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A novel strictly anaerobic recovery and enrichment system incorporating lithium for detection of heat-injured Listeria monocytogenes in pasteurized milk containing background microflora.

机译:一种新颖的严格厌氧回收和富集系统该系统结合了锂用于检测巴氏杀菌牛奶中含有背景菌群的热伤性李斯特菌。

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摘要

Heat-injured cells of Listeria monocytogenes were recovered from heated raw milk containing noninjured Enterococcus faecium by combining a simple method for obtaining strict anaerobiosis with a novel enrichment broth, Penn State University broth (PSU broth). Strictly anaerobic conditions were rapidly achieved by adding 0.5 g of filter-sterilized cysteine per liter to PSU broth and then purging the preparation with N2 gas. Little resuscitation or growth occurred in strictly anaerobic PSU broth without lithium chloride because of overgrowth by E. faecium. The growth of E. faecium decreased dramatically with increasing LiCl concentration; LiCl concentrations of 8 and 10 g/liter were completely bacteriostatic. The mechanism of inhibition by LiCl appeared to involve competition with the divalent cations Ca2+ and Mg2+. Heat-injured L. monocytogenes consistently recovered and grew rapidly in strictly anaerobic PSU broth containing 4, 6, or 7 g of LiCl per liter. The use of strictly anaerobic PSU broth containing 7 g of LiCl per liter permitted detection of severely heat-injured L. monocytogenes in one simple recovery-enrichment step by eliminating oxygen toxicity and inhibiting the growth of background microflora, without preventing the resuscitation and subsequent growth of heat-injured L. monocytogenes. L. monocytogenes heated in raw milk at 62.8 degrees C for 10, 15, and 20 min could be consistently recovered from strictly anaerobic PSU broth enrichment cultures at 30 degrees C after 48, 96, and 144 h, respectively, and hence, use of PSU broth may result in better recovery of both injured and noninjured cells from foods than currently used U.S. Department of Agriculture and Food and Drug Administration preenrichment procedures.
机译:通过将获得严格厌氧菌的简单方法与新型富集肉汤宾夕法尼亚州立大学肉汤(PSU肉汤)相结合,从含有未损伤粪便肠球菌的加热的生乳中回收单核细胞增生李斯特菌的热细胞。通过将每升0.5 g过滤灭菌半胱氨酸添加到PSU肉汤中,然后用N2气体吹扫制剂,可以快速达到严格的厌氧条件。由于粪肠球菌过度生长,在没有氯化锂的严格厌氧的PSU肉汤中几乎没有复苏或生长。粪肠球菌的生长随着LiCl浓度的增加而显着下降。 8和10克/升的LiCl浓度完全具有抑菌作用。 LiCl的抑制机制似乎涉及与二价阳离子Ca2 +和Mg2 +的竞争。受热损伤的单核细胞增生李斯特菌在含有每升4、6或7 g LiCl的严格厌氧的PSU肉汤中持续恢复并迅速生长。使用每升含7 g LiCl的严格厌氧PSU肉汤可以通过消除氧中毒和抑制背景微生物的生长而无需阻止复苏和随后的生长,从而在一个简单的富集回收步骤中检测出严重受热的单核细胞增生李斯特菌。热损伤的单核细胞增生李斯特菌。在原奶中分别于48、96和144 h分别在30°C下严格厌氧的PSU肉汤富集培养物中分别恢复了在62.8℃下加热10、15和20 min的单核细胞增生李斯特菌,因此,使用与目前使用的美国农业部和食品药品监督管理局的预富集程序相比,PSU肉汤可能导致从食物中更好地恢复受伤和未受伤的细胞。

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