Şahin Engin
Faculty of Engineering, Department of Food Engineering, Bayburt University, Bayburt, Turkey.
Chirality. 2018 Feb;30(2):189-194. doi: 10.1002/chir.22782. Epub 2017 Nov 7.
Piperonyl ring is found in a number of naturally occurring compounds and possesses enormous biological activities. There are many studies in the literature with compounds containing a piperonyl ring, but there are very few studies on the synthesis of chiral piperonyl carbinol. The objective of this study was to determine the microbial reduction ability of bacterial strains and to reveal the effects of different physicochemical parameters on this reduction ability. A total of 15 bacterial isolates were screened for their ability to reduce 1-(benzo[d][1,3]dioxol-5-yl) ethanone 1 to its corresponding alcohol. Among these isolates Lactobacillus paracasei BD101 was found to be the most successful biocatalyst to reduce the ketone containing piperonyl ring to the corresponding alcohol. The reaction conditions were systematically optimized for the reducing agent L paracasei BD101, which showed high enantioselectivity and conversion for the bioreduction. The preparative scale study was performed, and a total of 3.72 g of (R)-1-(1,3-benzodioxol-5-yl) ethanol in high enantiomeric form (>99% enantiomeric excess) was produced in a mild, cheap, and environment-friendly process. This study demonstrates that L paracasei BD101 can be used as a biocatalyst to obtain chiral carbinol with excellent yield and selectivity.
胡椒基环存在于许多天然化合物中,并具有巨大的生物活性。文献中有许多关于含胡椒基环化合物的研究,但关于手性胡椒基甲醇合成的研究却很少。本研究的目的是确定细菌菌株的微生物还原能力,并揭示不同物理化学参数对这种还原能力的影响。总共筛选了15株细菌分离株还原1-(苯并[d][1,3]二氧杂环戊烯-5-基)乙酮1为相应醇的能力。在这些分离株中,副干酪乳杆菌BD101被发现是将含胡椒基环的酮还原为相应醇的最成功的生物催化剂。对还原剂副干酪乳杆菌BD101的反应条件进行了系统优化,该菌株在生物还原反应中表现出高对映选择性和转化率。进行了制备规模的研究,通过温和、廉价且环境友好的过程总共生产了3.72 g高对映体形式(对映体过量>99%)的(R)-1-(1,3-苯并二氧杂环戊烯-5-基)乙醇。本研究表明,副干酪乳杆菌BD101可作为生物催化剂,以优异的产率和选择性获得手性甲醇。