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Cold response of the bladder in guinea pig: involvement of transient receptor potential channel, TRPM8.

机译:豚鼠膀胱的冷反应:瞬时受体电位通道TRPM8参与。

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OBJECTIVES: To address the physiologic role of TRPM8, one of the transient receptor potential channels, we investigated the bladder cooling reflex and the effect of menthol on it in the guinea pig. METHODS: Single cystometry in female Hartley guinea pigs was performed with high-speed infusion (60 mL/hr) under urethane anesthesia (1 g/kg intraperitoneally). The volume threshold for micturition (VT) and micturition pressure were determined. The distribution of TRPM8 in the S1 dorsal root ganglion (DRG) was also examined by immunostaining. RESULTS: Intravesical infusion of saline containing menthol (0.6 mM) at 38 degrees C markedly decreased the VT and increased micturition pressure. Although cold saline itself (4 degrees C) had little effect on VT or micturition pressure, the VT was significantly decreased in a temperature-dependent manner when the bladder was pretreated with menthol. This decrease in the VT was not observed in animals that received hexamethonium pretreatment (10 mg/kg intravenously), which blocks the spinal reflex, or capsaicin (1 mM intravesically), which causes deafferentation of capsaicin-sensitive C-fiber afferent. Immunohistochemical analysis revealed that TRPM8 is expressed in small-diameter neurons in guinea pig S1 dorsal root ganglions. CONCLUSIONS: The results of our study showed that the bladder cooling reflex is observed in guinea pigs if the animals were pretreated with menthol. This reflex was sensitive to ganglion blockade or capsaicin-sensitive C-fiber deafferentation and might be mediated by C-fiber activation through TRPM8.
机译:目的:为了探讨TRPM8(一种瞬时受体电位通道)的生理作用,我们研究了豚鼠的膀胱冷却反射和薄荷醇对其的影响。方法:在氨基甲酸乙酯麻醉下(腹膜内1 g / kg)以高速输注(60 mL / hr)对雌性Hartley豚鼠进行单次膀胱测压。确定排尿量(VT)和排尿压力的阈值。还通过免疫染色检查了TRPM8在S1背根神经节(DRG)中的分布。结果:38摄氏度膀胱灌注含薄荷醇(0.6 mM)的生理盐水明显降低了室速,并增加了排尿压力。尽管冷盐水本身(4摄氏度)对VT或排尿压力几乎没有影响,但是当用薄荷醇预处理膀胱时,VT以温度依赖的方式显着降低。在接受六甲铵预处理(静脉注射10 mg / kg)的动物中未观察到VT的降低,该动物阻断了脊髓反射或辣椒素(膀胱内1 mM),从而引起对辣椒素敏感的C纤维传入的脱除咖啡因。免疫组织化学分析表明,TRPM8在豚鼠S1背根神经节的小直径神经元中表达。结论:我们的研究结果表明,如果用薄荷醇预处理豚鼠,则可以观察到膀胱冷却反射。这种反射对神经节阻滞或辣椒素敏感的C纤维脱除咖啡因敏感,并可能通过TRPM8激活C纤维介导。

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