Beta-Adrenergic regulation of lipolysis and blood flow in human skeletal muscle in vivo

Hagström-Toft, E.; Enoksson, S.; Moberg, E.; Bolinder, J.; Arner, P.

American Journal of Physiology 275(6): E909-E916

1998


ISSN/ISBN: 0002-9513
PMID: 9843731
Document Number: 487558
Little is known about the regulation of catecholamine-stimulated lipolysis in human skeletal muscle. Therefore, b-adrenergic regulation of lipolysis and blood flow was investigated in healthy subjects in vivo by use of microdialysis of the gastrocnemius muscle. First, during a hypoglycemic, hyperinsulinemic clamp, which induces a lipolytic response in skeletal muscle tissue, the muscle was locally perfused with b-adrenoceptor blocking agents. Perfusion with nonselective (propranolol) and b2-selective (ICI-118551) blocking agents counteracted the hypoglycemia-induced lipolysis (P < 0.01), but perfusion with metoprolol (b1-blocker) did not affect the glycerol response. Second, selective b-adrenoceptor agonists were perfused in situ into skeletal muscle during resting conditions. b2-Adrenoceptor stimulation with terbutaline induced a concentration-dependent increase in skeletal muscle glycerol levels and in tissue blood flow, whereas perfusion with b1- or b3-adrenoceptor agonists (dobutamine or CGP-12177) did not influence the glycerol concentration or blood flow. In conclusion, in skeletal muscle tissue, only the b2-subtype is of importance among b-adrenoceptors for regulation of lipolysis and blood flow. This is in contrast to adipose tissue, where b1- and b3-adrenoceptors are also involved. Reprinted by permission of the publisher.

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