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膳食脂肪酸对FFA1和FFA4的活性以及松油酸作为具有抗代谢疾病潜在作用的FFA1/FFA4双重激动剂的特性研究

Activity of dietary fatty acids on FFA1 and FFA4 and characterisation of pinolenic acid as a dual FFA1/FFA4 agonist with potential effect against metabolic diseases.

作者信息

Christiansen Elisabeth, Watterson Kenneth R, Stocker Claire J, Sokol Elena, Jenkins Laura, Simon Katharina, Grundmann Manuel, Petersen Rasmus K, Wargent Edward T, Hudson Brian D, Kostenis Evi, Ejsing Christer S, Cawthorne Michael A, Milligan Graeme, Ulven Trond

机构信息

Department of Physics,Chemistry and Pharmacy, University of Southern Denmark,Campusvej 55,DK-5230Odense M,Denmark.

Molecular Pharmacology Group, Institute of Molecular, Cell and Systems Biology, College of Medical, Veterinary and Life Sciences, University of Glasgow,Glasgow G12 8QQ, Scotland,UK.

出版信息

Br J Nutr. 2015 Jun 14;113(11):1677-88. doi: 10.1017/S000711451500118X. Epub 2015 Apr 28.

Abstract

Various foods are associated with effects against metabolic diseases such as insulin resistance and type 2 diabetes; however, their mechanisms of action are mostly unclear. Fatty acids may contribute by acting as precursors of signalling molecules or by direct activity on receptors. The medium- and long-chain NEFA receptor FFA1 (free fatty acid receptor 1, previously known as GPR40) has been linked to enhancement of glucose-stimulated insulin secretion, whereas FFA4 (free fatty acid receptor 4, previously known as GPR120) has been associated with insulin-sensitising and anti-inflammatory effects, and both receptors are reported to protect pancreatic islets and promote secretion of appetite and glucose-regulating hormones. Hypothesising that FFA1 and FFA4 mediate therapeutic effects of dietary components, we screened a broad selection of NEFA on FFA1 and FFA4 and characterised active compounds in concentration-response curves. Of the screened compounds, pinolenic acid, a constituent of pine nut oil, was identified as a relatively potent and efficacious dual FFA1/FFA4 agonist, and its suitability for further studies was confirmed by additional in vitro characterisation. Pine nut oil and free and esterified pure pinolenic acid were tested in an acute glucose tolerance test in mice. Pine nut oil showed a moderately but significantly improved glucose tolerance compared with maize oil. Pure pinolenic acid or ethyl ester gave robust and highly significant improvements of glucose tolerance. In conclusion, the present results indicate that pinolenic acid is a comparatively potent and efficacious dual FFA1/FFA4 agonist that exerts antidiabetic effects in an acute mouse model. The compound thus deserves attention as a potential active dietary ingredient to prevent or counteract metabolic diseases.

摘要

各种食物与对抗胰岛素抵抗和2型糖尿病等代谢性疾病的作用相关;然而,它们的作用机制大多尚不清楚。脂肪酸可能通过作为信号分子的前体或通过对受体的直接活性发挥作用。中链和长链非酯化脂肪酸受体FFA1(游离脂肪酸受体1,以前称为GPR40)与增强葡萄糖刺激的胰岛素分泌有关,而FFA4(游离脂肪酸受体4,以前称为GPR120)与胰岛素增敏和抗炎作用有关,并且据报道这两种受体都能保护胰岛并促进食欲和葡萄糖调节激素的分泌。假设FFA1和FFA4介导膳食成分的治疗作用,我们在FFA1和FFA4上筛选了多种非酯化脂肪酸,并在浓度-反应曲线中对活性化合物进行了表征。在筛选的化合物中,松子油的成分之一松油酸被鉴定为一种相对强效且有效的双FFA1/FFA4激动剂,通过额外的体外表征证实了其适合进一步研究。在小鼠的急性葡萄糖耐量试验中测试了松子油以及游离和酯化的纯松油酸。与玉米油相比,松子油显示出适度但显著改善的葡萄糖耐量。纯松油酸或乙酯使葡萄糖耐量得到了有力且高度显著的改善。总之,目前的结果表明松油酸是一种相对强效且有效的双FFA1/FFA4激动剂,在急性小鼠模型中发挥抗糖尿病作用。因此,该化合物作为一种潜在的活性膳食成分,值得关注,以预防或对抗代谢性疾病。

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