Anand Sneha, Rajinikanth Paruvathanahalli Siddalingam, Arya Dilip Kumar, Pandey Prashant, Gupta Ravi K, Sankhwar Ruchi, Chidambaram Kumarappan
Department of Pharmaceutical Sciences, Babasaheb Bhimrao Ambedkar University, Lucknow 226025, India.
Department of Environmental Microbiology, Babasaheb Bhimrao Ambedkar University, Lucknow 226025, India.
Pharmaceutics. 2022 Jan 24;14(2):273. doi: 10.3390/pharmaceutics14020273.
Diabetes mellitus is a chronic disease with a high mortality rate and many complications. A non-healing diabetic foot ulcer (DFU) is one the most serious complications, leading to lower-extremity amputation in 15% of diabetic patients. Nanofibers are emerging as versatile wound dressing due to their unique wound healing properties, such as a high surface area to volume ratio, porosity, and ability to maintain a moist wound environment capable of delivering sustained drug release and oxygen supply to a wound. The present study was aimed to prepare and evaluate a polyvinyl alcohol (PVA)-sodium alginate (SA)-silk fibroin (SF)-based multifunctional nanofibrous scaffold loaded with asiaticoside (AT) in diabetic rats. The SEM findings showed that fibers' diameters ranged from 100-200 nm, and tensile strengths ranged from 12.41-16.80 MPa. The crosslinked nanofibers were sustained AT over an extended period. The MTT and scratch assay on HaCat cells confirmed low cytotoxicity and significant cell migration, respectively. Antimicrobial tests revealed an excellent anti-microbial efficacy against and bacteria. In-vivo study demonstrated better wound healing efficacy in diabetic rats. In addition, the histopathological studies showed its ability to restore the normal structure of the skin. The present study concluded that developed multifunctional nanofibers have a great potential for diabetic wound healing applications.
糖尿病是一种死亡率高且伴有多种并发症的慢性疾病。难愈合的糖尿病足溃疡(DFU)是最严重的并发症之一,导致15%的糖尿病患者下肢截肢。纳米纤维因其独特的伤口愈合特性,如高比表面积、孔隙率以及能够维持湿润的伤口环境,实现持续药物释放和为伤口提供氧气供应等,正成为一种多功能伤口敷料。本研究旨在制备并评估一种负载积雪草苷(AT)的基于聚乙烯醇(PVA)-海藻酸钠(SA)-丝素蛋白(SF)的多功能纳米纤维支架,用于糖尿病大鼠。扫描电子显微镜(SEM)结果显示,纤维直径范围为100 - 200纳米,拉伸强度范围为12.41 - 16.80兆帕。交联的纳米纤维能在较长时间内持续释放AT。对HaCat细胞进行的MTT和划痕试验分别证实了其低细胞毒性和显著的细胞迁移能力。抗菌测试显示对[具体细菌名称]和[具体细菌名称]具有优异的抗菌效果。体内研究表明在糖尿病大鼠中具有更好的伤口愈合效果。此外,组织病理学研究显示其具有恢复皮肤正常结构的能力。本研究得出结论,所开发的多功能纳米纤维在糖尿病伤口愈合应用方面具有巨大潜力。