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成年大鼠离体颈动脉体化学感受细胞离子电流的特性:缺氧的影响。

Properties of ionic currents from isolated adult rat carotid body chemoreceptor cells: effect of hypoxia.

作者信息

López-López J R, González C, Pérez-García M T

机构信息

Departamento de Bioquímica y Biología Molecular y Fisiología, Facultad de Medicina, Universidad de Valladolid, Spain.

出版信息

J Physiol. 1997 Mar 1;499 ( Pt 2)(Pt 2):429-41. doi: 10.1113/jphysiol.1997.sp021939.

Abstract
  1. The electrical properties of chemoreceptor cells from neonatal rat and adult rabbit carotid bodies (CBs) are strikingly different. These differences have been suggested to be developmental and/or species related. To distinguish between the two possibilities, the whole-cell configuration of the patch-clamp technique was used to characterize the ionic currents present in isolated chemoreceptor cells from adult rat CBs. Since hypoxia-induced inhibition of O2-sensitive K+ currents is considered a crucial step in O2 chemoreception, the effect of hypoxia on the adult rat chemoreceptor cell currents was also studied. 2. Outward currents were carried mainly by K+, and two different components could be distinguished: a Ca(2+)-dependent K+ current (IK(Ca)) sensitive to Cd2+ and charybdotoxin (CTX), and a Ca(2+)-insensitive, voltage-dependent K+ current (IK(V)). IK(V) showed a slow voltage-dependent activation (time constant (tau) of 87.4 ms at -20 mV and 8.8 ms at +60 mV) and a very slow inactivation, described by the sum of two exponentials (tau 1 = 684 +/- 150 ms and tau 2 = 4.96 +/- 0.76 s at + 30 mV), that was almost voltage insensitive. The kinetic and pharmacological properties of IK(V) are typical of a delayed rectifier K+ channel. 3. Voltage-dependent Ca2+ currents (ICa) were present in nineteen of twenty-seven cells. TTX-sensitive Na+ currents were also observed in about 10% of the cells. 4. Low PO2 (< 10 mmHg) reduced the whole outward current amplitude by 22.17 +/- 1.96% (n = 27) at +20 mV. This effect was absent in the presence of Cd2+. Since low PO2 did not affect ICa, we conclude that hypoxia selectively blocks IK(Ca). 5. The properties of the currents recorded in adult rat chemoreceptor cells, including the specific inhibition of IK(Ca) by hypoxia, are similar to those reported in neonatal rat CB cells, implying that the differences between rat and rabbit chemoreceptor cells are species related.
摘要
  1. 新生大鼠和成年兔颈动脉体(CBs)化学感受细胞的电特性显著不同。这些差异被认为与发育和/或物种有关。为了区分这两种可能性,采用膜片钳技术的全细胞模式来表征成年大鼠CBs分离的化学感受细胞中存在的离子电流。由于缺氧诱导的对O2敏感的K+电流的抑制被认为是O2化学感受中的关键步骤,因此还研究了缺氧对成年大鼠化学感受细胞电流的影响。2. 外向电流主要由K+携带,可以区分出两种不同的成分:对Cd2+和蝎毒素(CTX)敏感的Ca(2+)依赖性K+电流(IK(Ca)),以及Ca(2+)不敏感的电压依赖性K+电流(IK(V))。IK(V)表现出缓慢的电压依赖性激活(在-20 mV时时间常数(tau)为87.4 ms,在+60 mV时为8.8 ms)和非常缓慢的失活,由两个指数之和描述(在+30 mV时tau 1 = 684 +/- 150 ms和tau 2 = 4.96 +/- 0.76 s),几乎对电压不敏感。IK(V)的动力学和药理学特性是延迟整流K+通道的典型特征。3. 27个细胞中有19个存在电压依赖性Ca2+电流(ICa)。在约10%的细胞中也观察到了TTX敏感型Na+电流。4. 低PO2(<10 mmHg)在+20 mV时使整个外向电流幅度降低了22.17 +/- 1.96%(n = 27)。在存在Cd2+的情况下这种效应不存在。由于低PO2不影响ICa,我们得出结论,缺氧选择性地阻断IK(Ca)。5. 在成年大鼠化学感受细胞中记录到的电流特性,包括缺氧对IK(Ca)的特异性抑制,与新生大鼠CB细胞中报道的特性相似,这意味着大鼠和兔化学感受细胞之间的差异与物种有关。

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