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共轭亚油酸的分析、合成及代谢是否有助于解释共轭亚油酸的生物学效应?

Might analysis, synthesis and metabolism of CLA contribute to explain the biological effects of CLA?

作者信息

Bretillon L, Sébédio J L, Chardigny J M

机构信息

National Instiute for Research on Agronomgy, Dijon, France.

出版信息

Eur J Med Res. 2003 Aug 20;8(8):363-9.

PMID:12915331
Abstract

Conjugated Linoleic Acids (CLA) are of great interest for analysts since techniques have been developed to determine the dietary occurrence of CLA with a good accuracy. CLA is found in animal products from ruminant sources as the result of biohydrogenation of polyunsaturated fatty acids in the rumen and as the consequence of the delta-9 desaturation of vaccenic acid in animal tissues. CLA can also be obtained in the laboratory by isomerisation of linoleic acid or by total chemical synthesis. While the "natural" isomer is rumenic acid (9c,11t-18:2), synthetic mixtures contain mainly two isomers: the 9c,11t- and the 10t,12c-18:2. Although CLA have been shown to be metabolized into desaturated and chain elongated products, it remains unclear whether these so-formed conjugated metabolites may be involved in the effects of CLA on fatty acid metabolism. Experiments carried out on animal models with CLA have shown different health benefits: anticarcinogenic, antiatherosclerotic effects, modulation of body composition , the "natural" CLA (9c,11t-18:2) being closely related to the protection against cancer and the 10t,12c-18:2 to the reduction of the fat mass. Nevertheless, recent findings have suggested adverse effects in mice. Most of the studies carried out on humans concern the influence of CLA on body composition and its possible inverse association with cancer. Since the results are still controversial and since very few data dealing with the safety of using CLA in long term feeding studies have so far been published, further works are warranted to consider the benefits of CLA for humans.

摘要

共轭亚油酸(CLA)引起了分析人员的极大兴趣,因为已经开发出能够准确测定CLA在饮食中含量的技术。CLA存在于反刍动物来源的动物产品中,这是瘤胃中多不饱和脂肪酸生物氢化以及动物组织中vaccenic酸Δ-9去饱和作用的结果。CLA也可以在实验室中通过亚油酸异构化或全化学合成获得。虽然“天然”异构体是瘤胃酸(9c,11t-18:2),但合成混合物主要包含两种异构体:9c,11t-和10t,12c-18:2。尽管CLA已被证明可代谢为去饱和和链延长产物,但尚不清楚这些如此形成的共轭代谢物是否可能参与CLA对脂肪酸代谢的影响。对使用CLA的动物模型进行的实验显示出不同的健康益处:抗癌、抗动脉粥样硬化作用、调节身体成分,“天然”CLA(9c,11t-18:2)与癌症预防密切相关,而10t,12c-18:2与脂肪量的减少有关。然而,最近的研究结果表明CLA对小鼠有不良影响。大多数针对人类的研究关注CLA对身体成分的影响及其与癌症可能的负相关关系。由于结果仍存在争议,并且迄今为止关于长期喂养研究中使用CLA安全性的非常少的数据已经发表,因此有必要进行进一步的研究以考虑CLA对人类的益处。

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