豚鼠膀胱中5-羟色胺受体,特别是5-HT4受体。

Akira Yoshida, Yasuko S-Yamashita, Muneshige Kaibara, Kohtaro Taniyama, Nobuyuki Tanaka
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引用次数: 12

摘要

采用体外受体放射自显影法、机械活性测定和乙酰胆碱释放测定等方法,研究了豚鼠膀胱5-羟色胺(5-羟色胺,5-HT)受体特别是5-HT4受体的功能。特异的[125I]SB207710结合位点均匀分布于整个膀胱。5-HT (3 × 10(-8)-10(-4) M)以浓度依赖的方式引起膀胱条的收缩。酮色林对5-HT诱导的收缩有拮抗作用,格拉司琼和SB204070对高浓度5-HT诱导的收缩有拮抗作用。阿托品抑制高浓度5-羟色胺引起的收缩。在阿托品存在的情况下,克坦色林可以阻止5- ht诱导的收缩,而格拉司琼和SB204070对这种情况下的收缩没有影响。5- ht可增强预载[3H]胆碱条的[3H]乙酰胆碱流出电刺激(5hz, 0.5 ms),且可被granisetron和SB204070拮抗。因此,对5-HT的收缩反应是通过激活5-HT2、5-HT3和5-HT4受体介导的。5-HT2受体可能是位于平滑肌细胞上的对5-HT具有高亲和力的特性。5-HT4和5-HT3受体可能是5-HT低亲和力的特性,位于胆碱能神经元上。
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5-Hydroxytryptamine receptors, especially the 5-HT4 receptor, in guinea pig urinary bladder.

The function of 5-hydroxytryptamine (5-HT) receptors, especially the 5-HT4 receptor, in the urinary bladder were examined in preparations isolated from the guinea pig by in vitro receptor autoradiography and determinations of mechanical activity and acetylcholine (ACh) release. Specific [125I]SB207710 binding sites were detected evenly throughout the urinary bladder. 5-HT (3 x 10(-8)-10(-4) M) caused contractions of strips of the urinary bladder, in a concentration dependent manner. Ketanserin antagonized the 5-HT-induced contractions, while granisetron and SB204070 antagonized the contractions induced by high concentrations of 5-HT. Atropine inhibited the contractions induced by high concentrations of 5-HT. Ketanserin prevented the 5-HT-induced contractions in the presence of atropine, but granisetron and SB204070 did not affect the contractions under such a condition. 5-HT enhanced the electrically-stimulated (5 Hz, 0.5 ms) outflow of [3H]acetylcholine from strips preloaded with [3H]choline, and the enhancement was antagonized by granisetron and SB204070. Thus, the contractile response to 5-HT was mediated by activations of 5-HT2, 5-HT3 and 5-HT4 receptors. The 5-HT2 receptor may be a property of high affinity to 5-HT and located on the smooth muscle cells. The 5-HT4 as well as 5-HT3 receptor may be a property of low affinity to 5-HT and located on the cholinergic neurons.

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