首页> 美国卫生研究院文献>Journal of Neural Transplantation >Long-Term High Salt Intake Involves Reduced SK Currents and Increased Excitability of PVN Neurons with Projections to the Rostral Ventrolateral Medulla in Rats
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Long-Term High Salt Intake Involves Reduced SK Currents and Increased Excitability of PVN Neurons with Projections to the Rostral Ventrolateral Medulla in Rats

机译:长期高盐摄入会降低大鼠的SK电流并增加PVN神经元的兴奋性并投射到大鼠的鼻侧前外侧延髓

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摘要

Evidence indicates that high salt (HS) intake activates presympathetic paraventricular nucleus (PVN) neurons, which contributes to sympathoexcitation of salt-sensitive hypertension. The present study determined whether 5 weeks of HS (2% NaCl) intake alters the small conductance Ca2+-activated potassium channel (SK) current in presympathetic PVN neurons and whether this change affects the neuronal excitability. In whole-cell voltage-clamp recordings, HS-treated rats had significantly decreased SK currents compared to rats with normal salt (NS, 0.4% NaCl) intake in PVN neurons. The sensitivity of PVN neuronal excitability in response to current injections was greater in HS group compared to NS controls. The SK channel blocker apamin augmented the neuronal excitability in both groups but had less effect on the sensitivity of the neuronal excitability in HS group compared to NS controls. In the HS group, the interspike interval (ISI) was significantly shorter than that in NS controls. Apamin significantly shortened the ISI in NS controls but had less effect in the HS group. This data suggests that HS intake reduces SK currents, which contributes to increased PVN neuronal excitability at least in part through a decrease in spike frequency adaptation and may be a precursor to the development of salt-sensitive hypertension.
机译:有证据表明,高盐(HS)摄入会激活交感神经前室旁核(PVN),从而促进对盐敏感的高血压的交感神经兴奋。本研究确定了5周的HS(2%NaCl)摄入量是否会改变交感神经PVN神经元中的小电导Ca 2 + 激活的钾通道(SK)电流,以及这种变化是否影响神经元兴奋性。在全细胞电压钳记录中,与PVN神经元中摄入正常盐(NS,0.4%NaCl)的大鼠相比,经HS治疗的大鼠的SK电流显着降低。与NS对照组相比,HS组对当前注射的PVN神经元兴奋性的敏感性更高。与NS对照组相比,SK通道阻滞剂木瓜蛋白酶可增加两组神经元兴奋性,但对HS组神经元兴奋性敏感性的影响较小。在HS组中,穗间期(ISI)明显短于NS对照。 Apamin显着缩短了NS对照的ISI,但对HS组的影响较小。该数据表明,HS摄入减少了SK电流,这至少部分地通过降低峰值频率适应性而有助于增加PVN神经元兴奋性,并且可能是盐敏感性高血压发展的先兆。

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