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细胞培养液和菠菜中塔伦病毒的热失活动力学。

Thermal Inactivation Kinetics of Tulane Virus in Cell-Culture Medium and Spinach.

机构信息

Dept. of Food Science, Univ. of Tennessee, 2605 River Drive, Knoxville, TN 37996, U.S.A.

出版信息

J Food Sci. 2019 Mar;84(3):557-563. doi: 10.1111/1750-3841.14461. Epub 2019 Feb 20.

Abstract

Human noroviruses (HNoVs) cause significant gastrointestinal disease outbreaks worldwide. Tulane virus (TV) is a cultivable HNoV surrogate widely used to determine control measures against HNoVs. The objective of this study was to determine the heat inactivation kinetics (D- and z-values) of TV in cell-culture media and on spiked homogenized spinach using the first-order and Weibull models. TV in cell-culture media at approximately 7 log PFU/mL (PFU-plaque forming unit) in 2-mL glass vials was heated at 52, 54, and 56 °C for up to 10 min in a circulating water bath. Survivors were enumerated using confluent host LLC-MK2 cells in six-well plates by plaque assay. Data from three replicate treatments assayed in duplicate were analyzed statistically. D-values by the first-order model for TV in cell-culture media at 52, 54, and 56 °C were 4.59 ± 0.05, 2.91 ± 0.05, and 1.74 ± 0.07 min, respectively, with a z-value of 9.09 ± 0.01 °C (R  = 0.997). The Weibull model showed t values of 2.53 ± 0.08, 1.99 ± 0.10, and 0.57 ± 0.64 min, respectively, at the same temperatures. The D-values for TV in spinach were 7.94 ± 0.21, 4.09 ± 0.04, and 1.43 ± 0.02 min and the z-value was 10.74 ± 0.01 °C (R  = 0.98) by the first-order model and 4.89 ± 0.02, 3.21 ± 0.45, and 0.25 ± 0.38 min for the Weibull model at 50, 54, and 58 °C, respectively. In comparison to previously reported results for the cultivable HNoV surrogate, murine norovirus -1, TV in cell-culture media and spiked on spinach homogenates showed lower D- and z-values. TV may not be an ideal HNoV surrogate for heat inactivation studies in cell-culture media or homogenized spinach in vacuum bags.

摘要

人类诺如病毒(HNoVs)在全球范围内引起了严重的胃肠道疾病暴发。塔伦病毒(TV)是一种可培养的 HNoV 替代物,广泛用于确定针对 HNoVs 的控制措施。本研究的目的是使用一级和 Weibull 模型确定细胞培养介质中和接种匀浆菠菜中 TV 的热失活动力学(D 和 z 值)。在大约 7 log PFU/mL(PFU-噬菌斑形成单位)的细胞培养介质中,在 52、54 和 56°C 的循环水浴中加热 2 毫升玻璃小瓶中的 TV 长达 10 分钟。通过使用六孔板中的汇合宿主 LLC-MK2 细胞通过噬菌斑测定法对幸存者进行计数。通过一式两份一式三份重复处理的数据分析进行统计学分析。TV 在细胞培养介质中 52、54 和 56°C 的一级模型的 D 值分别为 4.59±0.05、2.91±0.05 和 1.74±0.07 分钟,z 值为 9.09±0.01°C(R=0.997)。Weibull 模型显示,在相同温度下,t 值分别为 2.53±0.08、1.99±0.10 和 0.57±0.64 分钟。TV 在菠菜中的 D 值分别为 7.94±0.21、4.09±0.04 和 1.43±0.02 分钟,一级模型的 z 值为 10.74±0.01°C(R=0.98),50、54 和 58°C 的 Weibull 模型分别为 4.89±0.02、3.21±0.45 和 0.25±0.38 分钟。与以前报道的可培养 HNoV 替代物,鼠诺如病毒-1 的结果相比,细胞培养介质中的 TV 和接种在菠菜匀浆上的 TV 显示出较低的 D 和 z 值。TV 可能不是细胞培养介质或真空包装匀浆菠菜中热失活研究的理想 HNoV 替代物。

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