Ex vivo transcriptional profiling of human pancreatic islets following chronic exposure to monounsaturated fatty acids

被引:35
作者
Bikopoulos, George [3 ]
Pimenta, Aurelio Da Silva [2 ]
Lee, Simon C. [1 ]
Lakey, Jonathan R. [4 ]
Der, Sandy D. [3 ]
Chan, Catherine B. [5 ]
Ceddia, Rolando Bacis [2 ]
Wheeler, Michael B. [1 ]
Rozakis-Adcock, Maria [3 ]
机构
[1] Univ Toronto, Dept Physiol, Toronto, ON M5S 1A8, Canada
[2] York Univ, Sch Kinesiol & Hlth Sci, N York, ON M3J 1P3, Canada
[3] Univ Toronto, Dept Lab Med & Pathobiol, Toronto, ON M5S 1A8, Canada
[4] Univ Alberta Hosp, Dept Transplant Serv, Clin Islet Transplant Program, Edmonton, AB T6G 2C8, Canada
[5] Univ Alberta, Dept Agr Food & Nutr Sci, Edmonton, AB T6G 2E1, Canada
关键词
D O I
10.1677/JOE-07-0174
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The aim of this study was to assess the effects of chronic free fatty acid (FFA) exposure on gene expression and the functional state of human pancreatic islets. Chronic exposure of islets to oleate (OA) resulted in a significant reduction in glucose-stimulated insulin secretion (GSIS) compared with control (466 +/- 82 vs 234 +/- 57 ng/mu g DNA, P < 0.05). OA treatment also led to reduction in total insulin content of the islets (17 609 +/- 3816 vs 10 599 +/- 3876 ng insulin/mu g DNA) and to an increase in the rate of reactive oxygen species (P-OS) generation. Interestingly, the suppressive effects of OA on biosynthesis and secretion of insulin were accompanied by alteration in the expression of 40 genes, as determined by microarray analysis and subsequent qPCR, validation. The majority of genes regulated by OA encoded metabolic enzymes. The expression of enzymes involved in oxidative defense was elevated, indicating a link between ROS generation and antioxidant defense activation. Additionally, pretreatment of human islets with OA led to a significant increase (30%) in the rate of oxidation of this fatty acid and to a significant decrease (75%) in glucose oxidation. Importantly, individual analysis of gene clusters from the islets of all donors revealed the induction of genes involved in inflammation and immunity, which provides further evidence that FFA are risk factors for the development of type 2 diabetes. In summary, our data indicate that chronic exposure of human islets to FFA activates inflammatory and metabolic pathways that lead to oxidative stress, reduced P-cell insulin content, and inhibition of GSIS.
引用
收藏
页码:455 / 464
页数:10
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