Sharma Basista Rabina, Kumar Vikas, Gat Yogesh, Kumar Naveen, Parashar Aarya, Pinakin Dave Jaydeep
1School of Biotechnology and Biosciences, Lovely Professional University, Phagwara, Punjab 144411 India.
2Food Technology and Nutrition, School of Agriculture, Lovely Professional University, Phagwara, Punjab 144411 India.
3 Biotech. 2018 Sep;8(9):401. doi: 10.1007/s13205-018-1423-8. Epub 2018 Sep 7.
A rapid change in the lifestyle has witnessed poor health with the increased incidences of numerous diseases in the recent years, and ultimately increasing the demand of nutritious foods containing phytochemicals. A wide range of phytochemicals (secondary metabolites) is being synthesized in plants, which influence the human health upon consumption as dietary component. Recently, a number of the technologies (conventional and non-conventional methods) have been standardized by the different researchers for the extraction of these phytochemicals depending upon the raw material. However, selection of extraction method for commercial use depends upon various factors such as extraction efficiency, time required, and cost of operation. Considering these factors, microbial maceration is one of the viable approaches which is easy to handle, cost-effective, energy efficient, less hazardous and having high extraction rate. Recently, researchers have utilized this technique for the maceration of different plant-based substrates (such as legumes, cereals, pulses, fruits and vegetables) and their respective wastes for the efficient extraction of numerous phytochemicals with increased efficiency. However, scale up studies and analysis of toxic compounds produced by microbes are still a lacking field and need to be explored further by the researchers and industrialists to bring it into reality. Therefore, the present review aims to document the recent findings related to microbial maceration in a crisp way to provide the complete information to the readers.
近年来,生活方式的迅速改变见证了健康状况的恶化,多种疾病的发病率不断上升,这最终增加了对含有植物化学物质的营养食品的需求。植物中合成了多种植物化学物质(次生代谢产物),当作为饮食成分被食用时,这些物质会影响人体健康。最近,不同的研究人员根据原材料,对多种技术(传统方法和非传统方法)进行了标准化,用于提取这些植物化学物质。然而,商业用途提取方法的选择取决于多种因素,如提取效率、所需时间和操作成本。考虑到这些因素,微生物浸渍是一种可行的方法,它易于操作、成本效益高、能源效率高、危害小且提取率高。最近,研究人员利用这种技术对不同的植物基底物(如豆类、谷物、豆类、水果和蔬菜)及其各自的废料进行浸渍,以提高多种植物化学物质的提取效率。然而,扩大规模研究以及对微生物产生的有毒化合物的分析仍然是一个有待探索的领域,研究人员和实业家需要进一步探索,以将其变为现实。因此,本综述旨在以简洁的方式记录与微生物浸渍相关的最新发现,为读者提供完整的信息。