首页> 外文期刊>Journal of applied microbiology >Expression of cellular antigens of Listeria monocytogenes that react with monoclonal antibodies C11E9 and EM-7G1 under acid-, salt- or temperature-induced stress environments
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Expression of cellular antigens of Listeria monocytogenes that react with monoclonal antibodies C11E9 and EM-7G1 under acid-, salt- or temperature-induced stress environments

机译:在酸,盐或温度诱导的应激环境下,与单克隆抗体C11E9和EM-7G1反应的单核细胞增生性李斯特菌细胞抗原的表达

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Aims: To study the expression of cellular antigens of Listeria monocytogenes that react with monoclonal antibodies (MAbs) C11E9 and EM-7G1 under acid-, salt- or temperature-induced stress environments. Methods and Results: The reaction patterns of antibodies to L. monocytogenes held in stressful environments for a short duration (3 h) or grown for extended periods (16-72 h) were investigated. During both short or prolonged exposure o stress environments of high temperature (45 ℃) and NaCl (>1.5%, w/v), reactions of whole cells of L. monocytogenes to antibodies were severely affected as determined by ELISA and by the reduced expression of the antibody-reactive 66 kDa antigen in the Western blot assay. Conversely, cold (4-15 ℃) or acid (pH 2-3) stress environments had very little effect on antigen expression or antibody reaction. Additionally, heat-killed cells showed reduced reactions to these antibodies when compared with unheated cells. Artificially created stress environments in hotdog slurry also affected the antigen expression in L. monocytogenes. Immunoelectron microscopy revealed that the antibody-reactive antigens were uniformly present on the surface of the cells. Morphological characteristics following growth in stressed environments revealed that heat stress at 45 ℃ caused L. monocytogenes cells to be elongated and to form clumps; whereas, osmotic stress (5.5% NaCl, w/v) caused filamentous appearance with multiple septa along the length of the cell. Conclusions: These results indicated that MAb C11E9 or EM-7G1 could detect L. monocytogenes from cold or acid-stress environments; however, they may show weaker reactions with heat or osmotically stressed cells or cells grown at 4 ℃. Significance and Impact of the Study: Bacteria in food are routinely subjected to various stresses, induced by cold, heat, salt or acid during processing and storage. Whether stresses would modify the expression of cellular antigens of L. monocytogenes is of a great concern for immunodetections in food products.
机译:目的:研究在酸,盐或温度诱导的应激环境下,与单克隆抗体(MAbs)C11E9和EM-7G1反应的单核细胞增生李斯特菌细胞抗原的表达。方法和结果:研究了在短时(3 h)或长时间(16-72 h)生长的应激环境中抗单核细胞增生李斯特菌抗体的反应模式。在短期或长时间暴露于高温(45℃)和NaCl(> 1.5%,w / v)的胁迫环境中,单核细胞增生李斯特菌全细胞对抗体的反应均受到ELISA和表达降低的影响免疫印迹法检测抗体反应性66 kDa抗原。相反,冷(4-15℃)或酸(pH 2-3)胁迫环境对抗原表达或抗体反应影响很小。另外,与未加热的细胞相比,热杀死的细胞对这些抗体的反应减少。在热狗浆液中人工产生的应激环境也影响单核细胞增生李斯特氏菌的抗原表达。免疫电子显微镜显示,抗体反应性抗原均匀地存在于细胞表面。在压力环境中生长后的形态特征表明,在45℃下的热胁迫导致单核细胞增生李斯特氏菌细胞伸长并形成团块;而渗透压(5.5%NaCl,w / v)导致丝状出现,并沿细胞长度有多个隔片。结论:这些结果表明MAb C11E9或EM-7G1可以检测来自寒冷或酸性环境的单核细胞增生李斯特氏菌。然而,它们可能对热或渗透压细胞或在4℃下生长的细胞显示较弱的反应。研究的意义和影响:食品中的细菌通常在加工和存储过程中会受到冷,热,盐或酸引起的各种压力。压力是否会改变单核细胞增生李斯特氏菌细胞抗原的表达,对于食品中的免疫检测非常重要。

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