Insulin as a vascular hormone: Implications for the pathophysiology of cardiovascular disease

被引:92
作者
Cleland, SJ [1 ]
Petrie, JR [1 ]
Ueda, S [1 ]
Elliott, HL [1 ]
Connell, JMC [1 ]
机构
[1] Univ Glasgow, Dept Med & Therapeut, Glasgow, Lanark, Scotland
来源
CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY | 1998年 / 25卷 / 3-4期
关键词
blood flow cardiovascular risk; endothelial function; insulin sensitivity;
D O I
10.1111/j.1440-1681.1998.t01-15-.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
1. Metabolic disorders, such as obesity and non-insulin-dependent diabetes mellitus, and cardiovascular disorders, such as essential hypertension, congestive cardiac failure and atherosclerosis, have two features in common, namely relative resistance to insulin-mediated glucose uptake and vascular endothelial dysfunction. 2. Significant increases in limb blood how occur in response to systemic hyperinsulinaemia, although there is marked variation in the results due to a number of confounding factors, including activation of the sympathetic nervous system. Local hyperinsulinaemia has a less marked vasodilator action despite similar plasma concentrations, but this can be augmented by co-infusing D-glucose. 3. Insulin may stimulate endothelial nitric oxide production or may act directly on vascular smooth muscle via stimulation of the Na+-H+ exchanger and Na+/K+-ATPase, leading to hyperpolarization of the cell membrane and consequent closure of voltage-gated Ca2+ channels. 4. There is evidence both for and against the existence of a functional relationship between insulin-mediated glucose uptake (insulin sensitivity) and insulin-mediated vasodilation (which can be regarded as a surrogate measure for endothelial function). 5. If substrate delivery is the rate-limiting step for insulin-mediated glucose uptake (in other words, if skeletal muscle blood how is a determinant of glucose uptake), then endothelial dysfunction, resulting in a relative inability of mediators, including insulin, to stimulate muscle blood flow, may be the underlying mechanism accounting for the association of atherosclerosis and other cardiovascular disorders with insulin resistance. 6. Glucose uptake may determine peripheral blood how via stimulation of ATP-dependent ion pumps with consequent vasorelaxation. 7. A 'third factor' may cause both insulin resistance and endothelial dysfunction in cardiovascular disease. Candidates include skeletal muscle fibre type and capillary density, distribution of adiposity and endogenous corticosteroid production. 8. A complex interaction between endothelial dysfunction, abnormal skeletal muscle blood flow and reduced insulin-mediated glucose uptake may be central to the link between insulin resistance, blood pressure, impaired glucose tolerance and the risk of cardiovascular disease. An understanding of the primary mechanisms resulting in these phenotypes may reveal new therapeutic targets in metabolic and cardiovascular disease.
引用
收藏
页码:175 / 184
页数:10
相关论文
共 120 条
[1]   ASSOCIATION OF LIPOPROTEIN-LIPASE GENE VARIATION WITH THE PHYSIOLOGICAL COMPONENTS OF THE INSULIN-RESISTANCE SYNDROME IN THE POPULATION OF THE SAN-LUIS-VALLEY, COLORADO [J].
AHN, YI ;
FERRELL, RE ;
HAMMAN, RF ;
KAMBOH, MI .
DIABETES CARE, 1993, 16 (11) :1502-1506
[2]   TRAINING INDUCED CHANGES IN SUBGROUPS OF HUMAN TYPE-2 SKELETAL-MUSCLE FIBERS [J].
ANDERSEN, P ;
HENRIKSSON, J .
ACTA PHYSIOLOGICA SCANDINAVICA, 1977, 99 (01) :123-125
[3]   CAPILLARY DENSITY IN SKELETAL-MUSCLE OF MAN [J].
ANDERSEN, P .
ACTA PHYSIOLOGICA SCANDINAVICA, 1975, 95 (02) :203-205
[4]   CAPILLARY SUPPLY OF QUADRICEPS FEMORIS MUSCLE OF MAN - ADAPTIVE RESPONSE TO EXERCISE [J].
ANDERSEN, P ;
HENRIKSSON, J .
JOURNAL OF PHYSIOLOGY-LONDON, 1977, 270 (03) :677-&
[5]   HYPERINSULINEMIA PRODUCES BOTH SYMPATHETIC NEURAL ACTIVATION AND VASODILATION IN NORMAL HUMANS [J].
ANDERSON, EA ;
HOFFMAN, RP ;
BALON, TW ;
SINKEY, CA ;
MARK, AL .
JOURNAL OF CLINICAL INVESTIGATION, 1991, 87 (06) :2246-2252
[6]   EFFECT OF INSULIN ON CARBOHYDRATE METABOLISM AND ON POTASSIUM IN FOREARM OF MAN [J].
ANDRES, R ;
ZIERLER, KL ;
BALTZAN, MA ;
CADER, G .
JOURNAL OF CLINICAL INVESTIGATION, 1962, 41 (01) :108-&
[7]   In vivo effect of insulin on intracellular calcium concentrations: Relation to insulin resistance [J].
Baldi, S ;
Natali, A ;
Buzzigoli, G ;
Galvan, AQ ;
Sironi, AM ;
Ferrannini, E .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1996, 45 (11) :1402-1407
[8]   INSULIN-MEDIATED SKELETAL-MUSCLE VASODILATION CONTRIBUTES TO BOTH INSULIN SENSITIVITY AND RESPONSIVENESS IN LEAN HUMANS [J].
BARON, AD ;
STEINBERG, HO ;
CHAKER, H ;
LEAMING, R ;
JOHNSON, A ;
BRECHTEL, G .
JOURNAL OF CLINICAL INVESTIGATION, 1995, 96 (02) :786-792
[9]   MECHANISM OF INSULIN RESISTANCE IN INSULIN-DEPENDENT DIABETES-MELLITUS - A MAJOR ROLE FOR REDUCED SKELETAL-MUSCLE BLOOD-FLOW [J].
BARON, AD ;
LAAKSO, M ;
BRECHTEL, G ;
EDELMAN, SV .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1991, 73 (03) :637-643
[10]   HEMODYNAMIC ACTIONS OF INSULIN [J].
BARON, AD .
AMERICAN JOURNAL OF PHYSIOLOGY, 1994, 267 (02) :E187-E202