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首页> 外文期刊>The Journal of Physiology >The role of prostaglandins in the bradykinin-induced activation of serosal afferents of the rat jejunum in vitro.
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The role of prostaglandins in the bradykinin-induced activation of serosal afferents of the rat jejunum in vitro.

机译:前列腺素在缓激肽诱导的大鼠空肠浆膜传入神经激活中的作用。

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1. This study was performed to elucidate the role of prostaglandins in the action of bradykinin on serosal afferent neurones supplying the rat jejunum. Extracellular recordings of multi-unit activity were made from serosal afferents in isolation, using a novel in vitro preparation. The discharge of single afferents within the multi-unit recording was monitored using waveform discrimination software. 2. All afferents tested were both mechano- and capsaicin sensitive. Application of bradykinin elicited increases in whole nerve discharge in a concentration-dependent manner. The agonist potency estimate (EC50) was 0.62 +/- 0.12 microM and is consistent with an interaction at the B2 receptor subtype. 3. The stimulatory effect of bradykinin on serosal afferents was antagonized by a specific antagonist of the B2 receptor, HOE140. In contrast, a selective B1 receptor antagonist, [des-Arg10]HOE140, had no effect. The IC50 estimate obtained for HOE140 was 1.6 nM and again consistent with an interaction at B2 receptors. 4. The response to a submaximal concentration of bradykinin (1 microM) was significantly reduced to 24.4 +/- 54.9 % of control following blockade of cyclo-oxygenase activity with naproxen (10 microM). The addition of 1 microM prostaglandin E2 (PGE2), in the presence of naproxen, had no direct effect on afferent activity, but fully restored the response to bradykinin in 15 single afferents. 5. In summary, bradykinin stimulates serosal afferents by a direct action on kinin B2 receptors that are present on serosal afferent terminals. The response to bradykinin is dependent on the presence of prostaglandins, particularly PGE2. We suggest that bradykinin has a self-sensitizing action, whereby it stimulates the release of PGE2, which in turn sensitizes the endings of serosal afferent neurones responsive to bradykinin.
机译:1.进行本研究以阐明前列腺素在缓激肽对供应大鼠空肠的浆膜传入神经元的作用中的作用。使用新型的体外制剂,从浆膜传入细胞中分离获得多单位活性的细胞外记录。使用波形判别软件监控多单元记录内的单个传入的放电。 2.所有接受测试的人对机械和辣椒素均敏感。缓激肽的应用引起全神经放电以浓度依赖性方式增加。激动剂效力估计值(EC50)为0.62 +/- 0.12 microM,并且与B2受体亚型的相互作用一致。 3. B2受体的特异性拮抗剂HOE140拮抗了缓激肽对浆膜传入神经的刺激作用。相反,选择性的B1受体拮抗剂[des-Arg10] HOE140没有作用。 HOE140的IC50估计值为1.6 nM,再次与B2受体的相互作用一致。 4.在用萘普生(10 microM)阻断环加氧酶活性后,对次最大浓度的缓激肽(1 microM)的反应显着降低至对照组的24.4 +/- 54.9%。在萘普生存在的情况下,添加1 microM前列腺素E2(PGE2)对传入活性没有直接影响,但在15个单传入中完全恢复了对缓激肽的反应。 5.总的来说,缓激肽通过直接作用于浆膜传入末端的激肽B2受体刺激浆膜传入。对缓激肽的反应取决于前列腺素,特别是PGE2的存在。我们建议缓激肽具有自我致敏作用,从而刺激PGE2的释放,进而使对缓激肽有反应的浆膜传入神经元末端敏感。

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