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An overview on the green synthesis of nanoparticles and other nano-materials using enzymes and their potential applications

机译:使用酶及其潜在应用概述纳米颗粒和其他纳米材料的绿色合成

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摘要

The applications of nanopnrlicles (NPs) and anotlier nanomaterial (NM) are widely inereasing in various Fields including biomedical and clinical sciences. Conventional methods used for the synthesis of NM have several demerits like chemical procedures producing toxic materials and physical methods being costly and forming particles of non-uniform sizes. The use of such NM has prevented their applications in biomedical fields especially in clinical applications. In order to use NPs in clinical fields, there is a need to use reliable, nontoxic and eco-friendly methods for their synthesis. The use of eco-friendly and biological methods for the synthesis of NPs and other NM has attracted the attention of nanobiotechnologists due to synthesis of such particles by using nontoxic method. The enzymatic synthesis of NPs is highly specific as this procedure results in the formation of nontoxic materials of controlled shape, size and high stability. In this chapter an effort has been made to critically review recent developments in the area of biosynthesis of several types of NM by using enzymes of diverse groups such as oxidoreduetases, transferases, hydrolases, lyases and ligases. The mechanisms of enzyme catalyzedsynthesis of NPs and the reaction conditions to control their shape, size, and stability of NPs have also been described. Numerous kinds of techniques employed for the identification and characterization of NM have been discussed. The biomedical and oilier applications of as-synthesized NM have also been mentioned in this article.
机译:纳米腹(NPS)和Anotlier纳米材料(NM)的应用在包括生物医学和临床科学的各个领域中广泛意义。用于合成NM的常规方法具有几个缺点,如化学方法,其产生有毒材料和物理方法的昂贵和形成不均匀尺寸的颗粒。这种NM的使用阻止了它们在生物医学领域中的应用,尤其是在临床应用中。为了在临床领域使用NPS,需要使用可靠,无毒和生态友好的方法来合成。使用生态友好友好和生物学方法为NPS和其他NM的合成引起了由于通过使用无毒方法的合成这些颗粒而引起纳米能力的注意。 NPS的酶合成是高度特异性,因为该方法导致形成受控形状,尺寸和高稳定性的无毒材料。在本章中,已经通过使用氧化氢酶,转移酶,水解酶,裂解酶和连接酶如诸如氧化氢酶,转移酶,水解酶,裂解酶和连接酶的不同组酶来重视近几种NM的生物合成领域的最新发展。还描述了NPS的酶催化合成的机制和控制其形状,尺寸和NPS的稳定性的反应条件。已经讨论了许多用于鉴定和表征NM的技术。本文还提到了如合成NM的生物医学和油脂应用。

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