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首页> 外文期刊>Analytica chimica acta >Electrochemical biosensors for monitoring malolactic fermentation in red wine using two strains of Oenococcus oeni
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Electrochemical biosensors for monitoring malolactic fermentation in red wine using two strains of Oenococcus oeni

机译:使用两种Oenococcus oeni菌株监测红酒中苹果酸乳酸发酵的电化学生物传感器

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Amperometric biosensors for the determination of L-malic and L-lactic acids were optimised and used to monitor micro-malolactic fermentations (micro-MLFs) in red wine.Platinum-based probes,coupled with appropriate enzymes,were assembled in electrochemical flow-injection analysis systems.A classical lactate oxidase based sensor was used for L-lactic acid,while L-malic acid was detected via a new biosensor based on the malic enzyme immobilised in a reactor using phenazine methosulphate as mediator.After a preliminary optimisation phase,a recovery study to evaluate the effect of the matrix (red wine) on biosensor performance was carried out by the addition of different standard solutions of the two analytes to the samples.Recoveries from 93 to 100% and from 94 to 102% were observed for L-malic acid and L-lactic acid,respectively.These optimised biosensors were finally employed to monitor micro-MLFs induced by inoculation of two different strains of Oenococcus oeni into red wine.During the micro-MLFs,samples of wine were collected and assayed for L-malic,L-lactic,and citric acids by use of both biosensors and spectrophotometric techniques.In parallel the viable bacterial cell count was also evaluated.The kinetics of bacterial growth,degradation of L-malic and citric acids,and production of L-lactic acid was found to be a function of the strains inoculated.
机译:优化了用于测定L-苹果酸和L-乳酸的安培生物传感器,并将其用于监测红酒中的微苹果乳酸发酵(micro-MLFs)。以铂为基础的探针与适当的酶结合,通过电化学流动注射组装分析系统.L-乳酸使用经典的基于乳酸氧化酶的传感器,而新的基于苹果酸酶固定在反应器中的苹果酸酶是通过新的生物传感器检测到L-苹果酸的,其中吩嗪甲基硫酸盐为介质。经过初步优化阶段,a通过在样品中添加两种分析物的不同标准溶液来进行回收率研究,以评估基质(红酒)对生物传感器性能的影响.L的回收率从93%降至100%,从94%降至102%这些优化的生物传感器最终用于监测由两种不同的Oenococcus oeni菌株接种到红酒中诱导的微型MLF。微量MLF,葡萄酒样品并通过生物传感器和分光光度技术同时测定L-苹果酸,L-乳酸和柠檬酸。同时,还评估了活细菌细胞数。细菌生长,降解的动力学L-苹果酸和柠檬酸的含量,发现L-乳酸的产生与接种的菌株有关。

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