纳米银颗粒在治疗糖尿病溃疡中的疗效:对研究性临床试验的系统回顾和元分析》。

Reza Shah Hosseini, Kiana Hasanpour, Mehrnoosh Khoshnevis, Masoud Saadat Fakhr, Esra Derin, Alireza Ghaffarian, Cagdas Kement
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引用次数: 0

摘要

目的:皮肤是人体最大的器官,在感觉功能、体温调节以及抵御病原体和伤害方面发挥着重要作用。破坏皮肤完整性的皮肤伤口可由多种因素造成,包括糖尿病等疾病。糖尿病足溃疡是糖尿病的一种严重并发症,常常导致截肢。本系统综述探讨了银纳米粒子在治疗糖尿病溃疡方面的治疗潜力:本综述纳入了 2016 年至 2023 年间发表的 7 项研究。此外,荟萃分析还纳入了 4 项研究。这些研究调查了银纳米粒子在糖尿病溃疡治疗中的应用,主要是以敷料的形式。研究采用了系统检索策略,并遵循了系统综述和荟萃分析首选报告项目(PRISMA)指南:结果:研究结果表明,纳米银颗粒在提高糖尿病溃疡愈合率方面没有显著差异。而含有纳米银颗粒的敷料 SilvrSTAT Gel 则优于传统敷料,可使相当比例的溃疡在数周内愈合。比较研究还表明,纳米银颗粒至少与纳米壳聚糖敷料等替代疗法一样有效,并显示出与生长因子联合治疗的潜力:讨论:这篇综述强调了银纳米粒子这种基于纳米技术的方法在加速糖尿病溃疡愈合的同时提供抗菌益处的前景。尽管存在一些局限性,包括治疗方案的差异和缺乏长期结果数据,但这些研究结果表明,目前还没有临床证据表明纳米银可用于 DFU 的愈合过程:结论:纳米银目前还没有足够的临床证据证明它能治愈 DFU;不过,在一些研究中,纳米银对伤口愈合速度有明显的影响。
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Therapeutic Effect of Silver Nanoparticles in the Management of Diabetic Ulcers: A Systematic Review and Meta-Analysis on RCTs.

Aims: The skin, as the body's largest organ, plays vital roles in sensory functions, temperature regulation, and protection against pathogens and injuries. Skin wounds, which disrupt its integrity, can result from various factors, including diseases such as diabetes. Diabetic foot ulcers are a severe complication of diabetes, often leading to amputations. This systematic review explores the therapeutic potential of silver nanoparticles in the management of diabetic ulcers.

Methods: Seven studies published between 2016 and 2023 were included in this review. Also, 4 studies were included in the meta-analysis. These studies investigated the application of silver nanoparticles, primarily in dressing forms, for diabetic ulcer treatment. A systematic search strategy was employed, and the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines were followed.

Results: The results show that silver nanoparticles do not have a significant difference in improving DFU healing rates. SilvrSTAT Gel, a dressing containing silver nanoparticles, outperformed traditional dressings, leading to a substantial percentage of ulcers healing within weeks. Comparative studies also indicated that silver nanoparticles were at least as effective as alternative treatments, such as nano-chitosan dressings, and showed potential for combination therapy with growth factors.

Discussion: This review underscores the promise of silver nanoparticles, a nanotechnology-based approach, in accelerating the healing of diabetic ulcers while providing antimicrobial benefits. Despite some limitations, including variations in treatment regimens and a lack of long-term outcome data, these findings show there is no clinical evidence for using Nanosilver for the healing process of DFU.

Conclusion: Silver nanoparticles currently do not have sufficient clinical evidence for healing the DFU; however, in some studies, they had noticeable effects on the rate of wound healing.

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