Department of Chemical Engineering, Institute of Chemical Technology, Mumbai, India.
Prep Biochem Biotechnol. 2020;50(6):627-634. doi: 10.1080/10826068.2020.1725773. Epub 2020 Feb 17.
Biological molecules are widely produced by fermentation technology using bacteria, fungi or yeast. Fermentation is a biochemical process wherein the rate of bioconversion is governed by the organisms involved. The growth of the organism is mainly limited by mass transfer rates of nutrients and gases that directly affect the product formation in fermentation. Attempts have been made to enhance the growth rate and yield using mutational, recombinant strain development approach at microbial level as well as fed batch and continuous processing approach at bioprocess level in the past. The growth rate of microbes can be accelerated by increased mass transfer rates and cell wall permeability with the use of controlled low frequency ultrasound irradiation. The present review provides insights into the application of acoustic cavitation in process intensification of fermentation approaches and the role of various factors involved are highlighted with typical examples.
生物分子广泛采用发酵技术,利用细菌、真菌或酵母生产。发酵是一种生化过程,其中生物转化的速率受涉及的生物体控制。生物体的生长主要受到营养物质和气体的传质速率限制,这些物质直接影响发酵中的产物形成。过去,人们曾试图通过微生物水平的突变和重组菌株开发方法以及生物过程水平的分批补料和连续处理方法来提高生长速率和产量。通过使用控制低频超声辐射来增加传质速率和细胞壁通透性,可以加速微生物的生长速率。本综述介绍了声空化在发酵方法强化过程中的应用,并通过典型实例强调了涉及的各种因素的作用。