Evaluation of fresh water lactic acid bacteria for production of optically pure L-(+)-lactic acid

IF 0.7 Q4 PHARMACOLOGY & PHARMACY Egyptian Pharmaceutical Journal Pub Date : 2022-04-01 DOI:10.4103/epj.epj_33_22
W. Elkhateeb, A. Hamdan, T. Zendo, N. Ishibashi, G. Daba, Y. Tashiro, K. Sonomoto
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引用次数: 1

Abstract

Background and objective Lactic acid bacteria (LAB) are generous producers of many industrially important products. Of these products, optically pure lactic acid is of great value as it is essential for production of highly crystalline poly-lactic acid, which is the most widely used biodegradable synthetic polymer. Hence, this study aimed to screen for thermotolerant LAB from a new source, which is fresh water samples collected from the coast of the Nile River, Egypt, and then evaluate their ability to produce optically pure L-lactic acid. Materials and methods LAB strains were isolated at 50°C and evaluated for producing optically pure L-lactic acid using high-performance liquid chromatography and BF-5. Effects of medium containing different sugar sources, incubation temperature, and initial pH of the medium on the purity and productivity of L-lactic acid were also studied. Results and discussion All obtained isolates were capable of producing optically pure L-lactic acid on different sugar sources. Changing the incubation temperature to 30°C positively affected both productivity and optical purity, which reached 5.0 g/l of 100% optically pure L-lactic acid. On the contrary, pH of the medium was confirmed to be also one of the major factors affecting productivity and optical purity of obtained L-lactic acid. For our isolates, pH 7.0 was the optimum one for the production process. The four promising producers of 100% optically pure L-lactic acid were molecularly identified as Lactiplantibacillus sp. Conclusion This is the first study describing the evaluation of the ability of fresh water LAB isolated from the Nile River to produce optically pure L-lactic acid.
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淡水乳酸菌生产光学纯L-(+)-乳酸的评价
背景和目的乳酸菌(LAB)是许多重要工业产品的慷慨生产者。在这些产品中,光纯乳酸具有重要的价值,因为它是生产高结晶聚乳酸所必需的,聚乳酸是应用最广泛的生物可降解合成聚合物。因此,本研究旨在从埃及尼罗河沿岸的淡水样品中筛选耐热LAB,然后评估其产生光学纯l -乳酸的能力。材料和方法在50°C条件下分离LAB菌株,利用高效液相色谱和BF-5对其产光纯l -乳酸进行鉴定。研究了不同糖源培养基、培养温度和培养基初始pH对l -乳酸纯度和产率的影响。结果与讨论所得菌株在不同糖源下均能产生光纯l -乳酸。将培养温度改变为30℃对产率和光学纯度均有积极影响,100%光学纯l -乳酸达到5.0 g/l。相反,培养基的pH也是影响所得l -乳酸产率和光学纯度的主要因素之一。对分离物来说,pH 7.0是生产工艺的最佳条件。从分子上鉴定出4个具有100%光纯l -乳酸生产潜力的菌株为乳酸杆菌。结论本研究首次对从尼罗河分离的淡水乳酸菌生产光纯l -乳酸的能力进行了评价。
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来源期刊
Egyptian Pharmaceutical Journal
Egyptian Pharmaceutical Journal PHARMACOLOGY & PHARMACY-
CiteScore
1.10
自引率
0.00%
发文量
37
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