a Department of Biological Engineering , College of Engineering, Konkuk University , Seoul , South Korea.
b Department of Plant Science , School of Biological Sciences, Central University of Kerala , Kasaragod , India.
Crit Rev Microbiol. 2017 Nov;43(6):731-752. doi: 10.1080/1040841X.2017.1306689. Epub 2017 Apr 25.
Exopolysaccharides (EPSs) are structurally and functionally valuable biopolymer secreted by different prokaryotic and eukaryotic microorganisms in response to biotic/abiotic stresses and to survive in extreme environments. Microbial EPSs are fascinating in various industrial sectors due to their excellent material properties and less toxic, highly biodegradable, and biocompatible nature. Recently, microbial EPSs have been used as a potential template for the rapid synthesis of metallic nanoparticles and EPS-mediated metal reduction processes are emerging as simple, harmless, and environmentally benign green chemistry approaches. EPS-mediated synthesis of metal nanoparticles is a distinctive metabolism-independent bio-reduction process due to the formation of interfaces between metal cations and the polyanionic functional groups (i.e. hydroxyl, carboxyl and amino groups) of the EPS. In addition, the range of physicochemical features which facilitates the EPS as an efficient stabilizing or capping agents to protect the primary structure of the metal nanoparticles with an encapsulation film in order to separate the nanoparticle core from the mixture of composites. The EPS-capping also enables the further modification of metal nanoparticles with expected material properties for multifarious applications. The present review discusses the microbial EPS-mediated green synthesis/stabilization of metal nanoparticles, possible mechanisms involved in EPS-mediated metal reduction, and application prospects of EPS-based metal nanoparticles.
胞外多糖 (EPSs) 是一种结构和功能都很有价值的生物聚合物,由不同的原核和真核微生物在应对生物/非生物胁迫以及在极端环境中生存时分泌。由于其出色的材料性能以及毒性较低、高度可生物降解和生物相容性,微生物 EPS 在各个工业领域都很吸引人。最近,微生物 EPS 已被用作快速合成金属纳米粒子的潜在模板,并且 EPS 介导的金属还原过程作为简单、无害且环境友好的绿色化学方法正在出现。EPS 介导的金属纳米粒子合成是一种独特的代谢独立的生物还原过程,因为金属阳离子与 EPS 的聚阴离子官能团(即羟基、羧基和氨基)之间形成了界面。此外,其物理化学特性范围广泛,使 EPS 成为一种有效的稳定或封端剂,以保护金属纳米粒子的原始结构,并在混合物中形成封装膜,以将纳米粒子核心与复合材料分离。EPS 封端还可以进一步修饰金属纳米粒子,以获得预期的材料特性,从而实现多样化的应用。本综述讨论了微生物 EPS 介导的金属纳米粒子的绿色合成/稳定化、EPS 介导的金属还原过程中涉及的可能机制,以及基于 EPS 的金属纳米粒子的应用前景。