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Rapid and Effective Method for Separation of Staphylococcus aureus from Somatic Cells in Mastitis Milk

机译:快速有效的乳腺炎乳中体细胞分离金黄色葡萄球菌的方法

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Quantitative PCR can be an effective method for identifying the bacteria causing mastitis. However, PCR detection is hampered by the presence of inflammatory somatic cells. To eliminate this problem, we attempted to establish methods that allow the effective separation of bacterial cells from somatic cells in mastitis milk with amino-silica. Somatic cells and Staphylococcus aureus cells have different sizes, surface structures, and overall electrical charges; therefore, their adsorption and desorption behavior on amino-silica was also different. We found that although amino-silica could efficiently adsorb both somatic cells and Staph. aureus, somatic cells were adsorbed much more strongly than bacterial cells. We identified conditions under which most of the somatic cells adsorbed and only Staph. aureus desorbed from amino-silica upon addition of a desorption solution. We demonstrated that this procedure effectively eliminated somatic cells in heavily contaminated milk samples, which resulted in improved clarity of the PCR band. These results indicate that pretreatment of the samples with amino-silica made the PCR-based strategy for identifying and quantifying disease-causing bacteria applicable for all milk samples.
机译:定量PCR可能是鉴定引起乳腺炎的细菌的有效方法。然而,炎性体细胞的存在阻碍了PCR检测。为消除此问题,我们尝试建立一些方法,以使乳腺炎乳中的细菌细胞与体细胞有效地分离,并使用氨基二氧化硅。体细胞和金黄色葡萄球菌细胞具有不同的大小,表面结构和总电荷。因此,它们在氨基二氧化硅上的吸附和解吸行为也不同。我们发现,尽管氨基二氧化硅可以有效地吸收体细胞和葡萄球菌。在金黄色葡萄球菌中,体细胞的吸收比细菌细胞强得多。我们确定了大多数体细胞仅吸附葡萄球菌的条件。加入解吸溶液后,金黄色葡萄球菌从氨基二氧化硅解吸。我们证明了该程序可以有效消除严重污染的牛奶样品中的体细胞,从而提高了PCR条带的清晰度。这些结果表明,用氨基二氧化硅对样品进行预处理使基于PCR的策略可以鉴定和定量适用于所有牛奶样品的致病细菌。

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