慢性缺氧对幼年和成年大鼠缺氧通气反应的影响。

IF 1.9 4区 医学 Q3 PHYSIOLOGY Respiratory Physiology & Neurobiology Pub Date : 2023-10-01 DOI:10.1016/j.resp.2023.104118
Ryan W. Bavis, Ethan S. Benevides , Sarah Gutch, Erin J. Murphy, Hannah R. West, Sally Ceesay , Maya Reynoso Williams, Pieter Cory
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引用次数: 0

摘要

出生时的慢性缺氧(CH)会减弱大鼠和其他哺乳动物的急性缺氧通气反应(HVR),但据报道,成年哺乳动物的慢性缺氧会增强HVR。为了验证这种从减弱到增强HVR的转变发生在大鼠出生后第三周或第四周的假设,幼年和成年大鼠暴露于常压CH(12%O2)7天,并通过全身体积描记术评估HVR。然而,没有观察到任何转变,在所有研究年龄段,急性HVR降低了61%-85%。成年大鼠未能观察到HVR增强,这不能用所用Sprague-Dawley大鼠的子系、CH暴露的持续时间、测试气体的出现顺序、CH用于评估HVR的缺氧水平,或CH对缺氧代谢反应和高碳酸血症通气反应的影响来解释。一项文献调查揭示了成年大鼠对缺氧(VAH)的通气适应的几种不同模式,大多数研究(77%)显示CH后急性HVR降低或没有变化。总之,CH对呼吸控制的影响在不同年龄组之间具有质的相似性,至少在本研究中使用的Sprague-Dawley大鼠群体中是如此,并且在成年大鼠中似乎没有一种VAH的“典型”模式。
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Influence of chronic hypoxia on the hypoxic ventilatory response of juvenile and adult rats

Chronic hypoxia (CH) from birth attenuates the acute hypoxic ventilatory response (HVR) in rats and other mammals, but CH is often reported to augment the HVR in adult mammals. To test the hypothesis that this transition – from blunting to augmenting the HVR – occurs in the third or fourth postnatal week in rats, juvenile and adult rats were exposed to normobaric CH (12% O2) for 7 days and the HVR was assessed by whole-body plethysmography. No transition was observed, however, and the acute HVR was reduced by 61 – 85% across all ages studied. The failure to observe an augmented HVR in adult rats could not be explained by the substrain of Sprague Dawley rats used, the duration of the CH exposure, the order in which test gases were presented, the level of hypoxia used for CH and to assess the HVR, or the effects of CH on the metabolic response to hypoxia and the hypercapnic ventilatory response. A literature survey revealed several distinct patterns of ventilatory acclimatization to hypoxia (VAH) in adult rats, with most studies (77%) revealing a decrease or no change in the acute HVR after CH. In conclusion, the effects of CH on respiratory control are qualitatively similar across age groups, at least within the populations of Sprague Dawley rats used in the present study, and there does not appear to be one “typical” pattern for VAH in adult rats.

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来源期刊
CiteScore
4.80
自引率
8.70%
发文量
104
审稿时长
54 days
期刊介绍: Respiratory Physiology & Neurobiology (RESPNB) publishes original articles and invited reviews concerning physiology and pathophysiology of respiration in its broadest sense. Although a special focus is on topics in neurobiology, high quality papers in respiratory molecular and cellular biology are also welcome, as are high-quality papers in traditional areas, such as: -Mechanics of breathing- Gas exchange and acid-base balance- Respiration at rest and exercise- Respiration in unusual conditions, like high or low pressure or changes of temperature, low ambient oxygen- Embryonic and adult respiration- Comparative respiratory physiology. Papers on clinical aspects, original methods, as well as theoretical papers are also considered as long as they foster the understanding of respiratory physiology and pathophysiology.
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