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载纳米氧化铈的脱细胞细胞外基质姜黄素释放纳米乳凝胶体系用于全层创面愈合。

Nanoceria laden decellularized extracellular matrix-based curcumin releasing nanoemulgel system for full-thickness wound healing.

机构信息

Department of Polymer and Process Engineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, India.

Biochemistry and Molecular Biology Lab, Division of Veterinary Biochemistry, Faculty of Veterinary Sciences and Animal Husbandry, Sher-e-Kashmir University of Agricultural Sciences and Technology, Srinagar, Jammu and Kashmir, India.

出版信息

Biomater Adv. 2022 Jun;137:212806. doi: 10.1016/j.bioadv.2022.212806. Epub 2022 Apr 18.

Abstract

Decellularized extracellular matrix (ECM) has been widely used for wound healing. But, ECM failed to integrate tissue and restore the tissue function properly, when elevated levels of free radicals and biofilm formation occur at the wound site. Here, nanoemulgel systems were fabricated, considering the combinatorial approach of nanotechnology (nanoceria and curcumin nanoemulsion) and ECM gel of goat small intestine submucosa. The curcumin was encapsulated in the nanoemulgel system to enhance bioavailability in terms of antibacterial, antioxidant, sustained release and permeation at the wound site. Nanoceria was also incorporated to enhance the antibacterial, antioxidant and wound healing properties of the fabricated nanoemulgel formulation. All the formulations were porous, hydrophilic, biodegradable, antioxidant, antibacterial, hemocompatible, biocompatible, and showed enhanced wound healing rate. The formulation (DG-SIS/Ce/NC) showed the highest free radicals scavenging capacity and antibacterial property with prolonged curcumin release (62.9% in 96 h), skin permeability (79.7% in 96 h); showed better cell growth under normal and oxidative-stressed conditions: it also showed full-thickness wound contraction (97.33% in 14 days) with highest collagen synthesis at the wound site (1.61 μg/mg in 14 days). The outcomes of this study suggested that the formulation (DG-SIS/Ce/NC) can be a potential nanoemulgel system for full-thickness wound healing application.

摘要

脱细胞细胞外基质 (ECM) 已广泛用于伤口愈合。但是,当伤口部位自由基水平升高和生物膜形成时,ECM 未能整合组织并正确恢复组织功能。在这里,考虑到纳米技术(纳米氧化铈和姜黄素纳米乳液)和山羊小肠黏膜下 ECM 凝胶的组合方法,制备了纳米乳液凝胶系统。姜黄素被包封在纳米乳液凝胶系统中,以提高其在伤口部位的抗菌、抗氧化、持续释放和渗透的生物利用度。还掺入了纳米氧化铈以增强所制备的纳米乳液凝胶制剂的抗菌、抗氧化和伤口愈合性能。所有制剂均具有多孔性、亲水性、可生物降解性、抗氧化性、抗菌性、血液相容性、生物相容性,并显示出更高的伤口愈合率。制剂(DG-SIS/Ce/NC)表现出最高的自由基清除能力和抗菌性能,姜黄素释放时间延长(96 小时内释放 62.9%),皮肤渗透性提高(96 小时内释放 79.7%);在正常和氧化应激条件下均表现出更好的细胞生长:它还表现出全厚度伤口收缩(14 天内 97.33%),并在伤口部位合成最高的胶原蛋白(14 天内 1.61μg/mg)。这项研究的结果表明,该制剂(DG-SIS/Ce/NC)可以成为一种有潜力的全厚度伤口愈合应用的纳米乳液凝胶系统。

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