首页> 美国卫生研究院文献>Journal of Neural Transplantation >Cordycepin Decreases Compound Action Potential Conduction of Frog Sciatic Nerve In Vitro Involving Ca2+-Dependent Mechanisms
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Cordycepin Decreases Compound Action Potential Conduction of Frog Sciatic Nerve In Vitro Involving Ca2+-Dependent Mechanisms

机译:虫草素降低了涉及Ca2 +依赖性机制的青蛙坐骨神经的复合动作电位传导。

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摘要

Cordycepin has been widely used in oriental countries to maintain health and improve physical performance. Compound nerve action potential (CNAP), which is critical in signal conduction in the peripheral nervous system, is necessary to regulate physical performance, including motor system physiological and pathological processes. Therefore, regulatory effects of cordycepin on CNAP conduction should be elucidated. In this study, the conduction ability of CNAP in isolated frog sciatic nerves was investigated. Results revealed that cordycepin significantly decreased CNAP amplitude and conductive velocity in a reversible and concentration-dependent manner. At 50 mg/L cordycepin, CNAP amplitude and conductive velocity decreased by 62.18 ± 8.06% and 57.34% ± 6.14% compared with the control amplitude and conductive velocity, respectively. However, the depressive action of cordycepin on amplitude and conductive velocity was not observed in Ca2+-free medium or in the presence of Ca2+ channel blockers (CdCl2/LaCl3). Pretreatment with L-type Ca2+ channel antagonist (nifedipine/deltiazem) also blocked cordycepin-induced responses; by contrast, T-type and P-type Ca2+ channel antagonists (Ni2+) failed to block such responses. Therefore, cordycepin decreased the conduction ability of CNAP in isolated frog sciatic nerves via L-type Ca2+ channel-dependent mechanism.
机译:虫草素已在东方国家被广泛用于维持健康和改善体能。复合神经动作电位(CNAP)对调节周围神经系统的信号传导至关重要,它是调节身体机能的必要条件,包括运动系统的生理和病理过程。因此,应阐明虫草素对CNAP传导的调节作用。在这项研究中,研究了离体蛙坐骨神经中CNAP的传导能力。结果表明,虫草素以可逆和浓度依赖性方式显着降低CNAP振幅和传导速度。在50μg/ L的虫草素中,CNAP幅度和传导速度分别比对照幅度和传导速度降低了62.18±8.06%和57.34%±6.14%。但是,在无Ca 2 + 的介质中或存在Ca 2 + 通道阻滞剂(CdCl2 / LaCl3)的情况下,未观察到虫草素对振幅和传导速度的抑制作用)。用L型Ca 2 + 通道拮抗剂(硝苯地平/地尔硫卓)预处理也能阻断虫草素引起的反应。相比之下,T型和P型Ca 2 + 通道拮抗剂(Ni 2 + )未能阻止这种反应。因此,虫草素通过L型Ca 2 + 通道依赖性机制降低了离体蛙坐骨神经中CNAP的传导能力。

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