Dwivedi Charu, Pandey Himanshu, Pandey Avinash C, Patil Sandip, Ramteke Pramod W, Laux Peter, Luch Andreas, Singh Ajay Vikram
Department of Biological Sciences, Sam Higginbottom University of Agriculture, Technology and Sciences, Allahabad 211007, India.
Nanotechnology Application Centre, Faculty of Science, University of Allahabad, Allahabad 211002, India.
Pharmaceutics. 2019 Apr 14;11(4):180. doi: 10.3390/pharmaceutics11040180.
Tissue engineering technologies involving growth factors have produced one of the most advanced generations of diabetic wound healing solutions. Using this approach, a nanocomposite carrier was designed using Poly(d,l-lactide--glycolide) (PLGA)/Gelatin polymer solutions for the simultaneous release of recombinant human epidermal growth factor (rhEGF) and gentamicin sulfate at the wound site to hasten the process of diabetic wound healing and inactivation of bacterial growth. The physicochemical characterization of the fabricated scaffolds was carried out using scanning electron microscopy (SEM) and X-ay diffraction (XRD). The scaffolds were analyzed for thermal stability using thermogravimetric analysis and differential scanning calorimetry. The porosity, biodegradability, and swelling behavior of the scaffolds was also evaluated. Encapsulation efficiency, drug loading capacity, and in vitro drug release were also investigated. Further, the bacterial inhibition percentage and detailed in vivo biocompatibility for wound healing efficiency was performed on diabetic C57BL6 mice with dorsal wounds. The scaffolds exhibited excellent wound healing and continuous proliferation of cells for 12 days. These results support the applicability of such systems in rapid healing of diabetic wounds and ulcers.
涉及生长因子的组织工程技术已产生了最先进的一代糖尿病伤口愈合解决方案。采用这种方法,使用聚(d,l-丙交酯-乙交酯)(PLGA)/明胶聚合物溶液设计了一种纳米复合载体,用于在伤口部位同时释放重组人表皮生长因子(rhEGF)和硫酸庆大霉素,以加速糖尿病伤口愈合过程并抑制细菌生长。使用扫描电子显微镜(SEM)和X射线衍射(XRD)对制备的支架进行物理化学表征。使用热重分析和差示扫描量热法分析支架的热稳定性。还评估了支架的孔隙率、生物降解性和溶胀行为。还研究了包封效率、载药量和体外药物释放。此外,对背部有伤口的糖尿病C57BL6小鼠进行了细菌抑制率和伤口愈合效率的详细体内生物相容性研究。这些支架在12天内表现出优异的伤口愈合和细胞持续增殖能力。这些结果支持了此类系统在糖尿病伤口和溃疡快速愈合中的适用性。