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通过同时激活多种途径的多功能水凝胶实现加速且无痕的伤口修复。

Accelerated and scarless wound repair by a multicomponent hydrogel through simultaneous activation of multiple pathways.

机构信息

CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhavan, 31 Mahatma Gandhi Marg, P.O. Box No. 80, Lucknow, Uttar Pradesh, 226 001, India.

Department of Chemistry, School of Science, Adamas University, Jagganthpur, Kolkata, West Bengal, 700126, India.

出版信息

Drug Deliv Transl Res. 2019 Dec;9(6):1143-1158. doi: 10.1007/s13346-019-00660-z.

Abstract

Scarless healing of injury remains a clinical challenge because of its complicated and overlapping phases of inflammation, clearing, and regeneration. Curcumin has been already established as a potential wound healing agent for normal and diabetic-impaired wounds. Herein, the question has been addressed whether a well-known antioxidant cerium oxide nanoparticle (CNP) can potentiate the activity of curcumin to promote a cellular program for scarless healing. In this study, we have developed a biocompatible poly (acrylamide) hydrogel (PAGE)-based dressing material comprising of CNP and curcumin (ACC) and tested its wound healing activity in an animal model of acute wound. Characterization of the CNP- and curcumin-entrapped hydrogel dressing (ACC) demonstrated high loading efficiency and sustained release of curcumin. In a full-thickness acute wound healing model of rat, a single application of ACC dressing demonstrated higher wound healing efficacy (78%) and negligible scarring compared to dressings containing only curcumin or CNP in 7 days. Enhanced cell proliferation, higher collagen content, advanced wound maturity, re-epithelialization, and granulation tissue formation were observed using the combination of curcumin and CNP (ACC). Study of cellular mechanisms identified MCP-1 and TGF-β as the key drivers of differential and accelerated healing observed in the ACC group. These, coupled with the upregulation of growth-related signaling pathways (HER2/ErbB2, TGF-β-Smad2/3, MAPK/ERK, AKT, and VEGF), promoted almost scarless healing in animals treated with ACC. The optimized combination of curcumin and CNP used in our study shows distinct advantage and can be a better agent for complete wound healing.

摘要

无痕愈合一直是临床面临的挑战,因为它涉及炎症、清除和再生等复杂且重叠的阶段。姜黄素已被确立为正常和糖尿病损伤创面的潜在愈合剂。在这里,我们提出了一个问题,即一种众所周知的抗氧化铈氧化物纳米粒子(CNP)是否可以增强姜黄素的活性,以促进无瘢痕愈合的细胞程序。在这项研究中,我们开发了一种基于聚(丙烯酰胺)水凝胶(PAGE)的生物相容性敷料材料,其中包含 CNP 和姜黄素(ACC),并在急性创面动物模型中测试了其愈合活性。对 CNP 和姜黄素包封水凝胶敷料(ACC)的表征表明,姜黄素的载药效率高且释放持续。在大鼠全层急性创面愈合模型中,与仅含有姜黄素或 CNP 的敷料相比,ACC 敷料在第 7 天单次应用时表现出更高的愈合效果(78%)和可忽略不计的瘢痕形成。与仅含有姜黄素或 CNP 的敷料相比,在第 7 天,使用姜黄素和 CNP 的组合(ACC)观察到增强的细胞增殖、更高的胶原蛋白含量、更先进的伤口成熟度、再上皮化和肉芽组织形成。细胞机制研究确定 MCP-1 和 TGF-β 是在 ACC 组中观察到的差异和加速愈合的关键驱动因素。这些因素,加上与生长相关的信号通路(HER2/ErbB2、TGF-β-Smad2/3、MAPK/ERK、AKT 和 VEGF)的上调,促进了接受 ACC 治疗的动物几乎无瘢痕愈合。我们研究中使用的优化姜黄素和 CNP 组合具有明显优势,可能是更好的完全伤口愈合剂。

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