Department of Grain Science & Industry, Kansas State University, Manhattan, Kansas 66506, USA.
(ORCID: https://orcid.org/0000-0002-2369-387X [J.D.]).
J Food Prot. 2020 Sep 1;83(9):1505-1511. doi: 10.4315/JFP-20-114.
This study evaluated the antimicrobial effects of medium chain fatty acids (MCFAs) against Salmonella Typhimurium (ATCC 14028) when used on dry dog food kibbles. The MIC of three MCFAs, caproic (C6), caprylic (C8), and capric (C10), was determined using the broth micro- and macrodilution assay technique. Using canola oil as a fat coating, the efficacy of each MCFA was then tested on dry dog food kibbles at 37°C for up to 5 h. The MIC was found to be 0.3125, 0.3125, and 0.625% for C6, C8, and C10, respectively. When the MCFAs were tested on fat-coated dry kibbles, all three MCFAs reduced (P ≤ 0.05) Salmonella levels by >4.5 log after 5 h when the Salmonella recovery from a no-treatment control was ∼6.4 log. At each evaluation time point, the three treatments were effective in reducing (P ≤ 0.05) Salmonella loads. No countable colonies of Salmonella were detected at 4 h when the combination of C6+C8 was used on the kibbles (P ≤ 0.05), whereas with the C6+C10 combination, the Salmonella colonies were not detectable between 2 and 4 h after treatments (P ≤ 0.05). Different combinations of C8 and C10 caused Salmonella to drop to a nondetectable limit (1 CFU/g) between 1 and 5 h after treatment (P ≤ 0.05). This study suggests that the use of MCFAs during kibble coating may mitigate postprocessing Salmonella recontamination on dry dog food kibbles.
本研究评估了中链脂肪酸(MCFAs)在应用于干粮狗食颗粒时对肠炎沙门氏菌(ATCC 14028)的抗菌效果。采用肉汤微量和常量稀释法测定了三种 MCFAs(己酸(C6)、辛酸(C8)和癸酸(C10)的 MIC。然后,使用菜籽油作为脂肪涂层,在 37°C 下将每种 MCFA 的功效测试在干粮狗食颗粒上持续长达 5 小时。结果发现,C6、C8 和 C10 的 MIC 分别为 0.3125%、0.3125%和 0.625%。当 MCFAs 在涂有脂肪的干颗粒上进行测试时,在 5 小时时,所有三种 MCFAs 均可将沙门氏菌水平降低(P≤0.05)>4.5 个对数,而未处理对照组的沙门氏菌恢复量约为 6.4 个对数。在每个评估时间点,三种处理方法均能有效降低(P≤0.05)沙门氏菌负荷。当 C6+C8 组合应用于颗粒时,沙门氏菌在 4 小时时未检出可计数的菌落(P≤0.05),而当使用 C6+C10 组合时,在处理后 2 至 4 小时之间无法检测到沙门氏菌菌落(P≤0.05)。C8 和 C10 的不同组合在处理后 1 至 5 小时内可将沙门氏菌降至无法检测的水平(1 CFU/g)(P≤0.05)。本研究表明,在颗粒涂层过程中使用 MCFAs 可能会减轻干粮狗食颗粒加工后沙门氏菌的再污染。