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前列腺素与电场刺激及5'-三磷酸腺苷诱发的兔逼尿肌收缩的关系。

Prostaglandin involvement in contractions evoked in rabbit detrusor by field stimulation and by adenosine 5'-triphosphate.

作者信息

Downie J W, Larsson C

出版信息

Can J Physiol Pharmacol. 1981 Mar;59(3):253-60. doi: 10.1139/y81-040.

Abstract

Previous reports suggest that in rabbit urinary bladder both noncholinergic nonadrenergic excitatory responses and the contraction produced by adenosine 5'-triphosphate (ATP) are antagonized by indomethacin. We have attempted by further indirect testing on isolated detrusor strips to determine what role prostaglandins (PGs) might play in these processes. The second part of the biphasic contractile response to ATP was reduced to about 30% of control by PG synthesis inhibitors but the initial phase of the ATP response and te contraction produced by the beta, gamma-methylene analogue of ATP were unaffected. At concentrations that did not affect the response to acetylcholine but greatly suppressed the response to arachidonic acid, indomethacin antagonized the contraction evoked by field stimulation by about 30% at 1-2 Hz (largely noncholinergic and nonadrenergic). SC 19220, a putative PG receptor blocker, also produced about 25% reduction in the response to field stimulation but with only about 50% reduction in the response to arachidonic acid, PGE2, or PGF2alpha, SC 19220 also antagonized the frequency-response curve in atropine-treated strips. These findings lead us to suggest that beside maintaining tone and spontaneous activity in the bladder PGs mediate the slow tonic phase of the ATP response and may contribute to facilitatory modulation of noncholinergic nonadrenergic excitatory transmission.

摘要

先前的报道表明,在兔膀胱中,非胆碱能非肾上腺素能兴奋性反应以及由5'-三磷酸腺苷(ATP)产生的收缩均受到吲哚美辛的拮抗。我们试图通过对离体逼尿肌条进行进一步的间接测试,以确定前列腺素(PGs)在这些过程中可能起什么作用。PG合成抑制剂使对ATP双相收缩反应的第二阶段降低至对照的约30%,但ATP反应的初始阶段以及由ATP的β,γ-亚甲基类似物产生的收缩未受影响。在不影响对乙酰胆碱反应但极大地抑制对花生四烯酸反应的浓度下,吲哚美辛在1-2Hz时使场刺激诱发的收缩拮抗约30%(主要是非胆碱能和非肾上腺素能的)。一种假定的PG受体阻滞剂SC 19220也使对场刺激的反应降低约25%,但对花生四烯酸、前列腺素E2或前列腺素F2α的反应仅降低约50%,SC 19220也拮抗阿托品处理条带中的频率-反应曲线。这些发现使我们认为,除了维持膀胱的张力和自发活动外,PGs还介导ATP反应的缓慢强直相,并可能有助于非胆碱能非肾上腺素能兴奋性传递的易化调节。

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