PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 1, 1977Circulation Research177 citationsOpen Access

Inhibition of sympathetic neurotransmission in canine blood vessels by adenosine and adenine nucleotides.

View Full Paper
RVR H VerhaeghePVPaul M. VanhoutteJSJ T Shepherd

Structured PICO

P
Population
Canine blood vessels (saphenous vein and tibial artery strips, and in vivo lateral saphenous vein)
I
Intervention
Adenosine and adenine nucleotides (ATP)
C
Comparator
Exogenous norepinephrine, potassium, tyramine, or unstimulated strips
O
Outcome
Relaxation of blood vessels and efflux of 3H-norepinephrine during nerve stimulationsurrogate

Adenosine and adenine nucleotides inhibit sympathetic neurotransmission in canine blood vessels by reducing norepinephrine release from nerve endings.

Abstract

Adenosine and the adenine nucleotides caused a greater relaxation of strips of canine saphenous vein and tibial artery when they had been contracted by nerve stimulation than by exogenous norepinephrine. An infusion of adenosine into the dogs' lateral saphenous vein, perfused at constant flow, caused a greater relaxation of this vein when constricted by electrical stimulation of the lumbar sympathetic chain than by exogenous norepinephrine. That this difference was due to inhibition by these compounds of the output of neurotransmitter from the sympathetic nerve endings was demonstrated by column chromatographic analysis of the radioactivity in the superfusion fluid of vein strips, previously incubated with tritiated norepinephrine. Both adenosine and adenosine triphosphate (10(-5) M) reduced the efflux of 3H-norepinephrine during nerve stimulation with electrical impulses. Adenosine also reduced the efflux caused by potassium (30 mM), but not that caused by tyramine (6 X 10(-6) M). Theophylline antagonized the inhibitory effect of adenosine on the sympathetic neurotransmission. We found that at 4 X 10(-4) M adenosine triphosphate still caused a decreased efflux of neurotransmitter during electrical stimulation, but with adenosine the 3H-norepinephrine efflux no longer decreased and the overflow of deaminated compounds increased. Furthermore, the same concentration of adenosine increased the efflux of 3H-norepinephrine and deaminated compounds in unstimulated strips, and the increase of 3H-norepinephrine was enhanced after monoamine oxidase inhibition. Thus, we conclude that at higher concentrations adenosine increases the intraneuronal leakage of norepinephrine out of the storage vesicles.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Verhaeghe et al. (1977) studied this question.

synapsesocial.com/papers/6a1a74b7837f1a2c63b8a154https://doi.org/10.1161/01.res.40.2.208
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. 1Sympathetic Vasoconstrictive Responses during Exercise- or Drug-Induced Vasodilatation1968 · 42 citations
  2. 2Inhibition of adrenergic neurotransmission in isolated veins of the dog by potassium ions.1975 · 78 citations
  3. 3Inhibition by Acetylcholine of Adrenergic Neurotransmission in Vascular Smooth Muscle1974 · 116 citations
  4. 4An estimate of adenosine triphosphate release into the venous effluent from exercising human forearm muscle1972 · 160 citations
  5. 5Metabolically linked vasoactive chemicals in local regulation of blood flow.1968 · 276 citations