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Antioxidants: Classification Natural Sources Activity/Capacity Measurements and Usefulness for the Synthesis of Nanoparticles

机译:抗氧化剂:分类天然来源活性/容量测量以及合成纳米颗粒的用途

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摘要

Natural extracts are the source of many antioxidant substances. They have proven useful not only as supplements preventing diseases caused by oxidative stress and food additives preventing oxidation but also as system components for the production of metallic nanoparticles by the so-called green synthesis. This is important given the drastically increased demand for nanomaterials in biomedical fields. The source of ecological technology for producing nanoparticles can be plants or microorganisms (yeast, algae, cyanobacteria, fungi, and bacteria). This review presents recently published research on the green synthesis of nanoparticles. The conditions of biosynthesis and possible mechanisms of nanoparticle formation with the participation of bacteria are presented. The potential of natural extracts for biogenic synthesis depends on the content of reducing substances. The assessment of the antioxidant activity of extracts as multicomponent mixtures is still a challenge for analytical chemistry. There is still no universal test for measuring total antioxidant capacity (TAC). There are many in vitro chemical tests that quantify the antioxidant scavenging activity of free radicals and their ability to chelate metals and that reduce free radical damage. This paper presents the classification of antioxidants and non-enzymatic methods of testing antioxidant capacity in vitro, with particular emphasis on methods based on nanoparticles. Examples of recent studies on the antioxidant activity of natural extracts obtained from different species such as plants, fungi, bacteria, algae, lichens, actinomycetes were collected, giving evaluation methods, reference antioxidants, and details on the preparation of extracts.
机译:自然提取物是许多抗氧化物质的来源。它们不仅有用,不仅可以作为预防氧化胁迫和食品添加剂引起的疾病预防氧化而且作为通过所谓的绿色合成生产金属纳米颗粒的系统组分。鉴于生物医学领域的纳米材料的需求急剧增加,这很重要。用于生产纳米颗粒的生态技术来源可以是植物或微生物(酵母,藻类,蓝藻,真菌和细菌)。该评论最近发表了关于纳米粒子的绿色合成的研究。介绍了生物合成的条件和纳米粒子形成与细菌的参与的可能机制。生物合成的自然提取物的潜力取决于还原物质的含量。评估提取物作为多组分混合物的抗氧化活性仍然是分析化学的挑战。仍然没有通用测试,用于测量总抗氧化容量(TAC)。有许多体外化学试验,可以量化自由基的抗氧化清除活性及其螯合金属的能力,减少自由基损伤。本文介绍了体外抗氧化能力的抗氧化剂和非酶促方法的分类,特别强调了基于纳米颗粒的方法。收集来自不同物种如植物,真菌,细菌,藻类,地衣,放线菌,放线菌等自然提取物的抗氧化活性的实例,得到评价方法,参考抗氧化剂和提取物制备的细节。

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