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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Investigation and evaluation of a method for determination of ethanol with the SIRE (R) Biosensor P100, using alcohol dehydrogenase as recognition element
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Investigation and evaluation of a method for determination of ethanol with the SIRE (R) Biosensor P100, using alcohol dehydrogenase as recognition element

机译:使用乙醇脱氢酶作为识别元件的SIRE(R)Biosensor P100测定乙醇的方法的研究和评估

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A new method for rapid determination of ethanol was developed, using alcohol dehydrogenase as recognition element for the SIRE (R) (sensors based on injection of the recognition element) Biosensor, which is an amperometric biosensor. The method was simple, fast, accurate, specific and cost-effective. The recognition element solution used was stable at least for 24h in room temperature, and at least one month when lyophilised. The optimal potential versus the silver wire electrode, the optimal pH of the buffer and the optimal temperature of the water bath was determined to be +950 mV, 8.1 and 308 K, respectively. The optimal concentrations of alcohol dehydrogenase, BSA and NAD(+) were deterntined to be 200 U/ml, 20 mg/ml and 15 mM, respectively. The total analysis time was between 50s and 4 min per analysis, depending on the concentration ran-e. The linear range was 0-12.5 mM. The detection limit was less than 0.1 mM. The repeatability (%R.S.D.) was 3-5% (n = 10). The reproducibility was 5-8% (n = 5). Methanol gave no signal at all, but higher alcohols, such as propanol, pentanol and hexanol, gave significant signals, decreasing with increasing length of the carbon chain. The price for one measurement was calculated to be 0.052 euro. The results from measurements with the biosensor were compared to those from an established analysis kit for ethanol. The results correlated well (R-2 = 0.9874). The concentration of ethanol in different alcoholic beverages was investigated and correlated well with the concentrations given by the manufacturers. (c) 2005 Elsevier B.V. All rights reserved.
机译:开发了一种快速测定乙醇的新方法,该方法使用乙醇脱氢酶作为SIRE(R)(基于注入识别元素的传感器)生物传感器的识别元素,该传感器是安培型生物传感器。该方法简单,快速,准确,专一且具有成本效益。所使用的识别元件溶液在室温下至少稳定24h,而在冻干时至少稳定1个月。相对于银线电极的最佳电位,缓冲液的最佳pH值和水浴的最佳温度分别确定为+950 mV,8.1和308K。酒精脱氢酶,BSA和NAD(+)的最佳浓度分别确定为200 U / ml,20 mg / ml和15 mM。每次分析的总分析时间在50s至4分钟之间,具体取决于浓度范围。线性范围是0-12.5mM。检测限小于0.1 mM。重复性(%R.S.D。)为3-5%(n = 10)。重现性为5-8%(n = 5)。甲醇完全没有信号,但是高级醇(例如丙醇,戊醇和己醇)给出了明显信号,随碳链长度的增加而降低。一项测量的价格计算为0.052欧元。将生物传感器的测量结果与已建立的乙醇分析试剂盒的结果进行比较。结果具有良好的相关性(R-2 = 0.9874)。对不同酒精饮料中乙醇的浓度进行了研究,并将其与制造商给出的浓度很好地关联。 (c)2005 Elsevier B.V.保留所有权利。

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