Lehnen Tatiana Ederich, da Silva Marcondes Ramos, Camacho Augusto, Marcadenti Aline, Lehnen Alexandre Machado
Faculdade Sogipa de Educação Física, Porto Alegre, Brazil ; Instituto de Cardiologia do Rio Grande do Sul, Av. Princesa Isabel, 395 Santana, 90620-001 Porto Alegre, RS Brazil.
Instituto de Cardiologia/Fundação Universitária de Cardiologia (IC/FUC), Porto Alegre, Brazil.
J Int Soc Sports Nutr. 2015 Sep 17;12:36. doi: 10.1186/s12970-015-0097-4. eCollection 2015.
Conjugated linoleic acid (CLA) is highly found in fats from ruminants and it appears to favorably modify the body composition and cardiometabolic risk factors. The capacity of CLA to reduce the body fat levels as well as its benefic actions on glycemic profile, atherosclerosis and cancer has already been proved in experimental models. Furthermore, CLA supplementation may modulate the immune function, help re-synthetize of glycogen and potentiate the bone mineralization. CLA supplementation also could increase the lipolysis and reduce the accumulation of fatty acids on the adipose tissue; the putative mechanisms involved may be its action in reducing the lipase lipoprotein activity and to increase the carnitine-palmitoil-transferase-1 (CAT-1) activity, its interaction with PPARγ, and to raise the expression of UCP-1. Although studies made in human have shown some benefits of CLA supplementation as the weight loss, the results are still discordant. Moreover, some have shown adverse effects, such as negative effects on glucose metabolism and lipid profile. The purpose of this article is to review the available data regarding the benefits of CLA on the energetic metabolism and body composition, emphasizing action mechanisms.
共轭亚油酸(CLA)在反刍动物的脂肪中含量很高,它似乎能有利地改变身体成分和心血管代谢风险因素。CLA降低体脂水平的能力及其对血糖状况、动脉粥样硬化和癌症的有益作用已在实验模型中得到证实。此外,补充CLA可能调节免疫功能、有助于糖原的重新合成并增强骨矿化。补充CLA还可增加脂肪分解并减少脂肪酸在脂肪组织中的积累;其中涉及的假定机制可能是其降低脂蛋白脂肪酶活性和增加肉碱-棕榈酰转移酶-1(CAT-1)活性的作用、与过氧化物酶体增殖物激活受体γ(PPARγ)的相互作用以及提高解偶联蛋白-1(UCP-1)的表达。尽管对人类进行的研究表明补充CLA有一些益处,如减肥,但结果仍不一致。此外,一些研究显示了不良反应,如对葡萄糖代谢和血脂状况的负面影响。本文的目的是综述关于CLA对能量代谢和身体成分益处的现有数据,重点阐述作用机制。