Virology Laboratory, National Institute of Animal Health, Chatuchak, Bangkok, Thailand.
Department of Animal Husbandry, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, Thailand.
Sci Rep. 2022 Sep 26;12(1):15998. doi: 10.1038/s41598-022-20290-9.
African swine fever virus (ASFV) causes a fatal infectious disease affecting domestic pigs and wild boars. ASFV is highly stable and easily transmitted by consumption of contaminated swine feed and pork products. Heat treatment of feed ingredients is a means to minimize the risk of contamination through swine feed consumption. The objectives of this study were to determine the thermal inactivation of ASFV in non-animal and animal origin feed ingredients. The rate of thermal inactivation is represented by decimal reduction time (D) or time required to reduce ASFV per 1 log at temperature T. The mean D, D, D and D of meat and bone meal (MBM), soybean meal (SBM), and maize grain (MZ) are in the ranges 5.11-6.78, 2.19-3.01, 0.99-2.02, and 0.16-0.99 min, respectively. D is used to compare the heat resistance of ASFV in the feed ingredient matrices. The mean D of ASFV in MBM, SBM and MZ was not statistically significant, and the heat resistance of ASFV in MBM, SBM, and MZ was not different at 60, 70, 80, or 85 °C. The multiple D was used to develop a D model to predict D at various inactivation temperatures. The D models for MBM, SBM, and MZ are log D = - [Formula: see text] + 2.69, log D = - [Formula: see text] + 2.55, and log D = - [Formula: see text] + 4.01. To expand and ease the field applications, a spreadsheet predicting the D and the inactivation time (with 95% confidence interval) from these D models is available to download.
非洲猪瘟病毒(ASFV)可导致对家猪和野猪致命的传染病。ASF 非常稳定,通过食用污染的猪饲料和猪肉产品很容易传播。对饲料成分进行热处理是通过猪饲料消费来降低污染风险的一种手段。本研究的目的是确定非动物和动物来源的饲料成分中 ASFV 的热失活情况。热失活的速度用十进制减少时间(D)或在温度 T 下每减少 1 个对数所需的时间来表示。肉骨粉(MBM)、大豆粉(SBM)和玉米颗粒(MZ)的平均 D、D、D 和 D 分别为 5.11-6.78、2.19-3.01、0.99-2.02 和 0.16-0.99 min。D 用于比较 ASFV 在饲料成分基质中的耐热性。MBM、SBM 和 MZ 中 ASFV 的平均 D 无统计学差异,60、70、80 或 85°C 时,MBM、SBM 和 MZ 中 ASFV 的耐热性无差异。使用多重 D 开发了一个 D 模型,以预测各种失活温度下的 D。MBM、SBM 和 MZ 的 D 模型为 log D = - [公式:见正文] + 2.69、log D = - [公式:见正文] + 2.55 和 log D = - [公式:见正文] + 4.01。为了扩大和简化现场应用,可从这些 D 模型中下载一个预测 D 和失活时间(置信区间为 95%)的电子表格。