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豚鼠大脑皮层中肾上腺素能受体的性质:一项微量离子电泳研究。

The nature of adrenoceptors in the guinea pig cerebral cortex: a microiontophoretic study.

作者信息

Stone T W, Taylor D A

出版信息

Can J Physiol Pharmacol. 1977 Dec;55(6):1400-4. doi: 10.1139/y77-189.

Abstract
  1. Noradrenaline, isoprenaline, and phenylephrine have been applied my microiontophoresis to neurones in the guinea pig cerebral cortex. All three compounds produced depression of neuronal firing, and all could be antagonized to some extent by phentolamine or propranolol. 2. The responses to isoprenaline were substantially reduced in size after a few applications. Noradrenaline and phenylephrine responses were partially reduced at the time of isoprenaline insensitivity, and the responses could now be blocked completely by phentolamine. 3. The results suggest that two kinds of receptors are present in the guinea pig cerebral cortex, with properties similar to alpha and beta receptors in the periphery. A single receptor with intermediate properties would not readily explain the present results. 4. The results are not consistent with the proposal that alpha receptors mediate neuronal excitation, and beta receptors inhibition in the cerebral cortex. 5. It is also suggested that the failure of some previous studies on guinea pig cortex in vitro to demonstrate the presence of beta receptors may be due to the particularly rapid desensitization of these receptors.
摘要
  1. 去甲肾上腺素、异丙肾上腺素和苯肾上腺素已通过微离子透入法作用于豚鼠大脑皮层的神经元。这三种化合物均能抑制神经元放电,且在某种程度上均可被酚妥拉明或普萘洛尔拮抗。2. 几次应用后,对异丙肾上腺素的反应幅度大幅降低。在对异丙肾上腺素不敏感时,去甲肾上腺素和苯肾上腺素的反应部分降低,此时酚妥拉明可完全阻断这些反应。3. 结果表明,豚鼠大脑皮层存在两种受体,其特性与外周的α和β受体相似。具有中间特性的单一受体难以解释目前的结果。4. 这些结果与α受体介导大脑皮层神经元兴奋而β受体介导抑制的观点不一致。5. 还表明,之前一些关于豚鼠离体皮层的研究未能证明β受体的存在,可能是由于这些受体特别容易快速脱敏。

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