Zhou Y P, Grill V E
Department of Endocrinology, Karolinska Hospital, Karolinska Institute, Stockholm, Sweden.
J Clin Invest. 1994 Feb;93(2):870-6. doi: 10.1172/JCI117042.
We tested effects of long-term exposure of pancreatic islets to free fatty acids (FFA) in vitro on B cell function. Islets isolated from male Sprague-Dawley rats were exposed to palmitate (0.125 or 0.25 mM), oleate (0.125 mM), or octanoate (2.0 mM) during culture. Insulin responses were subsequently tested in the absence of FFA. After a 48-h exposure to FFA, insulin secretion during basal glucose (3.3 mM) was several-fold increased. However, during stimulation with 27 mM glucose, secretion was inhibited by 30-50% and proinsulin biosynthesis by 30-40%. Total protein synthesis was similarly affected. Conversely, previous palmitate did not impair alpha-ketoisocaproic acid (5 mM)-induced insulin release. Induction and reversibility of the inhibitory effect on glucose-induced insulin secretion required between 6 and 24 h. Addition of the carnitine palmitoyltransferase I inhibitor etomoxir (1 microM) partially reversed (by > 50%) FFA-associated decrease in secretory as well as proinsulin biosynthetic responses to 27 mM glucose. The inhibitory effect of previous palmitate was similar when co-culture was performed with 5.5, 11, or 27 mM glucose. Exposure to palmitate or oleate reduced the production of 14CO2 from D-[U-14C]glucose, and of 14CO2 from D-[3,4-14C]-glucose, both effects being reversed by etomoxir.
long-term exposure to FFA inhibits glucose-induced insulin secretion and biosynthesis probably through a glucose fatty acid cycle.
我们在体外测试了长期将胰岛暴露于游离脂肪酸(FFA)对B细胞功能的影响。从雄性Sprague-Dawley大鼠分离的胰岛在培养过程中暴露于棕榈酸(0.125或0.25 mM)、油酸(0.125 mM)或辛酸(2.0 mM)。随后在不存在FFA的情况下测试胰岛素反应。在暴露于FFA 48小时后,基础葡萄糖(3.3 mM)期间的胰岛素分泌增加了几倍。然而,在用27 mM葡萄糖刺激期间,分泌受到30 - 50%的抑制,胰岛素原生物合成受到30 - 40%的抑制。总蛋白质合成也受到类似影响。相反,先前的棕榈酸并不损害α-酮异己酸(5 mM)诱导的胰岛素释放。对葡萄糖诱导的胰岛素分泌的抑制作用的诱导和可逆性需要6至24小时。添加肉碱棕榈酰转移酶I抑制剂依托莫昔(1 microM)部分逆转了(超过50%)FFA相关的对27 mM葡萄糖的分泌以及胰岛素原生物合成反应的降低。当与5.5、11或27 mM葡萄糖进行共培养时,先前棕榈酸的抑制作用相似。暴露于棕榈酸或油酸会降低D-[U-14C]葡萄糖产生的14CO2以及D-[3,4-14C]葡萄糖产生的14CO2,这两种作用都被依托莫昔逆转。
长期暴露于FFA可能通过葡萄糖脂肪酸循环抑制葡萄糖诱导的胰岛素分泌和生物合成。