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阴离子转运阻滞剂“二碘苯磺酸钠”对呼吸性酸中毒时脑脊液[HCO₃⁻]的影响。

Effects of 'DIDS', an anion transport blocker, on CSF [HCO3-] in respiratory acidosis.

作者信息

Javaheri S, Weyne J

出版信息

Respir Physiol. 1984 Sep;57(3):365-76. doi: 10.1016/0034-5687(84)90084-7.

Abstract

During acute respiratory acidosis increments in cisternal cerebrospinal fluid (CSF) [HCO3-] approximate decrements in CSF [Cl-] with CSF [Na+] remaining unchanged; the mechanisms mediating this reciprocal anionic relationship are unclear. In the present study we investigated the effects of DIDS (4,4'-diisothiocyano-disulfonic stilbene), a known inorganic anion exchange blocker, on CSF ionic regulation in acute respiratory acidosis. In two groups of anesthetized paralyzed dogs we injected either mock CSF (group I, n = 8) or mock CSF containing DIDS (group II, n = 9) into the lateral cerebral ventricles. After 45 min, acute respiratory acidosis was induced for 6 h. During acute respiratory acidosis, CSF PCO2 rose in average by 38 mm Hg in both groups; increments in CSF [HCO3-], however, were significantly lower by about 2 mEq/L in DIDS-treated animals than in controls throughout the experimental period. Such differences were not due to changes in CSF lactate concentration which were similar in both groups. Furthermore, CSF [Na+] remained unchanged in both groups. Since disulfonic stilbene derivatives combine selectively with the carrier involved in anion transport and inhibit inorganic anion exchange, the data in the present study suggest that in the central nervous system a DIDS-inhibitable carrier is involved in the rise of CSF [HCO3-] observed during acute respiratory acidosis.

摘要

在急性呼吸性酸中毒期间,脑池脑脊液(CSF)中[HCO₃⁻]的增加近似于CSF中[Cl⁻]的减少,而CSF中[Na⁺]保持不变;介导这种阴离子相互关系的机制尚不清楚。在本研究中,我们研究了已知的无机阴离子交换阻滞剂4,4'-二异硫氰酸二磺酸芪(DIDS)对急性呼吸性酸中毒时CSF离子调节的影响。在两组麻醉的瘫痪犬中,我们向侧脑室注射模拟脑脊液(I组,n = 8)或含DIDS的模拟脑脊液(II组,n = 9)。45分钟后,诱导急性呼吸性酸中毒6小时。在急性呼吸性酸中毒期间,两组CSF的PCO₂平均升高38 mmHg;然而,在整个实验期间,DIDS处理的动物CSF中[HCO₃⁻]的增加比对照组显著低约2 mEq/L。这种差异不是由于两组CSF乳酸浓度的变化,两组的乳酸浓度相似。此外,两组CSF中[Na⁺]均保持不变。由于二磺酸芪衍生物与参与阴离子转运的载体选择性结合并抑制无机阴离子交换,本研究的数据表明,在中枢神经系统中,一种可被DIDS抑制的载体参与了急性呼吸性酸中毒时观察到的CSF中[HCO₃⁻]的升高。

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