Mierlak D, Farb D H
Department of Anatomy and Cell Biology, State University of New York, Health Science Center at Brooklyn 11203.
J Neurosci. 1988 Mar;8(3):814-20. doi: 10.1523/JNEUROSCI.08-03-00814.1988.
Benzodiazepines are neuromodulatory drugs that potentiate GABA-mediated conductance increases. We report the findings of an investigation into the effect of a full benzodiazepine-positive modulator (agonist), chlordiazepoxide (CDPX), on desensitization of the GABA response in chick spinal cord neurons maintained in primary monolayer cell culture. GABA application initially increases cell conductance, which then desensitizes. CDPX increases the apparent rate constant and extent of desensitization for the GABA response. The observed values for rate constant and extent of desensitization in the presence of CDPX are significantly greater than the values predicted for an equivalent peak response to GABA alone. Flunitrazepam, another full positive modulator, also stimulates the rate constant for GABA-induced desensitization. Furthermore, a weak partial benzodiazepine-positive modulator, Ro 15-1788 (an imidazodiazepine) (1) exhibits little or no potentiation of GABA-induced desensitization, and (2) antagonizes the ability of CDPX to stimulate GABA desensitization. The results demonstrate a novel form of neuromodulator action: the stimulation of receptor desensitization that cannot be explained by channel blockade. Thus, benzodiazepine modulators have the capacity to increase GABA receptor desensitization while increasing the peak response to GABA.
苯二氮䓬类药物是神经调节药物,可增强γ-氨基丁酸(GABA)介导的电导增加。我们报告了一项关于全苯二氮䓬类阳性调节剂(激动剂)氯氮䓬(CDPX)对原代单层细胞培养中雏鸡脊髓神经元GABA反应脱敏作用的研究结果。应用GABA最初会增加细胞电导,随后电导会脱敏。CDPX增加了GABA反应的表观速率常数和脱敏程度。在存在CDPX的情况下观察到的速率常数和脱敏程度值显著大于仅对GABA的等效峰值反应所预测的值。另一种全阳性调节剂氟硝西泮也刺激了GABA诱导的脱敏速率常数。此外,一种弱部分苯二氮䓬类阳性调节剂Ro 15-1788(一种咪唑并二氮䓬)(1)对GABA诱导的脱敏几乎没有或没有增强作用,并且(2)拮抗CDPX刺激GABA脱敏的能力。结果证明了一种新型的神经调节作用形式:刺激受体脱敏,这无法用通道阻断来解释。因此,苯二氮䓬类调节剂有能力在增加对GABA的峰值反应的同时增加GABA受体脱敏。