study was to synthesise tricarballylic acid-based trithiol monomers for polymerisation into branch-chained disulphide polymers. The monomer was synthesised via the amide coupling reaction between tricarballylic acid and (triphenylmethyl) thioethylamine using two synthesis steps. The disulphide cross-linked polymers which were synthesised using the air oxidation method were completely reduced after 1 h of reduction with different thiol concentrations detected for the different disulphide polymers. In simulated gastric and intestinal conditions, all polymers had low thiol concentrations compared to the thiol concentrations in the simulated colon condition with Bacteroides fragilis present. Degradation was more pronounced in polymers with loose polymeric networks, as biodegradability relies on the swelling ability of polymers in an aqueous environment. Polymer P15 which has the loosest polymeric networks showed highest degradation.
机译:将药物直接递送到结肠是治疗局部结肠疾病如炎性肠病,溃疡性结肠炎和克罗恩氏病的非常有用的方法。在结肠靶向药物递送系统中使用二硫键交联聚合物引起了广泛关注,因为这些聚合物对氧化还原敏感,并且二硫键仅在结肠中低氧化还原电位的环境下才能裂解。这项研究的目的是合成基于三羧酸的三硫醇单体,使其聚合成支链二硫键聚合物。使用两个合成步骤,通过三碳烯丙酸和(三苯基甲基)硫代乙胺之间的酰胺偶联反应合成单体。使用空气氧化法合成的二硫化物交联聚合物在还原1小时后被完全还原,对于不同的二硫化物聚合物检测到不同的硫醇浓度。在模拟的胃和肠条件下,与存在脆弱类杆菌的模拟结肠条件下相比,所有聚合物的硫醇浓度均较低。在具有松散聚合物网络的聚合物中降解更为明显,因为生物降解能力取决于聚合物在水性环境中的溶胀能力。具有最松散的聚合物网络的聚合物P15表现出最高的降解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号