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长期食用乳酸乳球菌菌株对衰老加速小鼠肠道免疫和肠道菌群的影响

Influence of long-term consumption of a Lactococcus lactis strain on the intestinal immunity and intestinal flora of the senescence-accelerated mouse.

作者信息

Kimoto-Nira Hiromi, Mizumachi Koko, Okamoto Takashi, Sasaki Keisuke, Kurisaki Jun-Ichi

机构信息

Functional Biomolecules Research Team, National Institute of Livestock and Grassland Science, Ikenodai 2, Tsukuba, Ibaraki 305-0901, Japan.

出版信息

Br J Nutr. 2009 Jul;102(2):181-5. doi: 10.1017/S0007114508143574.

Abstract

The senescence-accelerated mouse develops normally until 5-6 months of age and then displays rapid and irreversible advancement of senescence manifesting as clinical signs and gross lesions. To clarify the effect of lactic acid bacteria on the physiological changes with increasing age, heat-killed Lactococcus lactis G50 was administered to 1-month-old senescence-accelerated-prone mouse (SAMP)6 mice for 11 months, a senescence-accelerated mouse strain that develops senile osteoporosis. Mice fed G50 gained more weight than the control mice (not fed G50) during the feeding experiment. Faecal IgA levels in the mice fed G50 at 3 months were higher than those of the control mice but decreased to control levels with increasing age. The numbers of viable cells of Bacteroides sp., Lactobacillus sp., Staphylococcus sp., Enterococcus/Streptococcus sp. and Enterobacteriaceae sp. in faeces were similar for mice fed the G50 and control diets at any age, but strain G50 suppressed the intestinal growth of H2S-producing bacteria. Bone density of the thigh bone did not differ between aged G50 and control mice. Strain G50 would be a beneficial bacterium for the enhancement of intestinal immunity during youth and to suppress the growth of harmful intestinal bacteria. The applicability of strain G50 for the food and animal industries has been proposed in the present study.

摘要

衰老加速小鼠在5-6月龄前发育正常,之后则表现出衰老的快速且不可逆进展,表现为临床症状和大体病变。为阐明乳酸菌对衰老过程中生理变化的影响,将热灭活的乳酸乳球菌G50给予1月龄的衰老加速易感小鼠(SAMP)6小鼠,为期11个月,该小鼠品系会发生老年性骨质疏松。在喂养实验期间,喂食G50的小鼠比对照小鼠(未喂食G50)体重增加更多。3月龄时喂食G50的小鼠粪便中IgA水平高于对照小鼠,但随着年龄增长降至对照水平。在任何年龄,喂食G50和对照饮食的小鼠粪便中拟杆菌属、乳杆菌属、葡萄球菌属、肠球菌/链球菌属和肠杆菌科细菌的活菌数相似,但G50菌株抑制了产H2S细菌在肠道中的生长。老年G50小鼠和对照小鼠的大腿骨骨密度没有差异。G50菌株可能是一种有益细菌,可在幼年时增强肠道免疫力并抑制有害肠道细菌的生长。本研究提出了G50菌株在食品和动物行业的适用性。

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