Laboratory of Food Microbiology, Department of Nutrition, Health Sciences Center, Federal University of Paraíba, João Pessoa 58051-900, Brazil.
Can J Microbiol. 2012 Aug;58(8):973-81. doi: 10.1139/w2012-070. Epub 2012 Jul 18.
Listeria monocytogenes has the capability of adapting to 1 or more antimicrobial compounds or procedures applied by the food industry to control the growth and survival of microorganisms in foods. In this study, the effects of Rosmarinus officinalis essential oil (EO) and the related compound 1,8-cineole on the inhibition of the growth and survival of L. monocytogenes ATCC 7644 were determined. The ability of the R. officinalis EO and 1,8-cineole to induce direct and cross-protection of bacteria against various stresses (lactic acid, pH 5.2; NaCl, 3 g/100 mL; high temperature, 45 °C) was also determined. At all concentrations tested (minimum inhibitory concentration (MIC), ½ MIC, and ¼ MIC), both compounds inhibited the cell viability of L. monocytogenes over 120 min of exposure. Overnight exposure of L. monocytogenes to sublethal amounts of either the R. officinalis EO or 1,8-cineole in meat broth revealed no induction of direct or cross-protection against lactic acid, NaCl, or high temperature. Similarly, cells subjected to 24 h cycles of adaptation with increasing amounts (½ MIC to 2× MIC) of the EO and 1,8-cineole showed no increase in direct tolerance, as they were able to survive in growth medium containing up to ½ MIC of either substance. These results show the antimicrobial efficacy of R. officinalis EO and 1,8-cineole for use in systems, particularly as anti-L. monocytogenes compounds.
李斯特菌具有适应食品工业应用的 1 种或多种抗菌化合物或程序的能力,以控制食品中微生物的生长和存活。在这项研究中,测定了迷迭香精油(EO)和相关化合物 1,8-桉叶油醇对李斯特菌 ATCC 7644 生长和存活的抑制作用。还测定了迷迭香精油和 1,8-桉叶油醇诱导细菌对各种应激(乳酸、pH 5.2;NaCl,3 g/100 mL;高温,45°C)的直接和交叉保护能力。在所有测试浓度(最小抑菌浓度(MIC)、1/2 MIC 和 1/4 MIC)下,这两种化合物在暴露 120 分钟以上时均能抑制李斯特菌的细胞活力。在肉汤中,李斯特菌隔夜暴露于迷迭香精油或 1,8-桉叶油醇的亚致死量下,对乳酸、NaCl 或高温均未诱导直接或交叉保护。同样,经过 24 小时的适应循环,细胞接触的精油和 1,8-桉叶油醇的量逐渐增加(1/2 MIC 至 2× MIC),并没有增加直接耐受性,因为它们能够在含有高达 1/2 MIC 任何一种物质的生长培养基中存活。这些结果表明,迷迭香精油和 1,8-桉叶油醇具有作为抗李斯特菌化合物在系统中的抗菌功效。