Response properties of isolated mouse olfactory receptor cells were'/> Response properties of isolated mouse olfactory receptor cells
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Response properties of isolated mouse olfactory receptor cells

机译:离体小鼠嗅觉受体细胞的响应特性

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摘要

class="enumerated" style="list-style-type:decimal">Response properties of isolated mouse olfactory receptor cells were investigated using the suction pipette technique. Cells were exposed to the odour cineole or to solutions of modified ionic content by rapidly changing the solution superfusing the cilia. All experiments were performed at 37°C.Mouse olfactory receptor cells displayed a steep dependence of action potential frequency on stimulus concentration, a 3-fold increase in stimulus concentration often saturating the firing frequency at 200-300 Hz. The receptor current increased more gradually with increasing cineole concentration and did not saturate within the 100-fold range of cineole concentrations applied.When stimulated for 30 s with a low odour concentration, cells responded with sporadic spike firing. Higher concentrations led to the generation of a large receptor current at the onset of stimulation which returned to baseline levels within a few seconds, accompanied during its rising phase by a short burst of action potentials. Thereafter an oscillating response pattern was observed during the remainder of the stimulus, consisting of repetitive increases in receptor current of around 1 s duration accompanied by short bursts of action potentials.Olfactory adaptation was studied by comparing the responses to two closely spaced odour stimuli. The response to the second odour stimulus recovered to 80% of its original magnitude when the cell was superfused with Ringer solution during the 5 s interval between odour exposures. In contrast, exposure to a choline-substituted low Na+ solution between odour stimuli had two effects. First, the receptor current response to the first odour stimulus did not terminate as quickly as in the presence of Na+, suggesting the presence of a Na+-Ca2+ exchanger. Second, the response to the second stimulus only recovered to 55% of its original magnitude, demonstrating the involvement of Na+-Ca2+ exchange in the recovery of sensitivity in mouse olfactory receptor cells following stimulation.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 使用吸管技术研究了分离的小鼠嗅觉受体细胞的响应特性。通过快速改变纤毛的超滤溶液,将细胞暴露于异味桉树脑或离子含量改变的溶液中。所有实验均在37°C下进行。 小鼠嗅觉受体细胞显示出动作电位频率对刺激物浓度的强烈依赖性,刺激物浓度的3倍增加通常会使200-300 Hz的激发频率饱和。受体电流随着桉树脑浓度的增加而逐渐增加,并且在所施加的桉树脑浓度的100倍范围内并未饱和。较高的浓度导致在刺激开始时产生大的受体电流,该电流在几秒钟内恢复到基线水平,在其上升阶段伴随着短暂的动作电位爆发。此后,在其余的刺激过程中观察到振荡的响应模式,包括持续约1 s的受体电流反复增加,伴随着短暂的动作电位爆发。 嗅觉适应性两个紧密间隔的气味刺激。在两次异味暴露之间的5 s间隔内,当细胞与林格溶液融合后,对第二种异味刺激的响应恢复到其原始大小的80%。相反,在气味刺激之间暴露于胆碱取代的低Na + 溶液具有两种作用。首先,对第一个气味刺激的受体电流响应没有像Na + 存在时那样快终止,这表明Na + -Ca 存在2 + 交换器。其次,对第二种刺激的反应仅恢复到其原始大小的55%,表明Na + -Ca 2 + 交换参与了小鼠敏感性的恢复。刺激后产生嗅觉受体细胞。

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