School of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.
Guangdong Marubi Biotechnology Co., Ltd., Guangzhou 510700, China.
Molecules. 2023 Jan 30;28(3):1321. doi: 10.3390/molecules28031321.
Amphiphilic polysaccharides can be used as wall materials and applied to encapsulate hydrophobic active chemicals; moreover, there is significant demand for novel medical high-molecular-weight materials with various functions. In order to prepare amphiphilic schizophyllan (SPG), octenyl succinic anhydride (OSA) was chosen to synthesize OSA-modified schizophyllan (OSSPG) using an esterified reaction. The modification of OSSPG was demonstrated through FT-IR and thermal analysis. Moreover, it was found that OSSPG has a better capacity for loading curcumin, and the loading amount was 20 μg/mg, which was 2.6 times higher than that of SPG. In addition, a hydrogel made up of PVA, borax, and C-OSSPG (OSSPG loaded with curcumin) was prepared by means of the one-pot method, based on the biological effects of curcumin and the immune-activating properties of SPG. The mechanical properties and biological activity of the hydrogel were investigated. The experimental results show that the dynamic cross-linking of PVA and borax provided the C-OSSPG/BP hydrogel dressing with exceptional self-healing properties, and it was discovered that the C-OSSPG content increased the hydrogel's swelling and moisturizing properties. In fibroblast cell tests, the cells treated with hydrogel had survival rates of 80% or above. Furthermore, a hydrogel containing C-OSSPG could effectively promote cell migration. Due to the excellent anti-inflammatory properties of curcumin, the hydrogel also significantly reduces the generation of inflammatory factors, such as TNF-α and IL-6, and thus has a potential application as a wound dressing medicinal material.
两亲性多糖可用作壁材,应用于包封疏水性活性化学品;此外,对具有各种功能的新型医用高分子材料有很大的需求。为了制备两亲性裂褶多糖(SPG),选择辛烯基琥珀酸酐(OSA)通过酯化反应合成辛烯基琥珀酸酐修饰的裂褶多糖(OSSPG)。通过 FT-IR 和热分析证明了 OSSPG 的修饰。此外,发现 OSSPG 对姜黄素的负载能力更好,负载量为 20μg/mg,是 SPG 的 2.6 倍。此外,基于姜黄素的生物效应和 SPG 的免疫激活特性,通过一锅法制备了由 PVA、硼砂和 C-OSSPG(负载姜黄素的 OSSPG)组成的水凝胶。研究了水凝胶的力学性能和生物活性。实验结果表明,PVA 和硼砂的动态交联为 C-OSSPG/BP 水凝胶敷料提供了优异的自修复性能,并且发现 C-OSSPG 含量增加了水凝胶的溶胀和保湿性能。在成纤维细胞试验中,用水凝胶处理的细胞的存活率在 80%以上。此外,含有 C-OSSPG 的水凝胶可以有效促进细胞迁移。由于姜黄素具有优异的抗炎特性,水凝胶还显著降低了 TNF-α和 IL-6 等炎症因子的产生,因此具有作为伤口敷料药物的潜在应用。