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首页> 外文期刊>Forensic science international >Modeling microbial ethanol production by E. coli under aerobic/anaerobic conditions: Applicability to real postmortem cases and to postmortem blood derived microbial cultures
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Modeling microbial ethanol production by E. coli under aerobic/anaerobic conditions: Applicability to real postmortem cases and to postmortem blood derived microbial cultures

机译:在有氧/厌氧条件下模拟大肠杆菌产生的微生物乙醇:适用于实际死后病例和死后血液来源的微生物培养物

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The mathematical modeling of the microbial ethanol production under strict anaerobic experimental conditions for some bacterial species has been proposed by our research group as the first approximation to the quantification of the microbial ethanol production in cases where other alcohols were produced simultaneously with ethanol.The present study aims to: (i) study the microbial ethanol production by Escherichia coli under controlled aerobic/anaerobic conditions; (ii) model the correlation between the microbial produced ethanol and the other higher alcohols; and (iii) test their applicability in: (a) real postmortem cases that had positive BACs (>0.10. g/L) and co-detection of higher alcohols and 1-butanol during the original ethanol analysis and (b) postmortem blood derived microbial cultures under aerobic/anaerobic controlled experimental conditions.The statistical evaluation of the results revealed that the formulated models were presumably correlated to 1-propanol and 1-butanol which were recognized as the most significant descriptors of the modeling process. The significance of 1-propanol and 1-butanol as descriptors was so powerful that they could be used as the only independent variables to create a simple and satisfactory model. The current models showed a potential for application to estimate microbial ethanol - within an acceptable standard error - in various tested cases where ethanol and other alcohols have been produced from different microbes.
机译:我们的研究小组提出了在严格厌氧实验条件下某些细菌物种产生微生物乙醇的数学模型,作为在其他醇与乙醇同时产生的情况下微生物乙醇产生的定量化的第一近似方法。目的是:(i)研究在受控的需氧/厌氧条件下大肠杆菌生产的微生物乙醇; (ii)模拟微生物产生的乙醇与其他高级醇之间的相关性; (iii)测试其在以下情况中的适用性:(a)在原始乙醇分析过程中具有阳性BAC(> 0.10。g / L)并同时检测出高级醇和1-丁醇的实际死后病例,以及(b)死后血液在需氧/厌氧控制的实验条件下进行微生物培养。结果的统计评估表明,所建立的模型可能与1-丙醇和1-丁醇相关,后者被认为是建模过程中最重要的描述子。 1-丙醇和1-丁醇作为描述符的意义是如此强大,以至于它们可以用作创建简单且令人满意的模型的唯一自变量。当前的模型显示了在各种测试情况下估计微生物乙醇的潜力-在可接受的标准误差范围内,这些情况是由不同微生物生产乙醇和其他醇。

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