ElHennawy A A, Wong C T, Kocoshis S A
Department of Pediatrics, Children's Hospital of Pittsburgh, Pennsylvania.
Microbios. 1994;80(322):23-9.
The bile acid deconjugating capacity of Saccharomyces boulardii was tested in isolated culture and in co-culture upon the bile acid metabolizing capacity of Bacteroides fragilis. S. boulardii was grown over 60 h in plain brain heart infusion (BHI) broth and in the presence of either 2 mM glycocholic or glycochenodeoxycholic acid under both aerobic and anaerobic conditions. S. boulardii did not metabolize either glycocholic acid or glycochenodeoxycholic acid. S. boulardii and B. fragilis were grown anaerobically together in BHI broth supplemented with either 0.1 mM glycholic acid or 0.1 mM glycochenodeoxycholic acid. When S. boulardii and B. fragilis were anaerobically co-cultured, S. boulardii did not alter the bile acid metabolism of B. fragilis. Specifically primary and conjugated bile acids decreased over time, while keto bile acids and free bile acids increased. S. boulardii not only fails to metabolize primary conjugated bile acids but it does not enhance or inhibit the bile acid metabolism of B. fragilis when the organisms are co-cultured in anaerobic medium.
在分离培养以及与脆弱拟杆菌共培养的情况下,对布拉酵母菌的胆汁酸去结合能力进行了测试,以研究其对脆弱拟杆菌胆汁酸代谢能力的影响。布拉酵母菌在普通脑心浸液(BHI)肉汤中,以及在有氧和无氧条件下分别于2 mM甘氨胆酸或甘氨鹅脱氧胆酸存在的情况下培养60小时以上。布拉酵母菌既不代谢甘氨胆酸,也不代谢甘氨鹅脱氧胆酸。布拉酵母菌和脆弱拟杆菌在补充有0.1 mM甘胆酸或0.1 mM甘氨鹅脱氧胆酸的BHI肉汤中一起厌氧培养。当布拉酵母菌和脆弱拟杆菌进行厌氧共培养时,布拉酵母菌不会改变脆弱拟杆菌的胆汁酸代谢。具体而言,初级胆汁酸和结合胆汁酸随时间减少,而酮胆汁酸和游离胆汁酸增加。当在厌氧培养基中对这些微生物进行共培养时,布拉酵母菌不仅无法代谢初级结合胆汁酸,而且不会增强或抑制脆弱拟杆菌的胆汁酸代谢。