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新生 1 日龄雏鸡产前冷诱导低代谢后对低氧的通气反应。

Ventilatory response to hypoxia of the 1-day old chicken hatchling after prenatal cold-induced hypometabolism.

机构信息

Department of Physiology, McGill University, 3655 Promenade Sir William Osler, Montreal, Quebec H3G 1Y6, Canada.

出版信息

Respir Physiol Neurobiol. 2013 Aug 15;188(2):161-4. doi: 10.1016/j.resp.2013.05.023. Epub 2013 Jun 4.

DOI:10.1016/j.resp.2013.05.023
PMID:23747276
Abstract

Sustained prenatal hypoxia decreases the growth and metabolic rate of the embryo and causes a blunted hypoxic ventilatory response (HVR) in the newborn. The most likely interpretation is that the sustained hypoxic stimulation may interfere with the normal prenatal development of the chemoreceptors. However, we wanted to consider the possibility that the prolonged hypoxic hypometabolism may be a contributing factor. Chicken embryos were incubated at 35°C (Cold group, N=14), which is known to lower the embryonic oxygen consumption (VO2) by ≈ 30% throughout incubation, or at 37.5°C (Controls, N=16). Cold incubation delayed hatching by ≈ 2 days. The 1-day old hatchlings had normal pulmonary ventilation (VE), measured by the barometric technique, and oxygen consumption (VO2), simultaneously measured by an open flow methodology. During acute hypoxia (≈ 15% or ≈ 11% O2) the hyperventilation (increase in VO2), the hyperpnea and the hypometabolism were almost identical between the two groups of hatchlings. We conclude that a sustained decrease in metabolic rate during the embryonic period by itself does not carry obvious consequences on the newborn's resting VE and HVR.

摘要

持续的产前缺氧会降低胚胎的生长和代谢率,并导致新生儿的低氧通气反应 (HVR) 迟钝。最有可能的解释是,持续的缺氧刺激可能干扰了化学感受器的正常产前发育。然而,我们希望考虑长时间低氧代谢可能是一个促成因素的可能性。鸡胚胎在 35°C(低温组,N=14)下孵育,已知这会使胚胎的耗氧量 (VO2) 在整个孵育过程中降低约 30%,或在 37.5°C(对照组,N=16)下孵育。低温孵育使孵化时间延迟了约 2 天。1 日龄的雏鸡具有正常的肺通气 (VE),通过气压技术测量,同时通过开放式流量方法测量氧耗 (VO2)。在急性缺氧(约 15%或约 11% O2)下,两组雏鸡的过度通气(VO2 增加)、过度通气和低代谢几乎完全相同。我们得出结论,胚胎期代谢率的持续降低本身不会对新生儿的静息 VE 和 HVR 产生明显影响。

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Front Physiol. 2021 Jun 17;12:699142. doi: 10.3389/fphys.2021.699142. eCollection 2021.