首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Large-conductance calcium-activated potassium channels in the neurons of pre-Botzinger complex and their participation in the regulation of central respiratory activity in neonatal rats.
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Large-conductance calcium-activated potassium channels in the neurons of pre-Botzinger complex and their participation in the regulation of central respiratory activity in neonatal rats.

机译:Botzinger前复合体神经元中的大传导钙激活钾通道及其参与新生大鼠中枢呼吸活动的调节。

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摘要

The present study was conducted to test our hypothesis that the large-conductance calcium-activated potassium channels (BK(Ca) channels) exist in the neurons of the pre-Botzinger complex (PBC), a brainstem region that may generate respiratory rhythm in mammals, and play roles in central regulation of respiratory activity in neonatal rats. Immunohistochemical technique revealed that BK(Ca) channels expressed in the neurons of PBC region. Whole cell voltage clamp recordings from the neurons in the PBC showed that BK(Ca) channels could be activated by membrane depolarization and blocked by 1mM tetraethylammonium (TEA) or 10microM paxilline in the preparation of thin (about 300microm) medullary slices of neonatal rats. The rhythmic respiratory-like discharge of hypoglossal rootlets could be changed by perfusing the thick (700-900microm) medullary slices with 1mM TEA or 10microM paxilline. Both TEA and paxilline could prolong the inspiratory duration, shorten the expiratory duration and increase the respiratory frequency. The results suggest that BK(Ca) channels exist in the PBC neurons and may be involved in the central control of rhythmic respiration in the neonatal rats.
机译:进行本研究是为了检验我们的假设,即大传导钙激活的钾离子通道(BK(Ca)通道)存在于前Botzinger复合体(PBC)的神经元中,该脑干区域可能会在哺乳动物中产生呼吸节律,并在新生大鼠呼吸活动的中央调节中发挥作用。免疫组织化学技术显示,BK(Ca)通道在PBC区的神经元中表达。 PBC中神经元的全细胞电压钳记录表明,在制备新生大鼠薄(约300μm)延髓切片时,膜去极化可激活BK(Ca)通道,并被1mM四乙铵(TEA)或10microM氨苄西林阻断。舌下小根的节律性呼吸样放电可通过将厚(700-900μm)的髓质片与1mM TEA或10microM的氨苄西林灌注来改变。 TEA和Paxilline均可延长呼吸时间,缩短呼气时间并增加呼吸频率。结果表明,BK(Ca)通道存在于PBC神经元中,并可能参与新生大鼠节律性呼吸的中央控制。

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