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瑞喹莫德诱导的慢性创面动物模型中纳米金的绿色合成。

Green synthesis of gold nanoparticles in an animal model of chronic wound induced with Resiquimod.

机构信息

Laboratory of Experimental Physiopathology, Program of Postgraduate in Science of Health, Universidade do Extremo Sul Catarinense, Criciúma, Santa Catarina, Brazil.

Biomaterials and Nanostructured Materials Research Group, Postgraduate Program in Materials Science and Engineering, Universidade do Extremo Sul Catarinense, UNESC, Criciúma, Santa Catarina, Brazil.

出版信息

J Drug Target. 2024 Nov;32(9):1086-1100. doi: 10.1080/1061186X.2024.2373304. Epub 2024 Jul 12.

Abstract

Cost-effective strategies for the treatment of chronic wounds must be developed. The green synthesis of gold nanoparticles (GNPs) it is possible to guarantee a lower toxicity in biological tissues and greater safety of applicability, in addition to adding the effects of nanoparticles (NPs) to those of extracts. The objective of this study was to evaluate the effects of treatment with biosynthesized GNPs in a chronic wound model. Wistar rats were distributed into 7 groups: Acute Wound (AW); Chronic wound (CW); CW + GNPs-Açaí; CW + GNPs-DB; CW + AV-GNPs; CW + SafGel; CW + 660 nm laser. The chronic injury model was induced with topically applied Resiquimod for 6 days. Treatments were then initated on the fourteenth day after the last application of Resiquimod and carried out daily for ten days. The proposed therapies with GNPs were able to significantly reduce the inflammatory score and increase the rate of wound contraction. In histology, there was a reduction in the inflammatory infiltrate and increased gene expression of fibronectin and type III collagen, mainly in the CW + AV-GNPs group. The therapies were able to reduce pro-inflammatory cytokines, increase anti-inflammatory cytokines, and reduce oxidative stress. The results demonstrated that the effects of GNPs appear to complement those of the extracts, thereby enhancing the tissue repair process.

摘要

必须制定出具有成本效益的慢性伤口治疗策略。金纳米粒子(GNPs)的绿色合成可以保证在生物组织中具有更低的毒性和更高的适用性安全性,此外还可以将纳米粒子(NPs)的效果添加到提取物的效果中。本研究的目的是评估用生物合成的 GNPs 治疗慢性伤口模型的效果。Wistar 大鼠被分为 7 组:急性伤口(AW);慢性伤口(CW);CW+巴西莓 GNPs;CW+DB GNPs;CW+AV-GNPs;CW+SafGel;CW+660nm 激光。通过局部应用 Resiquimod 诱导慢性损伤模型,持续 6 天。然后在最后一次应用 Resiquimod 后的第 14 天开始进行治疗,并每天进行 10 天。用 GNPs 提出的治疗方法能够显著降低炎症评分并提高伤口收缩率。在组织学上,炎症浸润减少,纤维连接蛋白和 III 型胶原蛋白的基因表达增加,主要是在 CW+AV-GNPs 组。这些疗法能够减少促炎细胞因子,增加抗炎细胞因子,并减少氧化应激。结果表明,GNPs 的作用似乎补充了提取物的作用,从而增强了组织修复过程。

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