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植物抗氧化剂功能化纳米粒子:应对纳米颗粒诱导的氧化应激的绿色方法。

Phytoantioxidant Functionalized Nanoparticles: A Green Approach to Combat Nanoparticle-Induced Oxidative Stress.

机构信息

Patanjali Herbal Research Department, Patanjali Research Institute, Haridwar 249405, India.

Department of Allied Sciences, University of Patanjali, Haridwar 249405, India.

出版信息

Oxid Med Cell Longev. 2021 Oct 26;2021:3155962. doi: 10.1155/2021/3155962. eCollection 2021.

Abstract

Nanotechnology is gaining significant attention, with numerous biomedical applications. Silver in wound dressings, copper oxide and silver in antibacterial preparations, and zinc oxide nanoparticles as a food and cosmetic ingredient are common examples. However, adverse effects of nanoparticles in humans and the environment from extended exposure at varied concentrations have yet to be established. One of the drawbacks of employing nanoparticles is their tendency to cause oxidative stress, a significant public health concern with life-threatening consequences. Cardiovascular, renal, and respiratory problems and diabetes are among the oxidative stress-related disorders. In this context, phytoantioxidant functionalized nanoparticles could be a novel and effective alternative. In addition to performing their intended function, they can protect against oxidative damage. This review was designed by searching through various websites, books, and articles found in PubMed, Science Direct, and Google Scholar. To begin with, oxidative stress, its related diseases, and the mechanistic basis of oxidative damage caused by nanoparticles are discussed. One of the main mechanisms of action of nanoparticles was unearthed to be oxidative stress, which limits their use in humans. Secondly, the role of phytoantioxidant functionalized nanoparticles in oxidative damage prevention is critically discussed. The parameters for the characterization of nanoparticles were also discussed. The majority of silver, gold, iron, zinc oxide, and copper nanoparticles produced utilizing various plant extracts were active free radical scavengers. This potential is linked to several surface fabricated phytoconstituents, such as flavonoids and phenols. These phytoantioxidant functionalized nanoparticles could be a better alternative to nanoparticles prepared by other existing approaches.

摘要

纳米技术备受关注,在众多生物医药应用中得到广泛应用。银在伤口敷料中、氧化铜和银在抗菌制剂中、氧化锌纳米粒子作为食品和化妆品成分都是常见的例子。然而,纳米颗粒在人类和环境中的长期暴露于不同浓度下的不良反应尚未得到证实。使用纳米颗粒的一个缺点是它们容易引起氧化应激,这是一个严重的公共健康问题,可能导致危及生命的后果。心血管、肾脏、呼吸系统问题和糖尿病是与氧化应激相关的疾病之一。在这种情况下,植物抗氧化剂功能化纳米粒子可能是一种新颖而有效的替代方法。除了发挥其预期的功能外,它们还可以防止氧化损伤。本综述是通过在 PubMed、Science Direct 和 Google Scholar 中搜索各种网站、书籍和文章设计的。首先,讨论了氧化应激、与其相关的疾病以及纳米颗粒引起的氧化损伤的机制基础。纳米颗粒的主要作用机制之一是氧化应激,这限制了它们在人类中的应用。其次,还批判性地讨论了植物抗氧化剂功能化纳米粒子在预防氧化损伤中的作用。还讨论了纳米粒子的表征参数。利用各种植物提取物制备的大多数银、金、铁、氧化锌和铜纳米粒子都是有效的自由基清除剂。这种潜力与几种表面制造的植物成分有关,如类黄酮和酚类。这些植物抗氧化剂功能化纳米粒子可能是比其他现有方法制备的纳米粒子更好的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/148b/8563134/e776ebfa7519/OMCL2021-3155962.001.jpg

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