Dahroud Behnaz Dahri, Mokarram Reza Rezai, Khiabani Mahmoud Sowti, Hamishehkar Hamed, Bialvaei Abed Zahedi, Yousefi Mehdi, Kafil Hossein Samadi
Department of Food Science and Technology, Faculty of Agriculture, Tabriz University, Tabriz, Iran.
Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Int J Biol Macromol. 2016 May;86:462-7. doi: 10.1016/j.ijbiomac.2016.01.103. Epub 2016 Feb 4.
L-Lactic acid (L-LA) is one of the microbial products with several applications and its production efficiency is so important. In the present study, we have been exploring application of low intensity ultrasound technology to improve the metabolic activity for L-lactic acid production by Lactobacillus casei in different mediums. L-LA, biomass production and substrate (protein) consumption were measured as parameters of fermentation yield. L-LA and protein contents were determined using the titratable acidity and the biuret method respectively. Spectrophotometry (OD600nm) was used for measuring cell growths. L-LA, biomass production and protein consumption considered as dependent variables, but the amplitude of waves (20%, 40% and 60%), waves duration (15, 30, 45 s) and add of peptone (2, 6 and 10 g/l) as independent variables. The results showed that L-LA, biomass production and substrate consumption significantly increased (≈25%). Optimum conditions for biomass production was amplitude of 60%, 15s exposure time and 10 g/l peptone, while for acid lactic production and substrate consumption was 40%, 30s and 6g/l peptone, respectively. Flowcytometry analysis also showed that sonication led to increasing cell membrane permeability. This observation shows low intensity ultrasound as a potential parameter in the improvement of metabolic activity of L. casei.
L-乳酸(L-LA)是一种具有多种应用的微生物产物,其生产效率至关重要。在本研究中,我们一直在探索低强度超声技术的应用,以提高干酪乳杆菌在不同培养基中生产L-乳酸的代谢活性。测定L-LA、生物量产量和底物(蛋白质)消耗作为发酵产量的参数。分别使用可滴定酸度法和双缩脲法测定L-LA和蛋白质含量。采用分光光度法(OD600nm)测量细胞生长情况。将L-LA、生物量产量和蛋白质消耗视为因变量,而将波幅(20%、40%和60%)、波持续时间(15、30、45秒)和蛋白胨添加量(2、6和10克/升)视为自变量。结果表明,L-LA、生物量产量和底物消耗显著增加(约25%)。生物量生产的最佳条件是波幅60%、暴露时间15秒和蛋白胨10克/升,而乳酸生产和底物消耗的最佳条件分别是40%、30秒和蛋白胨6克/升。流式细胞术分析还表明,超声处理导致细胞膜通透性增加。这一观察结果表明低强度超声是提高干酪乳杆菌代谢活性的一个潜在参数。