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离体大鼠Ⅰ型颈动脉体细胞钾离子电流的发育变化及其对缺氧的调节作用

Developmental changes in isolated rat type I carotid body cell K+ currents and their modulation by hypoxia.

作者信息

Hatton C J, Carpenter E, Pepper D R, Kumar P, Peers C

机构信息

Institute for Cardiovascular Research, University of Leeds, UK.

出版信息

J Physiol. 1997 May 15;501 ( Pt 1)(Pt 1):49-58. doi: 10.1111/j.1469-7793.1997.049bo.x.

Abstract
  1. Whole-cell patch-clamp recordings were used to investigate possible age-related changes in K+ currents of type 1 carotid body cells isolated from the rat. K+ current density increased with age, as measured in cells isolated from 4-day-old, 10-day-old and adult rats (> or = 5 weeks old). 2. The proportion of current reversibly inhibited by high [Mg2+] (6 mM), low [Ca2+] (0.1 mM) solutions, indicative of the proportion of current attributable to activation of Ca(2+) -sensitive K+ (KCa) channels, was significantly smaller in cells of 4-day-old rats compared with 10-day-old rats, despite inward Ca2+ current densities being similar in these two age groups. Inhibition of K+ currents by high [Mg2+], low [Ca2+] solutions was similar in 10-day-old and adult type 1 cells. 3. Hypoxia (PO2, 16-23 mmHg) caused reversible reductions in type I cells from rats of all age groups. However, reductions seen in cells of 4-day-old rats were significantly smaller than those seen in cells of 10-day-olds and adults. The degree of hypoxic inhibition in these latter two groups was not significantly different. 4. In the presence of high [Mg2+], low [Ca2+] solutions, hypoxia (PO2, 16-23 mmHg) was without significant effect on residual K+ currents in cells from all age groups. 5. These observations indicate that K+ current density increases with postnatal age in the rat. Between days 4 and 10, there appears to be a predominant enhancement of KCa channels, and over the same age range hypoxic sensitivity of K+ currents increases. Our findings demonstrate that this latter observation arises because hypoxia selectively inhibits KCa channels in cells at all ages studied. These results suggest an important role for KCa channels in postnatal maturation of hypoxic chemoreception in the rat carotid body.
摘要
  1. 采用全细胞膜片钳记录技术,研究从大鼠分离的1型颈动脉体细胞中钾离子电流可能存在的年龄相关变化。在从4日龄、10日龄和成年大鼠(≥5周龄)分离的细胞中测量发现,钾离子电流密度随年龄增加。2. 高镁(6 mM)、低钙(0.1 mM)溶液可使电流可逆性抑制,这一比例代表钙敏钾(KCa)通道激活所产生电流的比例。尽管这两个年龄组的内向钙离子电流密度相似,但4日龄大鼠细胞中该比例显著低于10日龄大鼠细胞。高镁、低钙溶液对10日龄和成年1型细胞钾离子电流的抑制作用相似。3. 低氧(PO2,16 - 23 mmHg)可使所有年龄组大鼠的I型细胞电流可逆性降低。然而,4日龄大鼠细胞中的降低幅度显著小于10日龄和成年大鼠细胞。后两组的低氧抑制程度无显著差异。4. 在高镁、低钙溶液存在的情况下,低氧(PO2,16 - 23 mmHg)对所有年龄组细胞的残余钾离子电流无显著影响。5. 这些观察结果表明,大鼠出生后钾离子电流密度随年龄增加。在4至10日龄之间,KCa通道似乎有显著增强,且在相同年龄范围内钾离子电流的低氧敏感性增加。我们的研究结果表明,后一观察结果的出现是因为低氧在所有研究年龄的细胞中选择性抑制KCa通道。这些结果提示KCa通道在大鼠颈动脉体低氧化学感受的出生后成熟过程中起重要作用。

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