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通过直接落射荧光滤膜技术对食品中的微生物进行快速计数。

Rapid enumeration of microorganisms in foods by the direct epifluorescent filter technique.

作者信息

Pettipher G L, Rodrigues U M

出版信息

Appl Environ Microbiol. 1982 Oct;44(4):809-13. doi: 10.1128/aem.44.4.809-813.1982.

Abstract

Filtration of "stomachered" food suspensions through nylon filters (pore size, 5 microns) removed most of the food debris without affecting the recovery of microorganisms. Two to ten milliliters of these prefiltered suspensions could be filtered in the direct epifluorescent filter technique (DEFT). The technique takes less than 30 min to complete and has a lower sensitivity of less than 60,000 microorganisms per g for all products examined. Vegetative bacterial cells, spores, fungal hyphae, and yeasts could be distinguished with the technique. For fresh meat and fish, the DEFT count of prefiltered suspensions agreed well with the plate count of unfiltered suspensions over the range of 10(4) to 10(10)/g (correlation coefficient of 0.91). For frozen meat and fish and frozen vegetables, the two counting methods had correlation coefficients of 0.87 and 0.66, respectively. The poor correlation for frozen vegetables was due to the inclusion in the DEFT count of nonviable bacteria killed by the blanching process used to inactivate enzymes. Good agreement was obtained between the prefiltered DEFT count and unfiltered plate count for cooked meats, cream doughnut, and whole peppers. Possible reasons for the poor agreement between the DEFT count and plate count for certain products are discussed.

摘要

将“搅拌过的”食物悬浮液通过尼龙滤膜(孔径5微米)进行过滤,可去除大部分食物残渣,且不影响微生物的回收率。两到十毫升的这些预过滤悬浮液可采用直接表面荧光滤膜技术(DEFT)进行过滤。该技术完成时间不到30分钟,对于所有检测产品,其灵敏度较低,每克低于60,000个微生物。利用该技术可区分营养细菌细胞、孢子、真菌菌丝和酵母。对于新鲜肉类和鱼类,预过滤悬浮液的DEFT计数与未过滤悬浮液的平板计数在10⁴至10¹⁰/g范围内吻合良好(相关系数为0.91)。对于冷冻肉类、鱼类和冷冻蔬菜,两种计数方法的相关系数分别为0.87和0.66。冷冻蔬菜相关性较差的原因是,用于灭活酶的热烫过程中杀死的无活力细菌被计入了DEFT计数。预过滤的DEFT计数与熟肉、奶油甜甜圈和整个辣椒的未过滤平板计数之间吻合良好。文中讨论了某些产品DEFT计数与平板计数之间吻合度较差的可能原因。

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本文引用的文献

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Rapid membrane filtration-epifluorescent microscopy technique for direct enumeration of bacteria in raw milk.
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Adherence of bacteria, yeast, blood cells, and latex spheres to large-porosity membrane filters.
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