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铁纳米粒子的绿色合成:来源及多种生物技术应用。

Green synthesis of iron nanoparticles: Sources and multifarious biotechnological applications.

机构信息

Department of Biotechnology, Central University of Haryana, Jant-Pali, Mahendergarh 123031, Haryana, India.

Amity Institute of Virology and Immunology, Amity University Uttar Pradesh, Sector 125, Noida, Uttar Pradesh 201313, India.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 4):127017. doi: 10.1016/j.ijbiomac.2023.127017. Epub 2023 Sep 23.

Abstract

Green synthesis of iron nanoparticles is a highly fascinating research area and has gained importance due to reliable, sustainable and ecofriendly protocol for synthesizing nanoparticles, along with the easy availability of plant materials and their pharmacological significance. As an alternate to physical and chemical synthesis, the biological materials, like microorganisms and plants are considered to be less costly and environment-friendly. Iron nanoparticles with diverse morphology and size have been synthesized using biological extracts. Microbial (bacteria, fungi, algae etc.) and plant extracts have been employed in green synthesis of iron nanoparticles due to the presence of various metabolites and biomolecules. Physical and biochemical properties of biologically synthesized iron nanoparticles are superior to that are synthesized using physical and chemical agents. Iron nanoparticles have magnetic property with thermal and electrical conductivity. Iron nanoparticles below a certain size (generally 10-20 nm), can exhibit a unique form of magnetism called superparamagnetism. They are non-toxic and highly dispersible with targeted delivery, which are suitable for efficient drug delivery to the target. Green synthesized iron nanoparticles have been explored for multifarious biotechnological applications. These iron nanoparticles exhibited antimicrobial and anticancerous properties. Iron nanoparticles adversely affect the cell viability, division and metabolic activity. Iron nanoparticles have been used in the purification and immobilization of various enzymes/proteins. Iron nanoparticles have shown potential in bioremediation of various organic and inorganic pollutants. This review describes various biological sources used in the green synthesis of iron nanoparticles and their potential applications in biotechnology, diagnostics and mitigation of environmental pollutants.

摘要

绿色合成铁纳米粒子是一个非常引人关注的研究领域,由于其具有可靠、可持续和环保的纳米粒子合成方法,以及植物材料的易得性和它们的药理学意义,因此变得尤为重要。与物理和化学合成相比,生物材料,如微生物和植物被认为成本更低、对环境更友好。已经使用生物提取物合成了具有不同形态和尺寸的铁纳米粒子。由于存在各种代谢物和生物分子,微生物(细菌、真菌、藻类等)和植物提取物已被用于铁纳米粒子的绿色合成中。与使用物理和化学试剂合成的相比,生物合成的铁纳米粒子具有更好的物理和生化性质。铁纳米粒子具有磁性、热导性和电导率。尺寸小于一定值(通常为 10-20nm)的铁纳米粒子可以表现出一种称为超顺磁性的独特磁性。它们具有非毒性和高度分散性,可实现靶向递送,非常适合高效递送到目标部位。绿色合成的铁纳米粒子已被探索用于多种生物技术应用。这些铁纳米粒子具有抗菌和抗癌特性。铁纳米粒子会对细胞活力、分裂和代谢活动产生不利影响。铁纳米粒子已被用于各种酶/蛋白质的纯化和固定化。铁纳米粒子在各种有机和无机污染物的生物修复中显示出了潜力。本文综述了绿色合成铁纳米粒子中使用的各种生物来源及其在生物技术、诊断和环境污染物缓解方面的潜在应用。

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