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January 1, 1997Diabetes1,618 citations

Role of Fatty Acids in the Pathogenesis of Insulin Resistance and NIDDM

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GBGuenther Boden

Key Points

  • The review aims to explore how free fatty acids (FFAs) contribute to insulin resistance and the development of non-insulin-dependent diabetes mellitus (NIDDM).
  • Reviewed existing evidence regarding plasma FFA levels in obese individuals and their impact on insulin sensitivity.
  • Examined physiological effects of elevated plasma FFAs on peripheral glucose uptake and insulin secretion.
  • Identified potential mechanisms through which FFAs impair glucose utilization and promote hepatic glucose overproduction.
  • FFAs are elevated in most obese individuals, correlating with increased insulin resistance.
  • Physiologically elevated FFAs inhibit insulin-stimulated glucose uptake in a dose-dependent manner.
  • In predisposed obese individuals, continuously high plasma FFAs may lead to unchecked hepatic glucose production and hyperglycemia.

Abstract

Evidence is reviewed that free fatty acids (FFAs) are one important link between obesity and insulin resistance and NIDDM. First, plasma FFA levels are elevated in most obese subjects. Second, physiological elevations in plasma FFA concentrations inhibit insulin stimulated peripheral glucose uptake in a dose-dependent manner in normal controls and in patients with NIDDM. Two possible mechanisms are identified: 1) a fat-related inhibition of glucose transport or phosphorylation, which appears after 3-4 h of fat infusion, and 2) a decrease in muscle glycogen synthase activity, which appears after 4-6 h of fat infusion. Third, FFAs stimulate insulin secretion in nondiabetic individuals. Some of this insulin is transmitted in the peripheral circulation and is able to compensate for FFA-mediated peripheral insulin resistance. FFA-mediated portal hyperinsulinemia counteracts the stimulation of FFAs on hepatic glucose production (HGP) and thus prevents hepatic glucose overproduction. We speculate that, in obese individuals who are genetically predisposed to develop NIDDM, FFAs will eventually fail to promote insulin secretion. The stimulatory effect of FFAs on HGP would then become unchecked, resulting in hyperglycemia. Hence, continuously elevated levels of plasma FFAs may play a key role in the pathogenesis of NIDDM in predisposed individuals by impairing peripheral glucose utilization and by promoting hepatic glucose overproduction.

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Cite This Study

Guenther Boden (1997) studied this question.

synapsesocial.com/papers/6a082800113ba5b476ddfeedhttps://doi.org/10.2337/diab.46.1.3
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