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August 1, 2003Journal of Applied Physiology171 citations

Nitric oxide synthase inhibition does not alter the reactive hyperemic response in the cutaneous circulation

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BWBrett J. WongBWBrad W. WilkinsLHLacy A. Holowatz

Key Points

  • This study aims to understand the mechanisms of reactive hyperemia in the skin and assess nitric oxide's role in this response.
  • Characterized reactive hyperemia in 10 subjects after varying durations of arterial occlusion using laser-Doppler flowmetry.

Structured PICO

Does NO synthase inhibition with l-NAME alter the reactive hyperemic response in the cutaneous circulation in human subjects?

P
Population
10 human subjects (8 subjects in the NO contribution protocol)
I
Intervention
10 mM NG-nitro-l-arginine methyl ester (l-NAME) continuously perfused via microdialysis fiber in the forearm skin to inhibit NO synthase
C
Comparator
Ringer solution continuously perfused via microdialysis fiber in a control site on the forearm skin
O
Outcome
Total hyperemic response (area under the curve of the hyperemic response minus baseline skin blood flow) after 5-min and 15-min arterial occlusionssurrogate

Nitric oxide does not appear to directly mediate reactive hyperemia or respond to increased shear stress in the cutaneous circulation.

Abstract

Reactive hyperemia is the sudden rise in blood flow after release of an arterial occlusion. Currently, the mechanisms mediating this response in the cutaneous circulation are poorly understood. The purpose of this study was to 1). characterize the reactive hyperemic response in the cutaneous circulation and 2). determine the contribution of nitric oxide (NO) to reactive hyperemia. Using laser-Doppler flowmetry, we characterized reactive hyperemia after 3-, 5-, 10-, and 15-min arterial occlusions in 10 subjects. The total hyperemic response was calculated by taking the area under the curve (AUC) of the hyperemic response minus baseline skin blood flow (SkBF) i.e., total hyperemic response = AUC - [baseline SkBF as %maximal cutaneous vascular conductance (CVC(max) x duration of hyperemic response in s]. For the characterization protocol, the total hyperemic response significantly increased as the period of ischemia increased from 5 to 15 min (P < 0.05). However, the 3-min response was not significantly different from the 5-min response. In the NO contribution protocol, two microdialysis fibers were placed in the forearm skin of eight subjects. One site served as a control and was continuously perfused with Ringer solution. The second site was continuously perfused with 10 mM NG-nitro-l-arginine methyl ester (l-NAME) to inhibit NO synthase. CVC was calculated as flux/mean arterial pressure and normalized to maximal blood flow (28 mM sodium nitroprusside). The total hyperemic response in control sites was not significantly different from l-NAME sites after a 5-min occlusion (3261 +/- 890 vs. 2907 +/- 531% CVC(max. s). Similarly, total hyperemic responses in control sites were not different from l-NAME sites (9155 +/- 1121 vs. 9126 +/- 1088% CVC(max. s) after a 15-min arterial occlusion. These data suggest that NO does not directly mediate reactive hyperemia and that NO is not produced in response to an increase in shear stress in the cutaneous circulation.

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Cite This Study

Wong et al. (2003) studied this question.

synapsesocial.com/papers/6a729fac35aa2c282ce3596bhttps://doi.org/10.1152/japplphysiol.00254.2003
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Also Consider

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

  1. 1Contribution of nitric oxide and prostaglandins to reactive hyperemia in the human forearm1996 · 259 citations
  2. 2Role of nitric oxide in reactive hyperemia in human forearm vessels.1994 · 280 citations
  3. 3Bioactive nitric oxide concentration does not increase during reactive hyperemia in human skin2004 · 67 citations
  4. 4Cutaneous reactive hyperaemia is unaltered by dietary nitrate supplementation in healthy humans2017 · 8 citations
  5. 5The contribution of nitric oxide to exercise hyperemia in the human forearm2002 · 36 citations