首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The assumed assimilation of cholesterol by Lactobacilli and Bifidobacterium bifidum is due to their bile salt-deconjugating activity.
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The assumed assimilation of cholesterol by Lactobacilli and Bifidobacterium bifidum is due to their bile salt-deconjugating activity.

机译:乳酸杆菌和双歧双歧杆菌假定的胆固醇吸收是由于它们的胆盐解结合活性。

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摘要

To study the mechanism of the propsed assimilation of cholesterol, we cultured various strains of Lactobacillus acidophilus and a Bifidobacterium sp. in the presence of cholesterol and oxgall. During culturing, both cholesterol and bile salts were precipitated. Because of bacterial bile salt deconjugation, no conjugated bile salts were observed in either the culture fluids or the pellets. During incubation, the cell count and optical density decreased. The degree of precipitation of bile salts and of cholesterol was dependent on the culture conditions. If L. acidophilus RP32 was cultured under acidifying conditions, the degree of precipitation of deconjugated bile salts was higher than if the pH was maintained at 6.0. Under acidifying conditions, cholesterol was coprecipitated with the bile salts, whereas in pH-controlled cultures, no coprecipitation of cholesterol was observed. From control experiments with different mixtures of bile salts, it appeared that coprecipitation of cholesterol during culturing was a result of formation of deconjugated bile salts, which have a decreased solubility at pH values lower than 6.0. It is concluded that the removal of cholesterol from the culture medium by L. acidophilus RP32 and other species is not due to bacterial uptake of cholesterol, but results from bacterial bile salt-deconjugating activity.
机译:为了研究胆固醇的同化作用机理,我们培养了各种嗜酸乳杆菌和双歧杆菌。在胆固醇和oxgall的存在下。在培养期间,胆固醇和胆汁盐均沉淀。由于细菌胆汁盐解偶联,在培养液或沉淀物中均未观察到结合的胆汁盐。在孵育过程中,细胞计数和光密度降低。胆汁盐和胆固醇的沉淀程度取决于培养条件。如果在酸化条件下培养嗜酸乳杆菌RP32,则与将pH维持在6.0时相比,去结合的胆汁盐的沉淀度更高。在酸化条件下,胆固醇与胆汁盐共沉淀,而在pH控制的培养物中,未观察到胆固醇的共沉淀。从使用不同胆汁盐混合物的对照实验中可以看出,在培养过程中胆固醇的共沉淀是形成解离的胆汁盐的结果,该解离的胆汁盐在pH值低于6.0时溶解度降低。可以得出结论,嗜酸乳杆菌RP32和其他物种从培养基中去除胆固醇并不是由于细菌吸收胆固醇,而是由于细菌胆盐的去结合活性所致。

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