首页> 美国卫生研究院文献>The Journal of Physiology >Dependence on extracellular Ca2+/K+ antagonism of inspiratory centre rhythms in slices and en bloc preparations of newborn rat brainstem
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Dependence on extracellular Ca2+/K+ antagonism of inspiratory centre rhythms in slices and en bloc preparations of newborn rat brainstem

机译:对新生大鼠脑干切片和整体制剂中吸气中心节律的细胞外Ca2 + / K +拮抗作用的依赖性

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摘要

The pre-Bötzinger Complex (preBötC) inspiratory centre remains active in isolated brainstem–spinal cords and brainstem slices. The extent to which findings in these models depend on their dimensions or superfusate [K+] and [Ca2+] (both of which determine neuronal excitability) is not clear. We report here that inspiratory-related rhythms in newborn rat slices and brainstem–spinal cords with defined boundaries were basically similar in physiological Ca2+ (1.2 mm) and K+ (3 mm). Hypoglossal nerve rhythm was 1 : 1-coupled to preBötC activity in slices and to cervical nerve bursts in en bloc preparations lacking the facial motonucleus (VII). Hypoglossal rhythm was depressed in brainstems containing (portions of) VII, while pre/postinspiratory lumbar nerve bursting was present only in preparations with > 79% VII. preBötC-related slice rhythms were inhibited in 1.5 mm Ca2+ solution, whereas their longevity and burst rate were substantially augmented in 1 mm Ca2+. Ca2+ depression of slice rhythms was antagonized by raising superfusate K+ to 8–10 mm. This strong extracellular Ca2+/K+ antagonism of inspiratory (motor) rhythms was also revealed in brainstem–spinal cords without VII, while the inhibition was progressively attenuated with increasing amount of rostral tissue. We hypothesize that depression of hypoglossal rhythm and decreased Ca2+ sensitivity of preBötC rhythm are probably not related to an increased content of rostral respiratory structures, but rather to larger brainstem dimensions resulting in interstitial gradients for neuromodulator(s) and K+, respectively. We discuss whether block of pre/postinspiratory activity in preparations with < 79% VII is due to impairment of the pathway from preinspiratory interneurons to abdominal muscles
机译:伯钦哲前综合体(preBötC)的吸气中心在孤立的脑干-脊髓和脑干切片中仍然活跃。这些模型中的发现取决于其尺寸或超融合产物[K + ]和[Ca 2 + ](均决定神经元兴奋性)的程度尚不清楚。我们在此报告,新生大鼠切片和脑干-脊髓有明确界限的吸气相关节律在生理学Ca 2 + (1.2 mm)和K + ( 3毫米)。舌下神经节律与切片中的preBötC活性和缺乏面部运动核的整块制剂中的颈神经爆发(1:1)耦合。在含VII的脑干中,舌下节律被抑制,而仅在VII≥79%的制剂中才出现吸气前/吸气后腰神经爆裂。在1.5 mm Ca 2 + 溶液中抑制了与preBötC相关的切片节律,而在1mm Ca 2 + 中,其寿命和爆裂率显着提高。通过将超融合液K + 增大到8-10 mm,可以对抗切片节律的Ca 2 + 降低。在没有VII的脑干-脊髓中也表现出这种强烈的细胞内Ca 2 + / K + 呼吸(运动)节律拮抗作用,而抑制作用随着剂量的增加而逐渐减弱延髓组织。我们假设,舌下节律的抑制和preBötC节律的Ca 2 + 敏感性降低可能与玫瑰色呼吸结构含量的增加无关,而与更大的脑干尺寸有关,从而导致神经调节剂的间质梯度)和K + 分别。我们讨论VII值<79%的制剂中的吸气前/吸气后活动是否受阻是否是由于从吸气前神经元到腹肌的通路受损

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