PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
July 1, 2002Hypertension69 citationsOpen Access

Enhanced Endothelin Activity Prevents Vasodilation to Insulin in Insulin Resistance

View Full Paper
AMAllison W. MillerCTChristina D. TulbertMPMichelle Puskar

Key Points

  • This research aims to uncover the mechanisms behind impaired insulin-mediated vasodilation in insulin resistance.
  • Investigated insulin responses in mesenteric arteries from control and insulin-resistant rats after blocking various receptors and enzymes.

Structured PICO

Does endothelin-A receptor blockade restore insulin-mediated vasodilation in insulin-resistant rats?

P
Population
Control and insulin-resistant rats (small mesenteric arteries)
I
Intervention
Insulin administration, with or without various blockers (endothelin-A receptor antagonist BQ610, cyclooxygenase inhibitors, nitric oxide synthase inhibitor, potassium channel blockers)
C
Comparator
Control rats vs insulin-resistant rats; responses with vs without blockers
O
Outcome
Vasoactive responses (vasodilation) to insulinsurrogate

Impaired vasodilation to insulin in insulin resistance is driven by enhanced endothelin-mediated vasoconstriction, which can be reversed by endothelin-A receptor blockade.

Abstract

Although insulin-mediated vasodilation is impaired in insulin resistance, the mechanisms of this are unknown. We investigated factors mediating vasoactive responses to insulin in control and insulin-resistant rats. Responses to insulin in small mesenteric arteries from control and insulin-resistant rats were investigated after blocking endothelin-A receptors, cyclooxygenase, nitric oxide synthase, and potassium channels. In addition, insulin's effect on prostacyclin production in small mesenteric blood vessels was assessed by enzyme immunoassay. Insulin induced a concentration-dependent vasodilation in control arteries that was absent in arteries from insulin-resistant rats. However, in the presence of BQ610, an endothelin-A receptor antagonist, the response to insulin was normalized in insulin-resistant arteries. In control arteries, insulin-induced vasodilation was completely inhibited by indomethacin, meclofenamate, glibenclamide, or potassium chloride. In contrast, neither n-nitro-L-arginine nor the combination of charybdotoxin and apamin altered vasodilation to insulin. In insulin-resistant arteries in the presence of BQ610, vasodilation was also inhibited by indomethacin, glibenclamide, and potassium chloride. Insulin increased prostacyclin production in small mesenteric blood vessels from both groups of rats to a similar degree. Insulin-induced vasodilation in small rat mesenteric arteries is mediated through prostacyclin- and ATP-dependent potassium channels. However, insulin-resistant arteries do not vasodilate to insulin unless endothelin-A receptors are blocked. Thus, impaired relaxation to insulin in insulin-resistant rats is due to enhanced vasoconstriction by endothelin, which offsets a normal vasodilatory response to insulin.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Miller et al. (2002) studied this question.

synapsesocial.com/papers/6a19b8fc1d4d911c80ea8a56https://doi.org/10.1161/01.hyp.0000022806.87281.62
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1Impaired Endothelium-Mediated Relaxation in Coronary Arteries from Insulin-Resistant Rats 11999 · 73 citations
  2. 2The thiazolidinedione rosiglitazone (BRL-49653) lowers blood pressure and protects against impairment of endothelial function in Zucker fatty rats.1999 · 185 citations
  3. 3Vascular insulin/insulin-like growth factor-1 resistance in female obese Zucker rats2001 · 16 citations
  4. 4Endogenous Insulin Modulates Circulating Endothelin-1 Concentrations in Humans1996 · 54 citations
  5. 5Insulin Sensitivity and Atherosclerosis1996 · 733 citations