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极端微生物作为无机生物纳米颗粒的来源

Extremophiles as sources of inorganic bio-nanoparticles.

作者信息

Beeler Erik, Singh Om V

机构信息

Division of Biological and Health Sciences, University of Pittsburgh, 300 Campus Drive, Bradford, PA, 16701, USA.

出版信息

World J Microbiol Biotechnol. 2016 Sep;32(9):156. doi: 10.1007/s11274-016-2111-7. Epub 2016 Jul 27.

Abstract

Industrial use of nanotechnology in daily life has produced an emphasis on the safe and efficient production of nanoparticles (NPs). Traditional chemical oxidation and reduction methods are seen as inefficient, environmentally unsound, and often dangerous to those exposed and involved in NP manufacturing. However, utilizing microorganisms for biosynthesis of NPs allows efficient green production of a range of inorganic NPs, while maintaining specific size, shape, stability, and dispersity. Microorganisms living under harsh environmental conditions, called "Extremophiles," are one group of microorganisms being utilized for this biosynthesis. Extremophiles' unique living conditions have endowed them with various processes that enable NP biosynthesis. This includes a range of extremophiles: thermophiles, acidophilus, halophiles, psychrophiles, anaerobes, and some others. Fungi, bacteria, yeasts, and archaea, i.e. Ureibacillus thermosphaericus, and Geobacillus stearothermophilus, among others, have been established for NP biosynthesis. This article highlights the extremophiles and methods found to be viable candidates for the production of varying types of NPs, as well as interpreting selective methods used by the organisms to synthesize NPs.

摘要

纳米技术在日常生活中的工业应用使得人们开始重视纳米颗粒(NP)的安全高效生产。传统的化学氧化和还原方法被认为效率低下、对环境有害,并且常常对参与NP制造的人员构成危险。然而,利用微生物进行NP的生物合成能够高效绿色地生产一系列无机NP,同时保持特定的尺寸、形状、稳定性和分散性。生活在恶劣环境条件下的微生物,即“极端微生物”,是被用于这种生物合成的一类微生物。极端微生物独特的生存条件赋予了它们各种能够实现NP生物合成的过程。这包括一系列极端微生物:嗜热菌、嗜酸菌、嗜盐菌、嗜冷菌、厌氧菌等等。真菌、细菌、酵母和古细菌,例如嗜热栖热芽孢杆菌和嗜热栖热地芽孢杆菌等,已被证实可用于NP生物合成。本文重点介绍了那些被发现是生产不同类型NP的可行候选者的极端微生物和方法,同时解读了这些生物体用于合成NP的选择性方法。

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