VIP and acetylcholine: neurotransmitters in esophageal circular smooth muscle
ВИП и ацетилхолин: нейромедиаторы в циркулярном гладкомышечном слое пищевода
1989-09-01
SCID: 54.1/zr88sdax
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AcetylcholineElectrical field stimulationEsophageal circular smooth muscleLower esophageal sphincterVasoactive intestinal polypeptide (VIP)
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Abstract (AI)
Vasoactive intestinal polypeptide (VIP) and acetylcholine were evaluated as possible inhibitory and excitatory neurotransmitters in the cat esophageal circular smooth muscle. Circular muscle strips 2 mm in thickness were obtained from 1 to 3.4 cm above the lower esophageal sphincter and tested in vitro. Muscle strips contracted with bethanechol (10(-5) M) were relaxed by electrical stimulation (0.5-5 Hz) and by VIP (10(-8)-10(-6) M). Relaxation induced by electrical stimulation was blocked by tetrodotoxin, whereas VIP-induced relaxation was not affected. Highly specific VIP antiserum (5%) antagonized both VIP and electrically induced relaxation, and the antagonism was eliminated when the antiserum was neutralized with VIP (10(-6.5) M). Dopamine (10(-4) M) reduced the relaxation induced both by exogenous VIP and by electrical stimulation but did not affect the relaxation caused by sodium nitroprusside (10(-8)-10(-5) M). In untreated strips, physostigmine (10(-10)-10(-8) M) enhanced the off contraction in response to electrical stimulation, whereas atropine caused a dose-dependent reduction with complete abolition at 10(-4) M. These data suggest that in the esophagus inhibition and excitation are mediated by distinct mechanisms: VIP mediates inhibition and acetylcholine is responsible for the off contraction in response to electrical stimulation.
Key Findings
1
Dopamine inhibits VIP-mediated and electrically induced relaxation but does not alter sodium nitroprusside responses, suggesting interference with VIP-related signaling.
2
Esophageal inhibition and excitation are mediated by distinct neurotransmitter mechanisms: VIP mediates inhibition and acetylcholine mediates the off contraction.
3
In cat esophageal circular smooth muscle, electrical stimulation relaxes bethanechol-contracted strips through a tetrodotoxin-sensitive neural mechanism.
4
Physostigmine enhances, whereas atropine abolishes, the electrically evoked off contraction, supporting acetylcholine as the excitatory neurotransmitter.
5
VIP directly induces relaxation, and VIP antiserum antagonizes both exogenous VIP- and electrically induced relaxation, supporting VIP as an inhibitory neurotransmitter.
Research Object
cat esophageal circular smooth muscle
Research Subject
VIP-mediated inhibitory relaxation and acetylcholine-mediated excitatory off contractions in response to electrical stimulation
Publication Details
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1989-09-01
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