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燕麦对 C57BL/6 小鼠胆固醇代谢的多种影响与肝脏胆汁酸生成酶的表达相关。

Diverse effects of oats on cholesterol metabolism in C57BL/6 mice correlate with expression of hepatic bile acid-producing enzymes.

机构信息

Department of Experimental Medical Science, Lund University, BMC D12, 221 84, Lund, Sweden,

出版信息

Eur J Nutr. 2013 Oct;52(7):1755-69. doi: 10.1007/s00394-012-0479-1. Epub 2012 Dec 21.

Abstract

PURPOSE

We previously reported that two substrains of C57BL/6 mice respond differently to oats with respect to reduction in plasma cholesterol. Analysis of this difference might offer clues to mechanisms behind the cholesterol-lowering effect of oats. Here, we address the possible roles of hepatic steroid metabolism and the intestinal microbiota in this respect.

METHODS

Female C57BL/6 mice were fed an atherogenic diet with oat bran (27 %) or control fibres for 4 weeks.

RESULTS

C57BL/6 NCrl mice responded to oat bran with 19 ± 1 % (P < 0.001) lower plasma cholesterol, 40 ± 5% (P < 0.01) higher excretion of bile acids and increased expression of the bile acid-producing hepatic enzymes CYP7A1 and CYP8B1, but none of these effects were found in C57BL/6JBomTac mice. However, on control diet, C57BL/6JBomTac had tenfold higher expression of CYP7A1 and levels of hepatic cholesterol esters than C57BL/6NCrl mice. Plasma levels of fructosamine indicated improved glycemic control by oat bran in C57BL/6NCrl but not in C57BL/6JBomTac. C57BL/6JBomTac had higher intestinal microbiota diversity, but lower numbers of Enterobacteriaceae, Akkermansia and Bacteroides Fragilis than C57BL/6NCrl mice. Oat bran increased bacterial numbers in both substrains. Microbiota diversity was reduced by oats in C57BL/6JBomTac, but unaffected in C57BL/6NCrl.

CONCLUSIONS

Our data do not support a connection between altered microbiota diversity and reduced plasma cholesterol, but the bacterial composition in the intestine may influence the effects of added fibres. The cholesterol-lowering properties of oats involve increased production of bile acids via the classical pathway with up-regulation of CYP7A1 and CYP8B1. Altered cholesterol or bile acid metabolism may interfere with the potential of oats to reduce plasma cholesterol.

摘要

目的

我们之前曾报道,在降低血浆胆固醇方面,两种 C57BL/6 亚系小鼠对燕麦的反应不同。分析这种差异可能为燕麦降低胆固醇作用的机制提供线索。在这里,我们探讨了肝脏固醇代谢和肠道微生物群在这方面的可能作用。

方法

将雌性 C57BL/6 小鼠用含燕麦麸(27%)或对照纤维的动脉粥样硬化饮食喂养 4 周。

结果

C57BL/6 NCrl 小鼠用燕麦麸喂养后,血浆胆固醇降低 19±1%(P<0.001),胆汁酸排泄增加 40±5%(P<0.01),胆汁酸生成的肝酶 CYP7A1 和 CYP8B1 的表达增加,但这些作用在 C57BL/6JBomTac 小鼠中均未发现。然而,在对照饮食中,C57BL/6JBomTac 小鼠的 CYP7A1 表达和肝胆固醇酯水平比 C57BL/6NCrl 小鼠高 10 倍。血浆果糖胺水平表明,燕麦麸改善了 C57BL/6NCrl 但未改善 C57BL/6JBomTac 的血糖控制。C57BL/6JBomTac 小鼠的肠道微生物多样性较高,但肠道内肠杆菌科、阿克曼氏菌和脆弱拟杆菌的数量低于 C57BL/6NCrl 小鼠。燕麦麸增加了两种亚系的细菌数量。在 C57BL/6JBomTac 中,膳食纤维降低了微生物多样性,但在 C57BL/6NCrl 中则不受影响。

结论

我们的数据不支持微生物多样性改变与血浆胆固醇降低之间的联系,但肠道中的细菌组成可能影响添加纤维的作用。燕麦降低胆固醇的特性涉及通过经典途径增加胆汁酸的产生,同时上调 CYP7A1 和 CYP8B1。胆固醇或胆汁酸代谢的改变可能会干扰燕麦降低血浆胆固醇的潜力。

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