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Modulation of neuromuscular transmission by endogenous and exogenous prostaglandins in the guinea-pig mesenteric artery

机译:豚鼠肠系膜动脉内源性和外源性前列腺素对神经肌肉传递的调节

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摘要

1. At concentrations of 2·8 × 10-8-2·8 × 10-6 M, prostaglandins (PGs; PGE1, PGE2 and PGF2α) had no effect on membrane potential and resistance of smooth muscles of the guinea-pig mesenteric artery. PGs (2·8 × 10-8 M) suppressed the contraction evoked by perivascular nerve stimulation, but did not suppress the contraction evoked by direct muscle stimulation.2. PGs (2·8 × 10-8 M) suppressed the e.j.p.s evoked by repetitive perivascular nerve stimulation but preserved the facilitation process of e.j.p.s evoked by any given stimulus frequency (0·1-1·0 Hz).3. The relationships between e.j.p. amplitudes and [Ca]o plotted on log scales in the presence or absence of PGE2 were not parallel. High concentrations of [Ca]o prevented the inhibitory actions of PGs on the amplitude of e.j.p.s.4. PGE2 did not suppress the activity of nerve fibres contributing to the generation of e.j.p.5. Indomethacin (10-6 M) enhanced the amplitude of e.j.p.s and the frequency of miniature e.j.p.s with no change in the membrane potential and resistance of smooth muscles; these actions of indomethacin were suppressed by PGE2 (2·8 × 10-8 M).6. Phentolamine (10-7 M) enlarged and yohimbine (10-7 M) reduced the amplitude of the first e.j.p. evoked by a train stimulation, but the maximum amplitude of e.j.p., after the facilitation was completed, was in both cases much larger than that observed in the control. The enhancement of the transmission process was also suppressed by PGs (2·8 × 10-8 M).7. The results indicate that in the guinea-pig mesenteric artery, PGs mainly suppress chemical transmitter release from nerve terminals due to interactions with Ca influx, but not due to interaction with presynaptic α-adrenoceptors. Endogenous PG may act as a regulator substance in neuromuscular transmission.
机译:1.在2·8×10 -8 -2·8×10 -6 M浓度下,前列腺素(PGs; PGE1,PGE2和PGF2α)对膜电位和豚鼠肠系膜动脉平滑肌的抵抗力。 PGs(2·8×10 -8 M)抑制血管周围神经刺激引起的收缩,但不抑制直接肌肉刺激引起的收缩。2。 PG(2·8×10 -8 M)抑制了重复性血管周神经刺激引起的ejps,但保留了任何给定刺激频率(0·1-1·0 Hz)引起的ejps的促进过程。 .3。 e.j.p.在存在或不存在PGE 2的情况下,在对数标度上绘制的幅度和[Ca] o不平行。高浓度的Ca 2 O阻止了PG对e.j.p.s.4幅度的抑制作用。 PGE 2不能抑制神经纤维的活性,从而有助于产生e.j.p.5。消炎痛(10 -6 M)增强了e.j.p.s的振幅和微型e.j.p.s的频率,而膜电位和平滑肌的阻力没有变化; PGE2(2·8×10 -8 M)抑制了吲哚美辛的这些作用。6。苯酚胺(10 -7 M)增大,育亨宾(10 -7 M)减小了第一e.j.p的振幅。由火车刺激引起,但在促进完成后,e.j.p。的最大幅度在两种情况下均比对照中观察到的大。 PG(2·8×10 -8 M)也抑制了传输过程的增强。7。结果表明,在豚鼠肠系膜动脉中,PGs主要由于与Ca内流相互作用而抑制神经末梢的化学递质释放,而不是由于与突触前α-肾上腺素受体的相互作用而抑制。内源性PG可在神经肌肉传递中充当调节物质。

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