Marcos Begonya, Aymerich Teresa, Monfort Josep M, Garriga Margarita
IRTA, Finca Camps i Armet, E-17121 Monells (Girona), Spain.
Food Microbiol. 2008 Feb;25(1):177-82. doi: 10.1016/j.fm.2007.05.002. Epub 2007 May 31.
The efficiency of combining high-pressure processing (HPP) and active packaging technologies to control Listeria monocytogenes growth during the shelf life of artificially inoculated cooked ham was assessed. Three lots of cooked ham were prepared: control, packaging with alginate films, and packaging with antimicrobial alginate films containing enterocins. After packaging, half of the samples were pressurized. Sliced cooked ham stored at 6 degrees C experienced a quick growth of L. monocytogenes. Both antimicrobial packaging and pressurization delayed the growth of the pathogen. However, at 6 degrees C the combination of antimicrobial packaging and HPP was necessary to achieve a reduction of inoculated levels without recovery during 60 days of storage. Further storage at 6 degrees C of pressurized antimicrobial packed cooked ham resulted in L. monocytogenes levels below the detection limit (day 90). On the other hand, storage at 1 degrees C controlled the growth of the pathogen until day 39 in non-pressurized ham, while antimicrobial packaging and storage at 1 degrees C exerted a bacteriostatic effect for 60 days. All HPP lots stored at 1 degrees C led to counts <100CFU/g at day 60. Similar results were observed when combining both technologies. After a cold chain break no growth of L. monocytogenes was observed in pressurized ham packed with antimicrobial films, showing the efficiency of combining both technologies.
评估了高压处理(HPP)与活性包装技术相结合,在人工接种熟火腿保质期内控制单核细胞增生李斯特氏菌生长的效率。制备了三批熟火腿:对照组、用海藻酸盐薄膜包装的组以及用含有肠菌素的抗菌海藻酸盐薄膜包装的组。包装后,一半样品进行加压处理。在6℃下储存的切片熟火腿中,单核细胞增生李斯特氏菌迅速生长。抗菌包装和加压处理均延迟了该病原体的生长。然而,在6℃时,抗菌包装与HPP相结合对于在60天储存期内实现接种水平的降低且无复苏是必要的。在6℃下进一步储存加压抗菌包装的熟火腿,导致单核细胞增生李斯特氏菌水平在第90天低于检测限。另一方面,在1℃下储存可在非加压火腿中控制病原体生长至第39天,而抗菌包装与在1℃下储存可产生60天的抑菌效果。所有在1℃下储存的HPP批次在第60天时菌数<100CFU/g。两种技术结合使用时观察到类似结果。在冷链中断后,用抗菌薄膜包装的加压火腿中未观察到单核细胞增生李斯特氏菌生长,表明两种技术结合的有效性。