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March 1, 1974Circulation Research116 citations

Inhibition by Acetylcholine of Adrenergic Neurotransmission in Vascular Smooth Muscle

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PVPaul M. Vanhoutte

Key Points

  • This study aims to investigate the effects of acetylcholine on adrenergic neurotransmission in vascular smooth muscle.
  • Isolated strips of cutaneous, femoral, mesenteric, and pulmonary arteries and veins were tested for isometric tension at 37°C in an organ bath.

Structured PICO

P
Population
Isolated strips of cutaneous, femoral, mesenteric, pulmonary, and muscle arteries and veins
I
Intervention
Acetylcholine (5 x 10^-10 to 10^-5 g/ml)
C
Comparator
Absence of acetylcholine or presence of atropine
O
Outcome
Changes in isometric tension and total radioactivity released ([3H] norepinephrine)surrogate

The study demonstrates that acetylcholine inhibits adrenergic neurotransmission in vascular smooth muscle, suggesting the presence of both excitatory and inhibitory cholinergic receptors.

Abstract

Changes in the isometric tension of isolated strips of cutaneous, femoral, mesenteric, pulmonary, and muscle arteries and veins were recorded at 37°C in an organ bath. Acetylcholine (5 x 10 -8 and 10 -7 g/ml) caused relaxation of strips from the saphenous veins, the femoral veins, and all of the arteries after contraction by norepinephrine released from nerve terminals by electrical stimulation (2-5 Hz); in the pulmonary and mesenteric veins, acetylcholine caused a further increase in tension. Pulmonary artery and mesenteric vein strips were incubated with 3 H norepinephrine and mounted for superfusion (3 ml/min) and isometric tension recording. Electrical stimulation increased the tension and the total radioactivity released in both preparations. Acetylcholine (2 x 10 -7 g/ml) depressed the contractions of the pulmonary artery strips but augmented those of the mesenteric vein strips; it diminished the efflux of radioactivity in both, indicating that acetylcholine inhibits adrenergic neurotransmission. In the absence of sympathetic stimulation, acetylcholine (5 x 10 -10 -10 -5 g/ml) caused all vein strips to contract; the most common reaction in artery strips was a slight relaxation (at 10 -9 -10 -8 g/ml) followed by a contraction (at 5 x 10 -8 -10 -5 g/ml). During contractions caused by norepinephrine, acetylcholine caused a further increase in tension in vein strips but a relaxation in artery strips. Atropine abolished the effects of acetylcholine. The results of this study suggest the presence in vascular smooth muscle of both excitatory and inhibitory cholinergic receptors.

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Cite This Study

Paul M. Vanhoutte (1974) studied this question.

synapsesocial.com/papers/6a1a74b7837f1a2c63b8a156https://doi.org/10.1161/01.res.34.3.317
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