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Effects of (+)-pentazocine and 1,3-di-o-tolylguanidine (DTG), sigma (σ) ligands, on micturition in anaesthetized rats

机译:(+)喷他佐辛和1,3-二邻甲苯基胍(DTG),σ(σ)配体对麻醉大鼠排尿的影响

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摘要

The effects of two sigma (σ) binding site ligands, (+)-pentazocine and 1,3-di-o-tolylguanidine (DTG), on bladder functions were examined in rats.Cystometry using urethane-anaesthetized rats showed that (+)-pentazocine (1–5 mg kg−1, i.v.) and DTG (1–5 mg kg−1, i.v.) prolonged micturition intervals, indicating increased bladder capacity and raised the threshold pressure.The effects of (+)-pentazocine (2 mg kg−1, i.v.) on micturition were not influenced by naloxone (0.5 mg kg−1, i.v.), which antagonized similar effects of morphine (2 mg kg−1, i.v.).When administered intracerebroventricularly (i.c.v.), DTG (1 μg) and (+)-pentazocine (30 μg) prolonged micturition intervals with increased threshold pressure on the cystometrogram.In isolated bladder detrusor strips of rats, (+)-pentazocine (3 μM) and DTG (1 μM) did not affect contractile responses to electrical field stimulation. A higher concentration of DTG (3 μM) slightly suppressed the response induced by 30 Hz stimulation.The effects of (+)-pentazocine and DTG on micturition were abolished by pre-treatment with pertussis toxin (PTX, 1 μg, i.c.v.).These results indicate that typical σ ligands, such as (+)-pentazocine and DTG, increase bladder capacity in anaesthetized rats. Moreover, the mechanism by which σ ligands change the urinary storage properties in rats may involve pathways in which the function of Gi/o proteins is necessary.
机译:在大鼠中检查了两个西格玛(σ)结合位点配体(+)-喷他佐辛和1,3-二-邻甲苯基胍(DTG)对膀胱功能的影响。尿烷麻醉的大鼠的膀胱测压表明,(+) -pentazocine(1-5 mg mgkg-1,iv)和DTG(1-5 mgkgkg-1,iv)延长排尿间隔,表明膀胱容量增加,阈值压力增加。(+)-pentazocine(2) mg kg-1,iv)对排尿的影响不受纳洛酮(0.5 mg kg-1,iv)的影响,纳洛酮拮抗吗啡的类似作用(2 mg kg-1,iv)。当以脑室内(icv)给药时,DTG(1 (μg)和(+)-喷他佐辛(30μg)延长排尿间隔,并增加膀胱收缩压阈值。在大鼠离体膀胱逼尿肌条中,(+)-喷他佐辛(3μM)和DTG(1μM)不会影响收缩对电场刺激的反应。较高浓度的DTG(3μm)略微抑制了30 Hz刺激引起的反应。通过百日咳毒素(PTX,1μg,icv)预处理消除了(+)-喷他佐辛和DTG对排尿的影响。结果表明,典型的σ配体,例如(+)-戊唑嗪和DTG,可增加麻醉大鼠的膀胱容量。此外,σ配体改变大鼠尿液储存特性的机制可能涉及需要Gi / o蛋白功能的途径。

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