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模拟番荔枝(Pouteria sapota (Jacq.) H.E. Moore & Stearn)果肉中大肠杆菌和鼠伤寒沙门氏菌的压力失活情况。

Modeling the pressure inactivation of Escherichia coli and Salmonella typhimurium in sapote mamey ( Pouteria sapota (Jacq.) H.E. Moore & Stearn) pulp.

作者信息

Saucedo-Reyes Daniela, Carrillo-Salazar José A, Román-Padilla Lizbeth, Saucedo-Veloz Crescenciano, Reyes-Santamaría María I, Ramírez-Gilly Mariana, Tecante Alberto

机构信息

1 Colegio de Postgraduados, Carretera México-Texcoco, Texcoco, Mexico.

2 Bayes Forecast S. A. de C.V. Plaza Polanco 1, Polanco, Mexico.

出版信息

Food Sci Technol Int. 2018 Mar;24(2):117-131. doi: 10.1177/1082013217735472. Epub 2017 Oct 19.

Abstract

High hydrostatic pressure inactivation kinetics of Escherichia coli ATCC 25922 and Salmonella enterica subsp. enterica serovar Typhimurium ATCC 14028 ( S. typhimurium) in a low acid mamey pulp at four pressure levels (300, 350, 400, and 450 MPa), different exposure times (0-8 min), and temperature of 25 ± 2℃ were obtained. Survival curves showed deviations from linearity in the form of a tail (upward concavity). The primary models tested were the Weibull model, the modified Gompertz equation, and the biphasic model. The Weibull model gave the best goodness of fit ( R > 0.956, root mean square error < 0.290) in the modeling and the lowest Akaike information criterion value. Exponential-logistic and exponential decay models, and Bigelow-type and an empirical models for b'( P) and n( P) parameters, respectively, were tested as alternative secondary models. The process validation considered the two- and one-step nonlinear regressions for making predictions of the survival fraction; both regression types provided an adequate goodness of fit and the one-step nonlinear regression clearly reduced fitting errors. The best candidate model according to the Akaike theory information, with better accuracy and more reliable predictions was the Weibull model integrated by the exponential-logistic and exponential decay secondary models as a function of time and pressure (two-step procedure) or incorporated as one equation (one-step procedure). Both mathematical expressions were used to determine the t parameter, where the desired reductions ( 5D) (considering d = 5 ( t) as the criterion of 5 Log reduction (5 D)) in both microorganisms are attainable at 400 MPa for 5.487 ± 0.488 or 5.950 ± 0.329 min, respectively, for the one- or two-step nonlinear procedure.

摘要

在25±2℃的温度下,研究了大肠杆菌ATCC 25922和肠炎沙门氏菌亚种肠炎血清型鼠伤寒沙门氏菌ATCC 14028(鼠伤寒沙门氏菌)在低酸性番荔枝果肉中,于四个压力水平(300、350、400和450兆帕)、不同暴露时间(0 - 8分钟)下的高静压失活动力学。存活曲线呈现出尾部形式的非线性偏差(向上凹)。所测试的主要模型有韦布尔模型、修正的冈珀茨方程和双相模型。韦布尔模型在建模中拟合优度最佳(R>0.956,均方根误差<0.290)且赤池信息准则值最低。分别测试了指数 - 逻辑模型和指数衰减模型,以及用于b'(P)和n(P)参数的比奇洛型模型和经验模型作为替代二级模型。过程验证考虑了用于预测存活分数的两步和一步非线性回归;两种回归类型都提供了足够的拟合优度,且一步非线性回归明显减少了拟合误差。根据赤池理论信息,具有更高准确性和更可靠预测的最佳候选模型是由指数 - 逻辑模型和指数衰减二级模型作为时间和压力的函数整合而成的韦布尔模型(两步法)或合并为一个方程(一步法)。这两种数学表达式都用于确定t参数,对于一步或两步非线性过程,在400兆帕压力下,两种微生物分别达到所需的5对数减少(5D)(将d = 5(t)作为5对数减少(5D)的标准)所需时间分别为5.487±0.488分钟或5.950±0.329分钟。

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