Bioengineering Laboratory, Department of Textile Technology, Indian Institute of Technology Delhi, New Delhi 110016, India.
Department of Pathology, Sikkim Manipal Institute of Medical Sciences, Sikkim Manipal University, Gangtok 737102, India.
Int J Biol Macromol. 2018 Dec;120(Pt B):1581-1590. doi: 10.1016/j.ijbiomac.2018.09.124. Epub 2018 Sep 21.
Scar preventive dextran based bionanocomposite dressings containing aloe vera (AV) and manuka honey (MH) were developed as wound care devices. This work was a challenge to fabricate herbal dressing that promotes healing, which at the same time is biocompatible, non-toxic, biodegradable, and cost effective in terms of the simplicity of application in complex chronic wound situations. With this aim, we synthesized in-situ crosslinked dextran/nanosoy/glycerol/chitosan (DNG/Ch) nanocomposite membranes via solvent casting technique followed by subsequent addition of AV and MH to obtain DNG/Ch/AV and DNG/Ch/MH herbal dressings. The drug release kinetics of the bionanocomposite dressings indicated an initial burst release of AV and MH, followed by controlled release when examined in-vitro using non-fickian and quasi-fickian model. Antibacterial studies confirmed >99% antibacterial activity against both Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli) and bacterial adherence test demonstrated its efficacy for arresting microbial invasion. Wound healing analysis conducted in-vivo showed enhanced epithelialization in the terms scar prevention and aesthetics with absolute wound contraction for the mice treated with AV loaded dressings after 14th post wounding day. Histological features displayed ordered deposition of collagen with a thin epidermis layer. Hence, the present herbal dressing could function without many cytotoxicity and biocompatibility issues.
开发了含有芦荟(AV)和麦卢卡蜂蜜(MH)的基于葡聚糖的防疤生物纳米复合材料敷料作为伤口护理装置。这项工作的挑战是制造促进愈合的草药敷料,同时具有生物相容性、无毒、可生物降解和成本效益,因为在复杂的慢性伤口情况下应用简单。为此,我们通过溶剂浇铸技术合成了原位交联葡聚糖/纳米乳液/甘油/壳聚糖(DNG/Ch)纳米复合材料膜,然后添加 AV 和 MH 以获得 DNG/Ch/AV 和 DNG/Ch/MH 草药敷料。生物纳米复合材料敷料的药物释放动力学表明,AV 和 MH 最初会快速释放,然后在体外使用非菲克和准菲克模型进行测试时会进行控制释放。抗菌研究证实对金黄色葡萄球菌(S. aureus)和大肠杆菌(E. coli)具有>99%的抗菌活性,细菌黏附试验证明其能够有效阻止微生物入侵。体内伤口愈合分析表明,在用 AV 负载的敷料处理的小鼠中,第 14 天之后,在预防疤痕和美学方面的上皮化得到了增强,绝对伤口收缩。组织学特征显示胶原蛋白有序沉积,表皮层较薄。因此,这种草药敷料可以在没有许多细胞毒性和生物相容性问题的情况下发挥作用。