Julie Nigro,
Narin Osman,
Anthony M. Dart and
Peter J. Little
Cell Biology of Diabetes Laboratory (J.N., N.O., P.J.L.), Baker Heart Research Institute, Melbourne 3181, Australia; Monash University, Departments of Immunology (N.O., P.J.L.) and Medicine (A.M.D., P.J.L.), Central and Eastern Clinical School, Alfred Hospital, Melbourne 3181, Australia; and Alfred Baker Medical Unit (A.M.D., P.J.L.), The Heart Centre, Alfred Hospital, Melbourne 3181, Australia
Correspondence: Address all correspondence and requests for reprints to: A/Prof. Peter J. Little, Head, Cell Biology of Diabetes Laboratory, Baker Heart Research Institute, Courier address: 75 Commercial Road, Prahran, 3181 Melbourne, VIC, Australia; Postal address: St. Kilda Road Central, P.O. Box 6492, Melbourne, VIC 8008, Australia. E-mail: peter.little{at}baker.edu.au
The epidemic of obesity in the developed world over the lasttwo decades is driving a large increase in type 2 diabetes andconsequentially setting the scene for an impending wave of cardiovascularmorbidity and mortality. It is only now being recognized thatthe major antecedent of type 2 diabetes, insulin resistancewith its attendant syndrome, is the major underlying cause ofthe susceptibility to type 2 diabetes and cardiovascular disease.
In metabolic tissues, insulin signaling via the phosphatidylinositol-3-kinasepathway leads to glucose uptake so that in insulin resistancea state of hyperglycemia occurs; other factors such as dyslipidemiaand hypertension also arise. In cardiovascular tissues thereare two pathways of insulin receptor signaling, one that ispredominant in metabolic tissues (mediated by phosphatidylinositol-3-kinase)and another being a growth factor-like pathway (mediated byMAPK); the down-regulation of the former and continued activityof the latter pathway leads to atherosclerosis.
This review addresses the metabolic consequences of the insulinresistance syndrome, its relationship with atherosclerosis,and the impact of insulin resistance on processes of atherosclerosisincluding insulin signaling in cells of the vasculature.
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