Mittal Amit K, Bhardwaj Rohit, Arora Riya, Singh Aarti, Mukherjee Monalisa, Rajput Satyendra K
Amity Institute of Pharmacy (AIP), Amity University-Uttar Pradesh, Sector-125, Noida, Uttar Pradesh 201301, India.
Amity Institute of Indian System of Medicine (AIISM), Amity University-Uttar Pradesh, Sector-125, Noida, Uttar Pradesh 201301, India.
ACS Omega. 2020 Sep 18;5(38):24239-24246. doi: 10.1021/acsomega.0c02040. eCollection 2020 Sep 29.
Wound is the major health problem associated with skin damages and arises because of various types of topical injuries. Furthermore, wounds in patients with diabetes take a relatively long time to heal. Currently, herbal medicines have been extensively used for wound care and management. Here, we engineered polymeric hybrid hydrogel of dimethylaminoethyl acrylate and hyaluronic acid (pDMAEMA-HA), which was impregnated with a herbal extract of . The developed polymeric hybrid hydrogel system can be used for effective therapy of incurable wounds. Therefore, the development of -impregnated pDMAEMA-HA (pDPi-DMAEMA-HA) hybrid hydrogel was accomplished by the synthesis of pDMAEMA-HA hydrogel the optimization of various reaction parameters followed by impregnation of herbal drugs . The developed hydrogel composite was well characterized via various techniques, and swelling kinetics was performed to analyze the water uptake property. The swelling ratio was found to be 1600% in both types of hydrogels. To evaluate the wound healing of these polymeric hydrogels, the Wistar rats full-thickness excision wound model was utilized. The healing strength of hydrogels was determined using measurement of wound contraction and histopathological study. The results of wound healing by these polymeric hydrogels revealed that animals treated with the pDPi-DMAEMA-HA hybrid hydrogel group were found to have a higher level of wound closure as compared to marketed formulation as well as polymeric hybrid hydrogel. The histopathologic examinations implied that pDPi-DMAEMA-HA hybrid hydrogel and polymeric hybrid hydrogel-treated groups exhibited enhanced cutaneous wound repair as well as high level of cellular repair and maintenance compared to the standard group because of hyaluronic acid roles in various stages of wound repair.
伤口是与皮肤损伤相关的主要健康问题,由各种类型的局部损伤引起。此外,糖尿病患者的伤口愈合时间相对较长。目前,草药已被广泛用于伤口护理和管理。在此,我们设计了丙烯酸二甲氨基乙酯和透明质酸的聚合物杂化水凝胶(pDMAEMA-HA),其中浸渍了一种草药提取物。所开发的聚合物杂化水凝胶系统可用于有效治疗难以治愈的伤口。因此,通过合成pDMAEMA-HA水凝胶、优化各种反应参数,然后浸渍草药,完成了浸渍[草药名称未给出]的pDMAEMA-HA(pDPi-DMAEMA-HA)杂化水凝胶的开发。通过各种技术对所开发的水凝胶复合材料进行了充分表征,并进行了溶胀动力学分析以研究其吸水性能。发现两种类型的水凝胶的溶胀率均为1600%。为了评估这些聚合物水凝胶的伤口愈合情况,使用了Wistar大鼠全层切除伤口模型。通过测量伤口收缩和组织病理学研究来确定水凝胶的愈合强度。这些聚合物水凝胶的伤口愈合结果表明,与市售制剂以及聚合物杂化水凝胶相比,用pDPi-DMAEMA-HA杂化水凝胶组治疗的动物伤口闭合水平更高。组织病理学检查表明,由于透明质酸在伤口修复的各个阶段发挥作用,pDPi-DMAEMA-HA杂化水凝胶和聚合物杂化水凝胶治疗组与标准组相比,表现出增强的皮肤伤口修复以及高水平的细胞修复和维持。