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首页> 外文期刊>Journal of pharmacological sciences. >Elucidation With the Protease α-Chymotrypsin of the Inhibitory Modulating Action of Endogenous Neuropeptide Y Over Sympathetic Neurotransmission in Rat Vas Deferens
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Elucidation With the Protease α-Chymotrypsin of the Inhibitory Modulating Action of Endogenous Neuropeptide Y Over Sympathetic Neurotransmission in Rat Vas Deferens

机译:蛋白酶α-胰凝乳蛋白酶阐明内源性神经肽Y抑制大鼠输精管中交感神经传递的抑制作用

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References(54) Cited-By(1) The physiological role of endogenous neuropeptide Y (NPY) in sympathetic neurotransmission was examined in rat and guinea pig vas deferens (VD), using α-chymotrypsin (α-CT). NPY-like immunoreactivity was detected in the longitudinal muscle layer of VD densely in rats but sparsely in guinea pigs, and it disappeared following surgical denervation. Under blockade of the prejunctional α2-adrenergic autoinhibition, α-CT potentiated the phasic contraction in rat, but not guinea pig, VD induced by trains of transmural nerve stimulation (TNS) in a frequency-dependent manner, which was reproducible during repeated applications and not affected by pretreatment with capsaicin. In contrast, α-CT did not potentiate the twitch response or contractions induced respectively by a single pulse TNS or by direct electrical stimulation to the smooth muscle. Exogenously applied NPY suppressed the twitch response, which was cancelled by α-CT, and excitatory junction potentials, although it affected neither spontaneous junction potentials nor the direct electrical stimulation-induced contraction. These observations provided further evidence to support that NPY is released endogenously by TNS at high frequency, acting prejunctionally to suppress sympathetic neurotransmission. Thus, the protease α-CT proved itself to be a useful tool to reveal a functional role of endogenously released peptides.
机译:参考文献(54)(1)使用α-胰凝乳蛋白酶(α-CT)检测了大鼠和豚鼠输精管(VD)中内源性神经肽Y(NPY)在交感神经传递中的生理作用。在大鼠的VD的纵向肌肉层中密集地检测到NPY样的免疫反应,而在豚鼠中稀疏地检测到,并且在手术去神经支配后消失。在结膜前α2肾上腺素能自抑制的阻滞下,α-CT增强了大鼠(而非豚鼠)的相收缩,而透壁神经刺激(TNS)诱导的VD呈频率依赖性,可在重复使用和重复使用时重现不受辣椒素预处理的影响。相反,α-CT不能增强分别由单脉冲TNS或直接电刺激平滑肌引起的抽搐反应或收缩。外源施加的NPY抑制了抽搐反应,该反应被α-CT和兴奋性连接电位所抵消,尽管它既不影响自发连接电位也不影响直接电刺激引起的收缩。这些观察结果提供了进一步的证据来支持NPY被TNS内源性地以高频率释放,并起到抑制交感神经传递的作用。因此,蛋白酶α-CT被证明是揭示内源释放肽的功能性作用的有用工具。

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