Department of Physiology and Pathophysiology, Shanghai Medical College, Fudan University, Shanghai, China.
PLoS One. 2012;7(7):e39982. doi: 10.1371/journal.pone.0039982. Epub 2012 Jul 6.
Acid-sensing ion channels (ASICs) are present in neurons and may contribute to chemoreception. Among six subunits of ASICs, ASIC1 is mainly expressed in the central nervous system. Recently, multiple sites in the brain including the lateral hypothalamus (LH) have been found to be sensitive to extracellular acidification. Since LH contains orexin neurons and innervates the medulla respiratory center, we hypothesize that ASIC1 is expressed on the orexin neuron and contributes to acid-induced increase in respiratory drive. To test this hypothesis, we used double immunofluorescence to determine whether ASIC1 is expressed on orexin neurons in the LH, and assessed integrated phrenic nerve discharge (iPND) in intact rats in response to acidification of the LH. We found that ASIC1 was co-localized with orexinA in the LH. Microinjection of acidified artificial cerebrospinal fluid increased the amplitude of iPND by 70% (pH 7.4 v.s. pH 6.5:1.05±0.12 v.s. 1.70±0.10, n = 6, P<0.001) and increased the respiratory drive (peak amplitude of iPND/inspiratory time, PA/Ti) by 40% (1.10±0.23 v.s. 1.50±0.38, P<0.05). This stimulatory effect was abolished by blocking ASIC1 with a nonselective inhibitor (amiloride 10 mM), a selective inhibitor (PcTX1, 10 nM) or by damaging orexin neurons in the LH. Current results support our hypothesis that the orexin neuron in the LH can exert an excitation on respiration via ASIC1 during local acidosis. Since central acidification is involved in breathing dysfunction in a variety of pulmonary diseases, understanding its underlying mechanism may improve patient management.
酸敏离子通道 (ASICs) 存在于神经元中,可能有助于化学感受。在 ASICs 的六个亚基中,ASIC1 主要表达于中枢神经系统。最近,包括外侧下丘脑 (LH) 在内的多个脑区被发现对细胞外酸化敏感。由于 LH 含有食欲素神经元并支配延髓呼吸中枢,我们假设 ASIC1 表达于食欲素神经元上,并有助于酸诱导的呼吸驱动增加。为了验证这一假设,我们使用双重免疫荧光法确定 ASIC1 是否表达于 LH 的食欲素神经元上,并评估完整大鼠对 LH 酸化的反应中膈神经放电总和 (iPND) 的变化。我们发现 ASIC1 与 LH 中的食欲素 A 共定位。酸化人工脑脊液的微注射使 iPND 的幅度增加了 70%(pH 7.4 与 pH 6.5 相比:1.05±0.12 与 1.70±0.10,n=6,P<0.001),并使呼吸驱动增加 40%(iPND 的峰值幅度/吸气时间,PA/Ti:1.10±0.23 与 1.50±0.38,P<0.05)。这种刺激作用被非选择性抑制剂(阿米洛利 10 mM)、选择性抑制剂(PcTX1,10 nM)或破坏 LH 中的食欲素神经元所阻断。目前的结果支持我们的假设,即 LH 中的食欲素神经元在局部酸中毒时可通过 ASIC1 对呼吸产生兴奋作用。由于中枢酸化参与多种肺部疾病的呼吸功能障碍,了解其潜在机制可能有助于改善患者管理。