a Radiation Technology Center , Nuclear Research Institute , Dalat City , Vietnam.
b Department of Biology , Dalat University , Dalat City , Vietnam.
J Microencapsul. 2019 Mar;36(2):156-168. doi: 10.1080/02652048.2019.1612476. Epub 2019 May 23.
This study aimed to compare the effectiveness between curcumin-oligochitosan nanoplexes (CUR-OCH nanoplexes) and oligochitosan-coated curcumin-encapsulated liposomes (OCH-Lip-CUR) with respect to wound healing and scar treatment. Firstly, CUR-OCH nanoplexes was prepared by drug-polysaccharide complexation method and OCH-Lip-CUR was prepared by a combining method of lipid-film hydration and sonication. Their cytotoxicity and wound healing and scar treatment effectiveness were evaluated using 3T3 cells and mice respectively. The resutls indicated that both of them were in nanosize with a moderate PDI (less than 0.3), and exhibited negligible cytotoxicity at low CUR concentration (0.01 mg/mL). Moreover, their application onto wounds resulted in faster healing and higher scar treatment effectiveness than control samples. Interestingly, OCH-Lip-CUR exhibited higher effectiveness than CUR-OCH nanoplexes. However, based on their own advantages, both of them were good candidates for a commercial formulation for wound healing and scar treatment.
本研究旨在比较姜黄素-壳寡糖纳米复合物(CUR-OCH 纳米复合物)和壳聚糖包被姜黄素包封脂质体(OCH-Lip-CUR)在伤口愈合和瘢痕治疗方面的疗效。首先,通过药物-多糖复合方法制备 CUR-OCH 纳米复合物,通过脂质膜水化和超声联合方法制备 OCH-Lip-CUR。分别用 3T3 细胞和小鼠评估它们的细胞毒性和伤口愈合及瘢痕治疗效果。结果表明,它们均为纳米级,PDI(小于 0.3)适中,在低 CUR 浓度(0.01mg/mL)时表现出可忽略的细胞毒性。此外,它们在伤口上的应用比对照样品导致更快的愈合和更高的瘢痕治疗效果。有趣的是,OCH-Lip-CUR 表现出比 CUR-OCH 纳米复合物更高的疗效。然而,基于它们各自的优势,它们都是用于伤口愈合和瘢痕治疗的商业制剂的良好候选物。