Developmental Integrative Biology, Department of Biological Sciences, University of North Texas, 1155 Union Circle #305220, Denton, TX 76203, USA.
Developmental Integrative Biology, Department of Biological Sciences, University of North Texas, 1155 Union Circle #305220, Denton, TX 76203, USA; CSIRO Marine and Atmosphere Research, Food Futures Flagship, CPO Box 1538, Hobart, Tasmania 7001, Australia.
Respir Physiol Neurobiol. 2023 Feb;308:103996. doi: 10.1016/j.resp.2022.103996. Epub 2022 Nov 17.
Development of the capacity to mitigate potential disturbances to blood physiology in bird embryos is incompletely understood. We investigated regulation of acid-base and hematology in day 15 chicken embryos exposed to graded intrinsic hypercapnic hypoxia created by varying degrees of water submersion. Metabolic acidosis with additional respiratory or metabolic acidosis occurred at 2 h according to magnitude of submersion. Acid-base disturbance was partially compensated by metabolic alkalosis at 6 h, but compensatory metabolic alkalosis was absent at 24 h. Following submersion with only air cell exposed to air, both hypercapnic respiratory acidosis and metabolic acidosis occurred within 10 min. Subsequently, both forms of acidosis created lethal levels of [HCO] at ∼120 min. Blood hematology showed small but significant effects associated with induced acid-base disturbance. Increased Hct occurring during partial egg submersion lasting 24 h was attributed to an increase in MCV. By day 15 of development chicken embryos are able to partially compensate for and withstand all but severe induced internal hypoxic hypercapnia.
鸟类胚胎减轻潜在血液生理学干扰能力的发展尚不完全清楚。我们研究了在暴露于不同程度水淹没的内在高碳酸缺氧条件下,第 15 天鸡胚的酸碱平衡和血液学的调节。根据淹没程度,代谢性酸中毒在 2 小时时发生,并有额外的呼吸性或代谢性酸中毒。代谢性碱中毒在 6 小时时部分补偿了酸碱平衡紊乱,但在 24 小时时没有补偿代谢性碱中毒。在只有气室暴露于空气中的情况下进行淹没,高碳酸呼吸性酸中毒和代谢性酸中毒在 10 分钟内发生。随后,这两种酸中毒在约 120 分钟时产生了致死水平的 [HCO]。血液血液学显示出与诱导的酸碱平衡紊乱相关的微小但显著的影响。在持续 24 小时的部分鸡蛋淹没期间发生的 Hct 增加归因于 MCV 的增加。在发育的第 15 天,鸡胚胎能够部分补偿和承受所有的诱导性内部缺氧高碳酸血症,除了严重的情况。