School of Bio Sciences and Technology, VIT, Vellore, Tamil Nadu, 632014, India.
Department of Biotechnology, Karunya Institute of Technology and Sciences, Coimbatore, Tamil Nadu, 641114, India.
World J Microbiol Biotechnol. 2018 Aug 23;34(9):138. doi: 10.1007/s11274-018-2522-8.
The widespread applications of silver nanoparticles in present days demand an industrial-scale production process. The ability of bacteria to synthesise silver nanoparticles can be exploited to overcome many shortcomings associated with conventional production processes, such as high cost and nanoparticle toxicity. However, lack of a standardised protocol and suboptimal yield remain a major obstacle for bacterial synthesis route. A potential, yet unexplored, solution to this problem could be envisioned through rewiring of the metabolic network to direct cellular resources towards the product of interest. Mathematical modelling of metabolic pathway is the key to understand and manipulate the cellular metabolism for enhanced production of desired metabolite(s). The present study provides a perspective on the scope of metabolic engineering approaches to enhance bacterial synthesis of silver nanoparticles.
目前,银纳米粒子在各个领域得到了广泛的应用,这就需要大规模的工业化生产过程。利用细菌合成银纳米粒子的能力可以克服传统生产过程中存在的许多缺点,如成本高和纳米粒子毒性等。然而,缺乏标准化的方案和不理想的产量仍然是细菌合成途径的主要障碍。通过重新布线代谢网络,将细胞资源引导到感兴趣的产物上,可能为这个问题提供一个潜在的、尚未开发的解决方案。代谢途径的数学建模是理解和操纵细胞代谢以增强所需代谢物(s)生产的关键。本研究提供了一个视角,探讨了代谢工程方法在增强细菌合成银纳米粒子方面的应用范围。