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Diabetes, Vol 42, Issue 6 833-842, Copyright © 1993 by American Diabetes Association
Effects of acute hyperinsulinemia on VLDL triglyceride and VLDL apoB production in normal weight and obese individuals
GF Lewis, KD Uffelman, LW Szeto and G Steiner
Department of Medicine, University of Toronto, Ontario, Canada.
The effects of short-term hyperinsulinemia on the production of both VLDL
triglyceride and VLDL apoB were determined semiquantitatively before and
during a 6-h euglycemic hyperinsulinemic clamp (40 mU.m-2 x min-1) in 17
women (8 chronically hyperinsulinemic obese, BMI = 35.7 kg/m2; 9 normal
weight, BMI = 22.5 kg/m2). During acute hyperinsulinemia, plasma FFA
decreased by approximately 95% within 1 h in both groups. VLDL triglyceride
production decreased 66% in the control subjects (P = 0.0003) and 67% in
obese subjects (P = 0.0003). ApoB production decreased 53% in control
subjects (P = 0.03) but only 8% in obese (NS). Plasma triglycerides
decreased by 40% from baseline in control subjects (P < 0.0001) but only
by 10% in obese subjects (P = NS). Despite the similar decrease in
triglyceride and apoB production in control subjects, VLDL particle size
(triglyceride-to-apoB ratio) decreased with hyperinsulinemia (P = 0.003).
In obese subjects, despite a decrease in triglyceride production similar to
that in control subjects but no change in apoB production, VLDL size did
not change appreciably. Acute hyperinsulinemia in humans: 1) suppresses
plasma FFA equally in control and obese subjects at this high dose of
insulin; 2) inhibits VLDL triglyceride production equally in control and
obese subjects, perhaps secondary to the decrease in FFA; 3) inhibits VLDL
apoB production in control but less so in obese subjects, suggesting that
obese subjects may be resistant to this effect of insulin; 4) decreases
plasma triglyceride and VLDL particle size in control subjects, reflecting
either stimulation of LPL activity or a greater relative decrease in
triglyceride to apoB production; and 5) does not decrease plasma
triglyceride or VLDL size in obese subjects to the same extent as it does
in control subjects. Thus, the insulin resistance of obesity affects some
but not all aspects of VLDL metabolism.

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L. Karjalainen, J. Pihlajamaki, P. Karhapaa, and M. Laakso
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Copyright © 1993 by the American Diabetes Association.
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