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July 1, 1993Journal of Clinical Investigation323 citationsOpen Access

Differential effects of hyperinsulinemia and carbohydrate metabolism on sympathetic nerve activity and muscle blood flow in humans.

PVPéter VollenweiderLTLuc TappyDRD Randin

Structured PICO

Does hyperinsulinemia per se or insulin-induced stimulation of carbohydrate metabolism trigger sympathetic activation and vasodilation in skeletal muscle in healthy humans?

P
Population
6 lean, healthy subjects (mean age 28±4 years, BMI 21.8±0.8 kg/m2), normotensive, normal glucose tolerance, taking no medications, with no evidence of metabolic or cardiovascular disease.
I
Intervention
2-hour infusions of (a) insulin/glucose (hyperinsulinemic euglycemic clamp at 6 pmol/kg per min), (b) exogenous glucose, and (c) exogenous fructose.
C
Comparator
Baseline measurements and comparison between the three different infusion protocols.
O
Outcome
Muscle sympathetic nerve activity (MSNA), calf blood flow, and carbohydrate oxidation rate.surrogate

Hyperinsulinemia per se, rather than insulin-induced stimulation of carbohydrate metabolism, is the primary trigger for sympathetic activation and vasodilation in skeletal muscle in humans.

Limitations

  • Small sample size

Abstract

Euglycemic hyperinsulinemia evokes both sympathetic activation and vasodilation in skeletal muscle, but the mechanism remains unknown. To determine whether insulin per se or insulin-induced stimulation of carbohydrate metabolism is the main excitatory stimulus, we performed, in six healthy lean subjects, simultaneous microneurographic recordings of muscle sympathetic nerve activity, plethysmographic measurements of calf blood flow, and calorimetric determinations of carbohydrate oxidation rate. Measurements were made during 2 h of: (a) insulin/glucose infusion (hyperinsulinemic 6 pmol/kg per min euglycemic clamp), (b) exogenous glucose infusion at a rate matched to that attained during protocol a, and (c) exogenous fructose infusion at the same rate as for glucose infusion in protocol b. For a comparable rise in carbohydrate oxidation, insulin/glucose infusion that resulted in twofold greater increases in plasma insulin concentrations than did glucose infusion alone, evoked twofold greater increases in both muscle sympathetic nerve activity and calf blood flow. Fructose infusion, which increased carbohydrate oxidation comparably, but had only a minor effect on insulinemia, did not stimulate either muscle sympathetic nerve activity or calf blood flow. These observations suggest that in humans hyperinsulinemia per se, rather than insulin-induced stimulation of carbohydrate metabolism, is the main mechanism that triggers both sympathetic activation and vasodilation in skeletal muscle.

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Cite This Study

Vollenweider et al. (1993) studied this question.

synapsesocial.com/papers/6a1ab475382248a45185c1eahttps://doi.org/10.1172/jci116542
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of Insulin and Glucose Infusions on Sympathetic Nervous System Activity in Normal Man1981 · 1,155 citations
  2. 2Kinetics of Insulin-Mediated and Non-Insulin-Mediated Glucose Uptake in Humans1990 · 68 citations
  3. 3Kinetics of In Vivo Muscle Insulin-Mediated Glucose Uptake in Human Obesity1990 · 96 citations
  4. 4Glucose clamp technique: a method for quantifying insulin secretion and resistance.1979 · 7,478 citations
  5. 5Coated Charcoal Immunoassay of Insulin1965 · 2,999 citations