Adipocyte beta-adrenoceptor sensitivity influences plasma lipid levels.
- 1 July 1993
- journal article
- abstracts
- Published by Wolters Kluwer Health in Arteriosclerosis and Thrombosis: A Journal of Vascular Biology
- Vol. 13 (7) , 967-972
- https://doi.org/10.1161/01.atv.13.7.967
Abstract
Catecholamine stimulation of lipolysis through adipocyte beta-adrenoceptors is of major importance for the regulation of lipid mobilization from adipose tissue. The influence of adipocyte beta-receptor sensitivity as assessed by an isoprenaline bioassay on circulating lipid levels was investigated in 46 healthy and drug-free subjects. beta-Receptor sensitivity was inversely related to total plasma triglycerides (r = -.62), very low density lipoprotein cholesterol (VLDL-C) (r = -.56), VLDL triglycerides (r = -.52), and apolipoprotein B (r = -.41). These relationships remained significant after adjustment for age, sex, body mass index, waist/hip ratio, fat cell volume, and circulating levels of insulin, noradrenaline, and adrenaline. beta-Receptor sensitivity accounted for 40% of the variance in total plasma triglycerides. beta-Receptor subtype sensitivity and binding capacity were also determined in fat cells using terbutaline (beta 2) and dobutamine (beta 1) bioassays and radioligand binding. Multiple regression analysis revealed that terbutaline sensitivity correlated inversely with total plasma triglycerides, apolipoprotein B, VLDL-C, and VLDL triglycerides (partial r from -.56 to -.42), but there was no correlation between dobutamine sensitivity and blood lipids (partial r from .05 to .18) or between receptor binding and blood lipids (partial r from .01 to .28). Thus, the lipolytic beta-receptor sensitivity in fat cells appears to play a hitherto-unrecognized role for lipoprotein metabolism, in particular that of VLDL. This relationship is receptor-subtype specific, particularly involving beta 2-receptors, and seems to be localized to a postreceptor step in lipolysis regulation. Low sensitivity may be of importance for the development of hypertriglyceridemia.Keywords
This publication has 23 references indexed in Scilit:
- Lipolytic catecholamine resistance due to decreased beta 2-adrenoceptor expression in fat cells.Journal of Clinical Investigation, 1992
- Metabolic Effects of Pindolol and Propranolol in a Double-Blind Cross-Over Study in Hypertensive PatientsBlood Pressure, 1992
- Lipoprotein Physiology in Nondiabetic and Diabetic States: Relationship to AtherogenesisDiabetes Care, 1991
- Plasma triglyceride and coronary heart disease.Arteriosclerosis and Thrombosis: A Journal of Vascular Biology, 1991
- Adrenergic regulation of lipolysis in situ at rest and during exercise.Journal of Clinical Investigation, 1990
- Pathophysiology of Hyperlipidemia in Diabetes MellitusJournal of Cardiovascular Pharmacology, 1990
- The Effects of Antihypertensive Drugs on Serum Lipids and LipoproteinsDrugs, 1986
- The triglyceride issue: A view from FraminghamAmerican Heart Journal, 1986
- Fractional fatty acid incorporation into human adipose tissue (FIAT) in hypertriglyceridemiaAtherosclerosis, 1978
- Fatty Acid Incorporation into Human Adipose Tissue in HypertrigiyceridaemiaEuropean Journal of Clinical Investigation, 1976