Arachidonic acid actions on functional integrity and attenuation of the negative effects of palmitic acid in a clonal pancreatic β-cell line

被引:48
作者
Keanei, Deirdre C. [1 ,2 ]
Takahashi, Hilton K. [3 ]
Dhayal, Shalinee [4 ]
Morgan, Noel G. [4 ]
Curi, Rui [3 ]
Newsholme, Philip [1 ,2 ]
机构
[1] UCD Conway Inst, UCD Sch Biomol & Biomed Sci, Dublin 4, Ireland
[2] UCD Dublin, UCD Inst Sport & Hlth, Dublin 4, Ireland
[3] Univ Sao Paulo, Inst Biomed Sci, Dept Physiol & Biophys, BR-05508900 Sao Paulo, Brazil
[4] Univ Exeter & Plymouth, Peninsula Coll Med & Dent, Inst Biomed & Clin Sci, Plymouth PL6 8BU, Devon, England
关键词
arachidonic acid; lipotoxicity; palmitic acid; pancreatic beta-cell; reactive oxygen species; Type 2 diabetes mellitus; FREE FATTY-ACIDS; INSULIN-SECRETION; NITRIC-OXIDE; OXIDATIVE STRESS; GLUCOSE TOXICITY; CHAIN-LENGTH; RAT; ISLETS; INHIBITION; RELEASE;
D O I
10.1042/CS20100282
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Chronic exposure of pancreatic beta-cells to saturated non-esterified fatty acids can lead to inhibition of insulin secretion and apoptosis. Several previous studies have demonstrated that saturated fatty acids such as PA (palmitic acid) are detrimental to beta-cell function compared with unsaturated fatty acids. In the present study, we describe the effect of the polyunsaturated AA (arachidonic acid) on the function of the clonal pancreatic beta-cell line BRIN-BD11 and demonstrate AA-dependent attenuation of PA effects. When added to beta-cell incubations at 100 mu M, AA can stimulate cell proliferation and chronic (24 h) basal insulin secretion. Microarray analysis and/or real-time PCR indicated significant AA-dependent up-regulation of genes involved in proliferation and fatty acid metabolism [e.g. Angptl (angiopoietin-like protein 4), Ech1 (peroxisomal Delta(3.5),Delta(2.4)-dienoyl-CoA isomerase), Cox-1 (cyclo-oxygenase-1) and Cox-2, P < 0.05]. Experiments using specific COX and LOX (lipoxygenase) inhibitors demonstrated the importance of COX-1 activity for acute (20 min) stimulation of insulin secretion, suggesting that AA metabolites may be responsible for the insulinotropic effects. Moreover, concomitant incubation of AA with PA dose-dependently attenuated the detrimental effects of the saturated fatty acid, so reducing apoptosis and decreasing parameters of oxidative stress [ROS (reactive oxygen species) and NO levels] while improving the GSH/GSSG ratio. AA decreased the protein expression of iNOS (inducible NO synthase), the p65 subunit of NF-kappa B (nuclear factor kappa B) and the p47 subunit of NADPH oxidase in PA-treated cells. These findings indicate that AA has an important regulatory and protective beta-cell action, which may be beneficial to function and survival in the 'lipotoxic' environment commonly associated with Type 2 diabetes mellitus.
引用
收藏
页码:195 / 206
页数:12
相关论文
共 46 条
[11]   Involvement of oxidative stress in the pathogenesis of diabetes [J].
Kaneto, Hideaki ;
Katakami, Naoto ;
Kawamori, Dan ;
Miyatsuka, Takeshi ;
Sakamoto, Kenya ;
Matsuoka, Taka-Aki ;
Matsuhisa, Munehide ;
Yamasaki, Yoshimitsu .
ANTIOXIDANTS & REDOX SIGNALING, 2007, 9 (03) :355-366
[12]   Saturated and unsaturated (including arachidonic acid) non-esterified fatty acid modulation of insulin secretion from pancreatic β-cells [J].
Keane, Deirdre ;
Newsholme, Philip .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2008, 36 :955-958
[13]   Free fatty acids and Cytokines induce pancreatic β-cell apoptosis by different mechanisms:: Role of nuclear factor-κB and endoplasmic reticulum stress [J].
Kharroubi, I ;
Ladrière, L ;
Cardozo, AK ;
Dogusan, Z ;
Cnop, M ;
Eizirik, DL .
ENDOCRINOLOGY, 2004, 145 (11) :5087-5096
[14]   Prolonged exposure to free fatty acids has cytostatic and pro-apoptotic effects on human pancreatic islets -: Evidence that β-cell death is caspase mediated, partially dependent on ceramide pathway, and Bcl-2 regulated [J].
Lupi, R ;
Dotta, F ;
Marselli, L ;
Del Guerra, S ;
Masini, M ;
Santangelo, C ;
Patané, G ;
Boggi, U ;
Piro, S ;
Anello, M ;
Bergamini, E ;
Mosca, F ;
Di Mario, U ;
Del Prato, S ;
Marchetti, P .
DIABETES, 2002, 51 (05) :1437-1442
[15]   Distinct effects of saturated and monounsaturated fatty acids on β-cell turnover and function [J].
Maedler, K ;
Spinas, GA ;
Dyntar, D ;
Moritz, W ;
Kaiser, N ;
Donath, MY .
DIABETES, 2001, 50 (01) :69-76
[16]   Physiological regulation of the pancreatic β-cell:: functional insights for understanding and therapy of diabetes [J].
McClenaghan, Neville H. .
EXPERIMENTAL PHYSIOLOGY, 2007, 92 (03) :481-496
[17]   Fatty acids, lipotoxicity and insulin secretion [J].
McGarry, JD ;
Dobbins, RL .
DIABETOLOGIA, 1999, 42 (02) :128-138
[18]   Effects of pharmacological inhibition of NADPH oxidase or iNOS on pro-inflammatory cytokine, palmitic acid or H2O2-induced mouse islet or clonal pancreatic β-cell dysfunction [J].
Michalska, Marta ;
Wolf, Gabriele ;
Walther, Reinhard ;
Newsholme, Philip .
BIOSCIENCE REPORTS, 2010, 30 (06) :445-453
[19]   Opinion - Does nitric oxide modulate mitochondrial energy generation and apoptosis? [J].
Moncada, S ;
Erusalimsky, JD .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (03) :214-220
[20]   Diabetes associated cell stress and dysfunction: role of mitochondrial and non-mitochondrial ROS production and activity [J].
Newsholme, P. ;
Haber, E. P. ;
Hirabara, S. M. ;
Rebelato, E. L. O. ;
Procopi, J. ;
Morgan, D. ;
Oliveira-Emilio, H. C. ;
Carpinelli, A. R. ;
Curi, R. .
JOURNAL OF PHYSIOLOGY-LONDON, 2007, 583 (01) :9-24