Bolsoni-Lopes Andressa, Festuccia William T, Chimin Patricia, Farias Talita S M, Torres-Leal Francisco L, Cruz Maysa M, Andrade Paula B, Hirabara Sandro M, Lima Fabio B, Alonso-Vale Maria Isabel C
Department of Biological Sciences, Institute of Environmental Sciences, Chemical and Pharmaceutical, Federal University of Sao Paulo, 210, Sao Nicolau St,, Diadema 09913-030, Brazil.
Lipids Health Dis. 2014 Dec 20;13:199. doi: 10.1186/1476-511X-13-199.
Palmitoleic acid was previously shown to improve glucose homeostasis by reducing hepatic glucose production and by enhancing insulin-stimulated glucose uptake in skeletal muscle. Herein we tested the hypothesis that palmitoleic acid positively modulates glucose uptake and metabolism in adipocytes.
For this, both differentiated 3 T3-L1 cells treated with either palmitoleic acid (16:1n7, 200 μM) or palmitic acid (16:0, 200 μM) for 24 h and primary adipocytes from mice treated with 16:1n7 (300 mg/kg/day) or oleic acid (18:1n9, 300 mg/kg/day) by gavage for 10 days were evaluated for glucose uptake, oxidation, conversion to lactate and incorporation into fatty acids and glycerol components of TAG along with the activity and expression of lipogenic enzymes.
Treatment of adipocytes with palmitoleic, but not oleic (in vivo) or palmitic (in vitro) acids, increased basal and insulin-stimulated glucose uptake and GLUT4 mRNA levels and protein content. Along with uptake, palmitoleic acid enhanced glucose oxidation (aerobic glycolysis), conversion to lactate (anaerobic glycolysis) and incorporation into glycerol-TAG, but reduced de novo fatty acid synthesis from glucose and acetate and the activity of lipogenic enzymes glucose 6-phosphate dehydrogenase and ATP-citrate lyase. Importantly, palmitoleic acid induction of adipocyte glucose uptake and metabolism were associated with AMPK activation as evidenced by the increased protein content of phospho(p)Thr172AMPKα, but no changes in pSer473Akt and pThr308Akt. Importantly, such increase in GLUT4 content induced by 16:1n7, was prevented by pharmacological inhibition of AMPK with compound C.
In conclusion, palmitoleic acid increases glucose uptake and the GLUT4 content in association with AMPK activation.
此前研究表明,棕榈油酸可通过减少肝脏葡萄糖生成以及增强胰岛素刺激的骨骼肌葡萄糖摄取来改善葡萄糖稳态。在此,我们检验了棕榈油酸对脂肪细胞葡萄糖摄取和代谢具有正向调节作用这一假说。
为此,对用棕榈油酸(16:1n7,200μM)或棕榈酸(16:0,200μM)处理24小时的分化3T3-L1细胞,以及通过灌胃给予16:1n7(300mg/kg/天)或油酸(18:1n9,300mg/kg/天)处理10天的小鼠原代脂肪细胞,评估其葡萄糖摄取、氧化、转化为乳酸以及掺入TAG的脂肪酸和甘油成分的情况,同时评估生脂酶的活性和表达。
用棕榈油酸而非油酸(体内)或棕榈酸(体外)处理脂肪细胞,可增加基础和胰岛素刺激的葡萄糖摄取以及GLUT4 mRNA水平和蛋白质含量。除摄取外,棕榈油酸还增强了葡萄糖氧化(有氧糖酵解)、转化为乳酸(无氧糖酵解)以及掺入甘油-TAG,但减少了葡萄糖和乙酸从头合成脂肪酸以及生脂酶葡萄糖6-磷酸脱氢酶和ATP-柠檬酸裂解酶的活性。重要的是,棕榈油酸诱导脂肪细胞葡萄糖摄取和代谢与AMPK激活相关,磷酸化(p)Thr172AMPKα蛋白含量增加证明了这一点,但pSer473Akt和pThr308Akt无变化。重要的是,用化合物C药理学抑制AMPK可阻止16:1n7诱导的GLUT4含量增加。
总之,棕榈油酸与AMPK激活相关,可增加葡萄糖摄取和GLUT4含量。