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Strain differences in pH-sensitive K+ channel-expressing cells in chemosensory and nonchemosensory brain stem nuclei

机译:化学敏感性和非化学敏感性脑干核中pH敏感的K +通道表达细胞的菌株差异

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摘要

The ventilatory CO2 chemoreflex is inherently low in inbred Brown Norway (BN) rats compared with other strains, including inbred Dahl salt-sensitive (SS) rats. Since the brain stem expression of various pH-sensitive ion channels may be determinants of the CO2 chemoreflex, we tested the hypothesis that there would be fewer pH-sensitive K+ channel-expressing cells in BN relative to SS rats within brain stem sites associated with respiratory chemoreception, such as the nucleus tractus solitarius (NTS), but not within the pre-Bötzinger complex region, nucleus ambiguus or the hypoglossal motor nucleus. Medullary sections (25 μm) from adult male and female BN and SS rats were stained with primary antibodies targeting TASK-1, Kv1.4, or Kir2.3 K+ channels, and the total (Nissl-stained) and K+ channel immunoreactive (-ir) cells counted. For both male and female rats, the numbers of K+ channel-ir cells within the NTS were reduced in the BN compared with SS rats (P < 0.05), despite equal numbers of total NTS cells. In contrast, we found few differences in the numbers of K+ channel-ir cells among the strains within the nucleus ambiguus, hypoglossal motor nucleus, or pre-Bötzinger complex regions in both male and female rats. However, there were no predicted functional mutations in each of the K+ channels studied comparing genomic sequences among these strains. Thus we conclude that the relatively selective reductions in pH-sensitive K+ channel-expressing cells in the NTS of male and female BN rats may contribute to their severely blunted ventilatory CO2 chemoreflex.
机译:与其他品系(包括自交达尔达尔盐敏感(SS)大鼠)相比,自交布朗挪威(BN)大鼠的通气CO2化学反射固有地较低。由于各种pH敏感离子通道的脑干表达可能是CO2化学反射的决定因素,因此我们检验了以下假设:相对于SS,BN中pH敏感K + 通道表达细胞较少与呼吸化学感受有关的脑干部位的大鼠,例如孤束核(NTS),但不在Bötzinger复杂区域,歧核或舌下运动核内。用靶向TASK-1,Kv1.4或Kir2.3 K + 通道的一抗和成年(Nissl-染色)和K + 通道免疫反应性(-ir)细胞计数。对于雄性和雌性大鼠,尽管总NTS细胞数量相同,但与NS大鼠相比,BN中NTS中K + 通道-ir细胞的数量减少了(P <0.05)。相反,在雄性和雌性大鼠中,歧义核,舌下运动神经核或前柏辛格复杂区域内的品系之间,K + 通道-ir细胞的数量几乎没有差异。然而,在比较这些菌株的基因组序列的研究中,在每个K + 通道中都没有预测到的功能突变。因此,我们得出结论,雄性和雌性BN大鼠NTS中pH敏感性K + 通道表达细胞的相对选择性降低可能是导致通气CO2化学反射严重减弱的原因。

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