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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Biophysical and pharmacological characterization of voltage-sensitive calcium currents in neonatal rat inferior colliculus neurons.
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Biophysical and pharmacological characterization of voltage-sensitive calcium currents in neonatal rat inferior colliculus neurons.

机译:新生大鼠下丘神经元中电压敏感钙电流的生物物理和药理学表征。

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摘要

Calcium conductances have been found in neonatal inferior colliculus neurons, however the biophysical and pharmacological profiles of the underlying calcium currents have not yet been characterized. In this study, we examined which types of voltage-activated calcium currents comprise the whole-cell inward current of neonatal inferior colliculus neurons (10-22microm in diameter). On the basis of their voltage-dependence and pharmacological sensitivities, three major components of barium currents were identified. A low threshold voltage-activated current that activated around -70mV, a mid threshold voltage-activated current that activated near -50mV, and a high threshold voltage-activated current that activated around -40mV. Low and mid threshold voltage-activated currents were present in 33% and 41% of the recordings, respectively, whereas high threshold voltage-activated currents were recorded in all inferior colliculus neurons tested. Nickel chloride (50microM) and U-92032 (1microM), which both block low threshold voltage-activated currents, reduced the amplitude of low threshold voltage-activated peak currents at a test potential of -60mV by 72% and 10%, respectively. In addition, 50microM nickel chloride and 1microM U-92032 reduced the amplitude of mid threshold voltage-activated peak currents measured at -20mV by 55% and 21%, respectively. Further pharmacological analysis indicated the presence of multiple types of high threshold voltage-activated currents in neonatal inferior colliculus neurons. The dihydropyridine nimodipine (1microM), a selective L-type current antagonist, reduced the amplitude of high threshold voltage-activated peak currents by 25%. In addition, FPL 64176 (1microM), a non-dihydropyridine L-type current agonist caused a dramatic 534% increase in the amplitude of the slow sustained component of the tail current measured at -40mV. These data indicate that inferior colliculus neurons express L-type channels. omega-Conotoxin GVIA (1microM), a selective blocker of N-type current, inhibited high threshold voltage-activated peak currents by 28% indicating the presence of N-type channels. omega-Agatoxin IVA (300nM), a potent P/Q-type antagonist, reduced high threshold voltage-activated peak currents by 27%, suggesting that inferior colliculus neurons express P/Q-type channels. Concomitant application of nimodipine (1microM), omega-conotoxin GVIA (1microM) and omega-agatoxin IVA (300nM) onto inferior colliculus neurons decreased the control high threshold voltage-activated peak currents only by 62%.Thus, inferior colliculus neurons may express at least one more type of calcium current in addition to low and mid threshold voltage-activated currents and L-type, N-type and P/Q-type high threshold currents.
机译:在新生儿下丘神经元中发现了钙电导,但是尚未对潜在钙电流的生物物理和药理学特性进行表征。在这项研究中,我们检查了哪些类型的电压激活钙电流构成了新生儿下丘神经元(直径为10-22微米)的全细胞内向电流。根据其电压依赖性和药理敏感性,确定了钡电流的三个主要成分。低阈值电压激活电流在-70mV附近激活,中阈值电压激活电流在-50mV附近激活,高阈值电压激活电流在-40mV附近激活。在记录的33%和41%中分别存在低阈值电压激活电流和中阈值电压激活电流,而在所有测试的下丘神经元中都记录了高阈值电压激活电流。氯化镍(50microM)和U-92032(1microM)都阻断了低阈值电压激活电流,它们在-60mV的测试电势下分别降低了低阈值电压激活峰值电流的幅度72%和10%。此外,50microM氯化镍和1microM U-92032将在-20mV下测得的中阈值电压激活峰值电流的幅度分别降低了55%和21%。进一步的药理分析表明,在新生儿下丘神经元中存在多种类型的高阈值电压激活电流。选择性L型电流拮抗剂二氢吡啶尼莫地平(1microM)将高阈值电压激活的峰值电流的幅度降低了25%。此外,非二氢吡啶L型电流激动剂FPL 64176(1microM)导致在-40mV处测得的尾电流缓慢持续成分的幅度急剧增加534%。这些数据表明下丘神经元表达L型通道。 Ω-ConotoxinGVIA(1microM),一种N型电流的选择性阻滞剂,将高阈值电压激活的峰值电流抑制了28%,表明存在N型通道。强大的P / Q型拮抗剂ω-AgatoxinIVA(300nM)将高阈值电压激活的峰值电流降低了27%,表明下丘神经元表达P / Q型通道。在下丘神经元上同时使用尼莫地平(1microM),ω-芋螺毒素GVIA(1microM)和omega-agatoxin IVA(300nM)只能使对照高阈值电压激活峰值电流降低62%。因此,下丘神经元可能在除了低和中阈值电压激活电流以及L型,N型和P / Q型高阈值电流以外,还至少有一种钙电流。

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