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Neurogenic and non-neurogenic responses in the urinary bladder of hibernating hamster

机译:冬眠仓鼠膀胱中的神经源性和非神经源性反应

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摘要

Purinergic and cholinergic components of parasympathetic neurotransmission and contractile responses to exogenous α,β-methylene ATP, acetylcholine, substance K, substance P, calcitonin gene-related peptide, vasoactive intestinal polypeptide and capsaicin have been investigated in the urinary bladder of hibernating hamsters (4 weeks), cold exposed (4 weeks) and age-matched controls.Electrical field stimulation (EFS) evoked increased frequency-dependent contractions in the detrusor strips from hibernating hamsters compared with those obtained from cold-exposed and age-matched animals. Tetrodotoxin (10−6 M) completely blocked the frequency-dependent contractions in all groups.The purinergic component of the parasympathetic neurotransmission was not affected in hibernating and cold-exposed animals while the cholinergic component was increased with respect to age-matched animals. The neurogenic response to EFS, still present after incubation with atropine (10−6 M) and suramin (10−4 M), was attenuated by indomethacin (10−6 M) and blocked by tetrodotoxin (10−6 M).Exogenous administration of α,β-methylene ATP elicited a significantly reduced contraction in strips from hibernating and cold-exposed hamsters relative to age-matched animals. The contractile response to exogenous acetylcholine was greater in the detrusors from hibernating hamsters than in cold-exposed and age-matched animals. Substance K elicited reduced contractions in preparations from hibernating animals compared with cold-exposed and control animals. Calcitonin gene-related peptide, vasoactive intestinal polypeptide, substance P and capsaicin did not elicit any relaxant or contractile response either at resting tone or in carbachol (5×10−7 M)-precontracted tissues.In summary, our findings indicate that 4 weeks of hibernation can significantly increase neurogenic responses in the hamster urinary bladder. This appears to be due to an increase in postjunctional responses to acetylcholine. In contrast, there was a decrease of the postjunctional responses to the parasympathetic cotransmitter ATP and also to the sensory-motor neurotransmitter substance K.
机译:在冬眠仓鼠的膀胱中研究了副交感神经传递的嘌呤能和胆碱能成分以及对外源性α,β-亚甲基ATP,乙酰胆碱,物质K,P物质,降钙素基因相关肽,血管活性肠多肽和辣椒素的收缩反应(4 ),冷暴露(4周)和年龄匹配的对照组。电场刺激(EFS)引起的冬眠仓鼠逼尿肌条带的频率依赖性收缩比冷暴露和年龄匹配的动物要高。河豚毒素(10-6 M)完全阻断了所有组的频率依赖性收缩。副交感神经传递的嘌呤能成分在冬眠和冷暴露的动物中不受影响,而胆碱能成分相对于年龄匹配的动物则增加。在与阿托品(10-6 M)和苏拉明(10-4 M)孵育后仍然存在的对EFS的神经源反应被消炎痛(10-6 M)减弱并被河豚毒素(10-6 M)阻断。相对于年龄相匹配的动物,α,β-亚甲基ATP引起的冬眠和冷暴露仓鼠的条带收缩明显降低。在冬眠仓鼠的逼尿肌中,对外源性乙酰胆碱的收缩反应比在冷暴露和年龄匹配的动物中更大。与冷暴露和对照动物相比,冬眠动物的制剂中K物质引起的收缩减少。降钙素基因相关肽,血管活性肠多肽,P物质和辣椒素在静息状态下或在卡巴胆碱(5×10-7 M)预收缩的组织中均未引起任何松弛或收缩反应。总的来说,我们的发现表明4周冬眠可以显着增加仓鼠膀胱的神经源性反应。这似乎是由于连接后对乙酰胆碱的反应增加。相反,交感神经对副交感神经递质ATP以及对感觉运动神经递质K的反应后减少。

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