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国家自然科学基金(30900646)

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自由活动大鼠睡眠呼吸监测技术改进
2014年
目的:改进大鼠睡眠呼吸监测技术,解决既往模型中咬线、脱落、信号不稳定问题。方法:改进监测电极、信号接入线路及动物手术。结果:改进后手术时间缩短,创面暴露时间减少,大鼠术后易恢复。且电极稳固性好,脑电和肌电信号更稳定清晰,信号接入线路传导性好,耐用。实现连续长时间监测,成功率高。便于根据信号进行不同清醒-睡眠状态分期,并判断大鼠睡眠呼吸暂停情况。结论:改进后的操作技术操作更简单、信号更稳定,是一项更加实用可靠的小动物睡眠呼吸监测技术。
王奇敏董慧张成张永鹤马靖王广发
关键词:睡眠
Inhibition of central Na+/H+ exchanger type 3 can alleviate sleep apnea in Sprague-Dawley rats
2014年
Wang Qimin Zhou Rong Zhang Cheng Dong Hui Ma Jing Wang Guangfa
关键词:SPRAGUE-DAWLEY睡眠呼吸暂停WESTERN印迹法显微注射
Blockade of Na^+/H^+ exchanger type 3 causes intracellular acidification and hyperexcitability via inhibition of pH-sensitive K^+ channels in chemosensitive respiratory neurons of the dorsal vagal nucleus in rats被引量:1
2014年
Extracellular pH (pHe) and intracellular pH (pHi) are important factors for the excitability of chemosensitive central respiratory neurons that play an important role in respiration and obstructive sleep apnea. It has been proposed that inhibition of central Na+/ H+exchanger 3 (NHE-3), a key pH i regulator in the brainstem, decreases the pH i, leading to membrane depolarization for the maintenance of respiration. However, how intracellular pH affects the neuronal excitability of respiratory neurons remains largely unknown. In this study, we showed that NHE-3 mRNA is widely distributed in respiration-related neurons of the rat brainstem, including the dorsal vagal nucleus (DVN). Whole-cell patch clamp recordings from DVN neurons in brain slices revealed that the standing outward current (Iso) through pH-sensitive K+channels was inhibited in the presence of the specific NHE-3 inhibitor AVE0657 that decreased the pH i. Exposure of DVN neurons to an acidified pH e and AVE0657 (5 μmol/L) resulted in a stronger effect on firing rate and I so than acidified pH e alone. Taken together, our results showed that intracellular acidification by blocking NHE-3 results in inhibition of a pHsensitive K+current, leading to synergistic excitation of chemosensitive DVN neurons for the regulation of respiration.
Jing ZhangHui PengSigrid C.VeaseyJing MaGuang-Fa WangKe-Wei Wang
关键词:迷走神经背核
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