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在停止低氧挑战后,呼吸的短期促进作用在雄性而非雌性内皮型一氧化氮合酶敲除小鼠中受损。

Short-term facilitation of breathing upon cessation of hypoxic challenge is impaired in male but not female endothelial NOS knock-out mice.

机构信息

Department of Pediatrics, Biomedical Research Building BRB 319, Case Western Reserve University, 10900 Euclid Avenue Mail Stop 1714, Cleveland, OH, 44106-1714, USA.

Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Sci Rep. 2021 Sep 15;11(1):18346. doi: 10.1038/s41598-021-97322-3.

Abstract

Decreases in arterial blood oxygen stimulate increases in minute ventilation via activation of peripheral and central respiratory structures. This study evaluates the role of endothelial nitric oxide synthase (eNOS) in the expression of the ventilatory responses during and following a hypoxic gas challenge (HXC, 10% O, 90% N) in freely moving male and female wild-type (WT) C57BL6 and eNOS knock-out (eNOS-/-) mice. Exposure to HXC caused an array of responses (of similar magnitude and duration) in both male and female WT mice such as, rapid increases in frequency of breathing, tidal volume, minute ventilation and peak inspiratory and expiratory flows, that were subject to pronounced roll-off. The responses to HXC in male eNOS-/- mice were similar to male WT mice. In contrast, several of the ventilatory responses in female eNOS-/- mice (e.g., frequency of breathing, and expiratory drive) were greater compared to female WT mice. Upon return to room-air, male and female WT mice showed similar excitatory ventilatory responses (i.e., short-term potentiation phase). These responses were markedly reduced in male eNOS-/- mice, whereas female eNOS-/- mice displayed robust post-HXC responses that were similar to those in female WT mice. Our data demonstrates that eNOS plays important roles in (1) ventilatory responses to HXC in female compared to male C57BL6 mice; and (2) expression of post-HXC responses in male, but not female C57BL6 mice. These data support existing evidence that sex, and the functional roles of specific proteins (e.g., eNOS) have profound influences on ventilatory processes, including the responses to HXC.

摘要

动脉血氧降低通过激活外周和中枢呼吸结构刺激分钟通气量增加。本研究评估了内皮型一氧化氮合酶(eNOS)在雄性和雌性野生型(WT)C57BL6 和 eNOS 敲除(eNOS-/-)小鼠在自由移动时和缺氧气体挑战(HXC,10%O,90%N)后表达通气反应中的作用。暴露于 HXC 导致雄性和雌性 WT 小鼠出现一系列反应(幅度和持续时间相似),例如呼吸频率、潮气量、分钟通气量和吸气峰和呼气峰流速的快速增加,这些反应受到明显的衰减。雄性 eNOS-/- 小鼠对 HXC 的反应与雄性 WT 小鼠相似。相比之下,雌性 eNOS-/- 小鼠的几种通气反应(例如呼吸频率和呼气驱动)大于雌性 WT 小鼠。返回室温空气后,雄性和雌性 WT 小鼠表现出相似的兴奋性通气反应(即短期增强相)。这些反应在雄性 eNOS-/- 小鼠中明显减少,而雌性 eNOS-/- 小鼠则表现出与雌性 WT 小鼠相似的强烈 HXC 后反应。我们的数据表明,eNOS 在(1)与雄性 C57BL6 小鼠相比,雌性对 HXC 的通气反应中起重要作用;(2)在雄性但不是雌性 C57BL6 小鼠中表达 HXC 后反应。这些数据支持现有的证据,即性别和特定蛋白质(如 eNOS)的功能作用对通气过程具有深远影响,包括对 HXC 的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d25c/8443732/6b62c304054c/41598_2021_97322_Fig1_HTML.jpg

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