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嗜酸乳杆菌MG2-1对大鼠血清脂质代谢的影响研究 被引量:2

Study on effect of Lactobacillus acidophilus MG2-1 on serum lipid metabolism in rats
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摘要 利用从蒙古国酸马奶中分离鉴定,并通过耐酸性及体外降胆固醇能力测试筛选获得的L.acidophilusMG2_1菌制备成活菌体和热致死菌体制剂与高脂饲料同时灌喂Wistar系大鼠,研究探讨了对其血清脂质代谢的影响。结果显示,试验第14天时菌活菌体组和热致死菌体组与单纯饲喂高脂饲料对照组比较,对大鼠血清胆固醇浓度的上升分别呈现显著(p<0.05)和极显著的抑制效果(p<0.01),其热致死菌体组大鼠血清HDL_C,显著高于高脂饲料对照组(p<0.05)。并且各试验组大鼠动脉硬化指数均极显著地低于高脂饲料对照组(p<0.01)。热致死菌体组大鼠粪便中总胆汁酸含量也显著高于高脂饲料组(p<0.05)。可见,该菌株具有一定的抑制大鼠血清胆固醇含量上升和预防动脉硬化的作用。但在整个试验期内不改变灌服菌液剂量的情况下,随着试验时间的延长,该菌株对大鼠血清脂质的影响呈减弱趋势。 Wistar rats were fed with a high lipid diet supplemented with living or thermal death bacteria of Lactobacillus acidophilus MG2-1 which was isolated from koumiss in Mongolia and was of good ability of acid tolerance and decreasing the level of cholesterol in vitro. The effect of Lb. acidophilus MG2-1 on the metabolism of serum cholesterol was discussed. It was showed that it was on the 14^th day of experiment that the inhibiting effects of the increase of serum cholesterol level of rat groups fed with living bacteria and heat-killed bacteria was significantly (p 〉 0.05 ) and very significantly (p 〈 0.01) higher than that of the high lipid diet group respectively ; at the same time, the level of serum HDL-C of the thermal death bacteria group was significantly higher than that of the high lipid diet group( p 〈 0.05), also arteriosclerosis index of wistar rats in experimental group is significantly lower than that of the high lipid diet group(p 〈 0.01). The total bile acid level of the thermal death bacteria group in fecal is significantly higher than that of the high lipid diet group (p 〈 0.05). It is suggested that the increase of serum cholesterol level in rats can be inhibited and arteriosclerosis can also be prevented by this strain. During the period of tests, the effect of the strain on serum lipid in rats weaken with the time going, while the dose of bacteria fed was not changed.
出处 《微生物学报》 CAS CSCD 北大核心 2005年第6期865-870,共6页 Acta Microbiologica Sinica
基金 国家自然科学基金项目(30460009)~~
关键词 乳杆菌 血清胆固醇 大鼠 Lactobacillus, Serum cholesterol, Rats
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