a Department of Pharmaceutics , Indian Institute of Technology, Banaras Hindu University , Varanasi , India.
Drug Dev Ind Pharm. 2018 Nov;44(11):1783-1796. doi: 10.1080/03639045.2018.1496448. Epub 2018 Aug 31.
Diabetes mellitus is most common disorder characterize by hyperglycemia. Chronic hyperglycemia may lead to over production of free radicals thereby results in oxidative stress which impaired healing of wounds. Ferulic acid (FA) has been shown to have antidiabetic and antioxidant properties. The aim of the present study was to develop Ferulic acid nanoparticles and to study its hypoglycemic and wound healing activities. Ferulic acid-poly(lactic-co-glycolic acid) (FA-PLGA) nanoparticles were prepared by nano precipitation method. The prepared FA-PLGA nanoparticles had an average size of 240 nm. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) analysis showed the prepared FA-PLGA nanoparticles were spherical in shape. Drug encapsulation assay showed that 88.49% FA was encapsulated in PLGA. Carbopol 980 was used to formulate FA-PLGA nanoparticles loaded hydrogel. FA-loaded polymeric nanoparticles dispersion (oral administration) and FA-loaded polymeric nanoparticles based hydrogel (topical administration) treated wounds were found to epithelize faster as compared with diabetic wound control group. The hydroxyproline content increased significantly when compared with diabetic wound control. Therefore, the results indicate that FA significantly promotes wound healing in diabetic rats.
糖尿病是一种以高血糖为特征的最常见的疾病。慢性高血糖可能导致自由基的过度产生,从而导致氧化应激,这会损害伤口的愈合。阿魏酸(FA)已被证明具有降血糖和抗氧化作用。本研究的目的是开发阿魏酸纳米粒子,并研究其降血糖和伤口愈合活性。阿魏酸-聚(乳酸-共-乙醇酸)(FA-PLGA)纳米粒子通过纳米沉淀法制备。所制备的 FA-PLGA 纳米粒子的平均粒径为 240nm。扫描电子显微镜(SEM)和原子力显微镜(AFM)分析表明,所制备的 FA-PLGA 纳米粒子呈球形。药物包封测定表明,88.49%的 FA 被包封在 PLGA 中。卡波姆 980 用于配制载有 FA-PLGA 纳米粒子的水凝胶。与糖尿病伤口对照组相比,负载 FA 的聚合物纳米粒子分散体(口服给药)和负载 FA 的聚合物纳米粒子水凝胶(局部给药)处理的伤口更快地上皮化。与糖尿病伤口对照组相比,羟脯氨酸含量显著增加。因此,结果表明 FA 显著促进了糖尿病大鼠的伤口愈合。