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Strain-associated differences in hypoxic chemosensitivity of the carotid body in rats.

机译:大鼠颈动脉体对低氧化学敏感性的应变相关差异。

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摘要

Studies in humans indicate genetic effects on the ventilatory response to hypoxia, but the site of these effects is unknown. The present study explores the question of whether there are genetically directed effects on the intrinsic hypoxic chemosensitivity of the carotid body. The approach was to study these responses in two inbred rat strains [spontaneously hypertensive rats (SHR) and Fischer 344 (F-344)] and to measure in vivo carotid chemosensitivity as the change in carotid sinus nerve (CSN) activity during progressive, isocapnic hypoxia and the isolated, in vitro responses of excised superfused carotid bodies, loaded with the fluorimetric indicator fura 2, measured as the cytosolic calcium response to moderate hypoxia (PO2 = 55 mmHg). CSN responses in F-344 rats (n = 12) were uniformly low, with a shape parameter A of 13.8 +/- 6.59 (SE), whereas responses in SHR (n = 15) were sevenfold higher (108 +/- 24.1; P < 0.002) and showed greater variation. In vitro, intracellular calcium responses of superfused carotid bodies estimated from the fluorimetric ratio (340/380 nm) showed a greater peak increase during hypoxia in carotid bodies from SHR (140 +/- 4.7%) than from F-344 rats (114 6.0%; P < 0.01). Our results indicate strain-related differences in hypoxic chemosensitivity that are intrinsic to the carotid body and that could mediate genetic effects on ventilatory responsiveness to hypoxia.
机译:人体研究表明,遗传因素对低氧通气反应有影响,但这些作用的部位尚不清楚。本研究探讨了是否对颈动脉内在的低氧化学敏感性具有遗传学指导作用。该方法旨在研究两种近交大鼠品系[自发性高血压大鼠(SHR)和Fischer 344(F-344)]的这些反应,并测量体内颈动脉化学敏感性,作为进行性,等碳酸血症期间颈动脉窦神经(CSN)活性的变化。缺氧和负载的荧光指示剂fura 2的切除的融合颈动脉体的离体体外反应,以对中度缺氧(PO2 = 55 mmHg)的胞浆钙反应进行测量。 F-344大鼠(n = 12)的CSN响应始终较低,形状参数A为13.8 +/- 6.59(SE),而SHR(n = 15)的响应高七倍(108 +/- 24.1; P <0.002),并显示出较大的变化。在体外,根据荧光比(340/380 nm)估算的超融合颈动脉体的细胞内钙反应显示,SHR(140 +/- 4.7%)颈动脉体缺氧期间的峰值增加大于F-344大鼠(114 6.0) %; P <0.01)。我们的结果表明,低氧化学敏感性中与应变有关的差异是颈动脉体固有的,并且可能介导遗传学效应对低氧通气反应性的影响。

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