Fat cell metabolism: Insulin, fatty acids, and renin

被引:16
作者
Cassis L.A. [1 ]
机构
[1] College of Pharmacy, University of Kentucky, Lexington, KY 40536-0082, Rose Street
关键词
Adipose Tissue; Brown Adipose Tissue; White Adipose Tissue; Adipocyte Differentiation; Angiotensinogen;
D O I
10.1007/s11906-000-0072-5
中图分类号
学科分类号
摘要
Risk factors contributing to the potential inter-relationship between obesity and hypertension include insulin, fatty acids, and angiotensin II. All of these mediators are either produced by or act on adipocytes, influence fat cell metabolism, and have effects on the cardiovascular system. Moreover, these three mediators have several potential sites for positive feedback interaction, thus exacerbating the influence of any single risk factor. The purpose of this review is to highlight recent advances in our understanding of the influence of insulin, fatty acids, and angiotensin II on fat cell metabolism. Special emphasis is placed on potential adipose-related mechanisms of these factors, which would predictably elevate blood pressure. Given the prevalence of obesity and hypertension in the American population, delineation of potential pharmacologic targets that would influence both of these disease states is of primary importance to the successful treatment of these diseases of the metabolic syndrome X. Copyright © 2000 by Current Science Inc.
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页码:132 / 138
页数:6
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共 51 条
[1]  
Bray G.A., Health hazards of obesity, Endocrinol Metab Clin North Am, 25, pp. 907-919, (1996)
[2]  
Jensen M.D., Haymond M.W., Rizza R.A., Et al., Influence of body fat distribution on free fatty acid metabolism in obesity, J Clin Invest, 83, pp. 1168-1173, (1989)
[3]  
Jones J.P., Dohm G.L., Regulation of glucose transporter GLUT-4 and hexokinase II gene transcription by insulin and epinephrine, Am J Physiol, 273, (1997)
[4]  
Cornelius P., MacDougald O.A., Lane M.D., Regulation of adipocyte development, Annu Rev Nutr, 14, pp. 99-129, (1994)
[5]  
Braissant O., Foufelle F., Scotto C., Et al., Differential expression of peroxisome proliferator-activated receptors (PPARs): Tissue distribution of PPAR-alpha, -beta, and -gamma in the adult rat, Endocrinology, 137, pp. 354-366, (1996)
[6]  
Freytag S.O., Paielli D.L., Gilbert J.D., Ectopic expression of the CCAAT-enhancer-binding protein alpha promotes the adipogenic program in a variety of mouse fibroblastic cells, Genes Dev, 8, pp. 1654-1663, (1994)
[7]  
Lin F.T., Lane M.D., CCAAT-enhancer binding protein alpha is sufficient to initiate the 3T3-L1 adipocyte differentiation program, Proc Natl Acad Sci USA, 91, pp. 8757-8761, (1994)
[8]  
Hu E., Tontonoz P., Spiegelman B.M., Transdifferentiation of myoblasts by the adipogenic transcription factors PPAR gamma and C/EBP alpha, Proc Natl Acad Sci USA, 92, pp. 9856-9860, (1995)
[9]  
Yeh W.C., Cao Z., Classon M., McKnight S.L., Cascade regulation of terminal adipocyte differentiation by three members of the C/EBP family of leucine zipper proteins, Genes Dev, 9, pp. 168-181, (1995)
[10]  
Tanaka T., Yoshida N., Kishimoto T., Akira S., Defective adipocyte differentiation in mice lacking the C/EBP and C/EBP gene, EMBO J, 16, pp. 7432-7443, (1997)