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鸡胚在孵育第 4 天缺氧时可以维持心率。

Chicken embryos can maintain heart rate during hypoxia on day 4 of incubation.

机构信息

Institute of Developmental Biology RAS, Vavilov Str. 26, Moscow, 119334, Russia.

Institute of Evolutionary Physiology and Biochemistry RAS, St. Petersburg, Russia.

出版信息

J Comp Physiol B. 2020 May;190(3):361-370. doi: 10.1007/s00360-020-01274-5. Epub 2020 Mar 20.

Abstract

Acute exposure to hypoxic conditions is a frequent natural event during the development of bird eggs. However, little is known about the effect of such exposure on the ability of young embryos in which cardiovascular regulation is not yet developed to maintain a normal heart rate (HR). To address this question, we studied the effect of 10-20 min of exposure to moderate or severe acute hypoxia (10% or 5% O, respectively) on the HR of day 4 (D4) chicken embryos. In ovo, video recording of the beating embryo heart inside the egg revealed that severe, but not moderate, hypoxia resulted in significant HR changes. The HR response to severe hypoxia consisted of two phases: the first phase, consisting of an initial decrease in HR, was followed by a phase of partial HR recovery. Upon the restoration of normoxia, after an overshoot period of a few minutes, the HR completely recovered to its basal level. In vitro (isolated heart preparation), the first phase of the HR response to severe hypoxia was strengthened (nearly complete heart silencing) compared to that in ovo, and the HR recovery phase was greatly attenuated. Furthermore, neither an overshoot period nor complete HR recovery after hypoxia was observed. Thus, the D4 chicken embryo heart can partially maintain its rhythm during hypoxia in ovo, but not in vitro. Some factors from the egg, such as catecholamines, are likely to be critical for avian embryo responding to hypoxic condition and survival.

摘要

急性暴露于低氧环境是鸟类胚胎发育过程中的一种常见自然事件。然而,对于这种暴露对心血管调节尚未发育完全的年轻胚胎维持正常心率(HR)的能力的影响知之甚少。为了解决这个问题,我们研究了中度或重度急性缺氧(分别为 10%或 5% O)暴露 10-20 分钟对第 4 天(D4)鸡胚胎 HR 的影响。在鸡胚中,通过视频记录鸡蛋内跳动胚胎心脏的方法揭示,严重但非中度缺氧会导致显著的 HR 变化。严重缺氧对 HR 的反应包括两个阶段:第一阶段是 HR 初始下降,随后是部分 HR 恢复阶段。在恢复正常氧合后,经过几分钟的超射期,HR 完全恢复到基础水平。在体外(分离心脏制备),与体内相比,严重缺氧对 HR 的第一阶段反应得到了加强(几乎完全使心脏沉默),而 HR 恢复阶段则大大减弱。此外,缺氧后既没有超射期,也没有完全恢复 HR。因此,D4 鸡胚心脏在体内缺氧时可以部分维持其节律,但在体外则不行。一些来自鸡蛋的因素,如儿茶酚胺,可能对禽类胚胎对缺氧条件的反应和生存至关重要。

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