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高氧诱导高碳酸血症期间星鲨(Scyliorhinus stellaris)的通气和酸碱平衡调节

Regulation of ventilation and acid-base status in the elasmobranch Scyliorhinus stellaris during hyperoxia-induced hypercapnia.

作者信息

Heisler N, Toews D P, Holeton G F

机构信息

Abteilung Physiologie, Max-Planck-Institut für experimentelle Medizin, Göttingen, F.R.G.

出版信息

Respir Physiol. 1988 Feb;71(2):227-46. doi: 10.1016/0034-5687(88)90018-7.

Abstract

Exposure of the elasmobranch Scyliorhinus stellaris to environmental hyperoxia (PO2 of 500 mm Hg) resulted in a considerable rise of arterial PCO2 from 1.9 mm Hg during normoxia to about 11 mm Hg after 6 days as an expression of the primarily oxygen-oriented regulation of gill ventilation. In contrast to the typical pattern during environmental hypercapnia, however, arterial plasma pH was hardly affected by the considerable hyperoxia-induced hypercapnia. At elevated arterial PO2 values (200-300 mm Hg) gill ventilation was apparently not adjusted exclusively for the oxygen demands of the organism, but was matched to the requirements of acid-base regulation such that the rise in PCO2 could be compensated for by a net gain of bicarbonate-equivalent ions from the environment. This fine adjustment of gill ventilation to the bicarbonate-equivalent uptake rate extended the process of adaptation to about 6 days and resulted in an almost complete pH compensation during the entire process of PCO2 increase. These data suggest that during conditions of reduced oxygen-related respiratory drive the regulation of gill ventilation is primarily dependent upon the acid-base parameters.

摘要

将星鲨(Scyliorhinus stellaris)暴露于环境高氧(PO2为500毫米汞柱)中,导致动脉血PCO2显著升高,从常氧时的1.9毫米汞柱升至6天后的约11毫米汞柱,这是鳃通气主要受氧定向调节的一种表现。然而,与环境高碳酸血症期间的典型模式不同,动脉血浆pH几乎未受显著的高氧诱导性高碳酸血症影响。在动脉PO2值升高(200 - 300毫米汞柱)时,鳃通气显然并非仅根据机体的氧气需求进行调节,而是与酸碱调节的需求相匹配,以便PCO2的升高能够通过从环境中净获取碳酸氢根等效离子得到补偿。鳃通气对碳酸氢根等效摄取率的这种精细调节将适应过程延长至约6天,并在PCO2升高的整个过程中实现了几乎完全的pH补偿。这些数据表明,在与氧气相关的呼吸驱动降低的情况下,鳃通气的调节主要依赖于酸碱参数。

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