Suppr超能文献

孤立嗅觉受体细胞的气味反应被氨氯吡脒阻断。

Odorant response of isolated olfactory receptor cells is blocked by amiloride.

作者信息

Frings S, Lindemann B

机构信息

Second Department of Physiology, University of the Saarland, Homburg/Saar, West Germany.

出版信息

J Membr Biol. 1988 Nov;105(3):233-43. doi: 10.1007/BF01871000.

Abstract

Olfactory receptor cells were isolated from the nasal mucosa of Rana esculenta and patch clamped. Best results were obtained with free-floating cells showing ciliary movement. 1) On-cell mode: Current records were obtained for up to 50 min. Under control conditions they showed only occasional action potentials. The odorants cineole, amyl acetate and isobutyl methoxypyrazine were applied in saline by prolonged superfusion. At 500 nanomolar they elicited periodic bursts of current transients arising from cellular action potentials. The response was rapidly, fully and reversibly blocked by 50 microM amiloride added to the odorant solution. With 10 microM amiloride, the response to odorants was only partially abolished. 2) Whole-cell mode: Following breakage of the patch, the odorant response was lost within 5 to 15 min. Prior to this, odorants evoked a series of slow transient depolarizations (0.1/sec, 45 mV peak to peak) which reached threshold and thus elicited the periodic discharge of action potentials. These slow depolarizing waves were reversibly blocked by amiloride, which stabilized the membrane voltage between -80 and -90 mV. We conclude that amiloride inhibits chemosensory transduction of olfactory receptor cells, probably by blocking inward current pathways which open in response to odorants.

摘要

从食用蛙的鼻粘膜中分离出嗅觉受体细胞并进行膜片钳记录。对于显示出纤毛运动的悬浮细胞,可获得最佳结果。1)细胞上模式:可获得长达50分钟的电流记录。在对照条件下,它们仅偶尔出现动作电位。通过长时间灌注,将桉树脑、乙酸戊酯和异丁基甲氧基吡嗪等气味剂应用于盐溶液中。在500纳摩尔浓度时,它们引发了由细胞动作电位引起的周期性电流瞬变爆发。将50微摩尔的氨氯吡咪添加到气味剂溶液中,可迅速、完全且可逆地阻断该反应。使用10微摩尔的氨氯吡咪时,对气味剂的反应仅部分被消除。2)全细胞模式:膜片破裂后,气味剂反应在5至15分钟内消失。在此之前,气味剂引发一系列缓慢的瞬时去极化(0.1/秒,峰峰值45毫伏),达到阈值并因此引发动作电位的周期性发放。这些缓慢的去极化波被氨氯吡咪可逆地阻断,氨氯吡咪将膜电压稳定在-80至-90毫伏之间。我们得出结论,氨氯吡咪可能通过阻断因气味剂而开放的内向电流途径来抑制嗅觉受体细胞的化学感受转导。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验