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血浆HCO₃⁻变化对呼吸性碱中毒时脑脊液HCO₃⁻调节的重要性。

Importance of changes in plasma HCO-3 on regulation of CSF HCO-3 in respiratory alkalosis.

作者信息

Choma L

出版信息

Respir Physiol. 1976 Apr;26(2):265-78. doi: 10.1016/0034-5687(76)90104-3.

Abstract

In respiratory alkalosis the fall in CSF bicarbonate is in part due to increased CSF lactate. The rest of CSF HCO3 fall may be actively regulated or as more recent evidence suggests is dependent on plasma HCO3 fall. Therefore, the relationship between plasma and CSF HCO3 changes was studied during 4 hours of respiratory alkalosis (PaCO2=20 mm Hg) in anesthetized dogs when plasma HCO3: (1) fell normally, (2) kept 'normal' by NaHCO3 infusion, (3) increased by infusing more NaHCO3, and (4) reduced by infusing HCl. In respiratory alkalosis plasma and CSF HCO3 fell 4.6 and 3.8 mEQ/L, respectively. In hypocapnia and 'normal' plasma HCO3 CSF HCO3 fell 2 mEq/L and lactate increased 1.33 mEq/L. In hypocapnia and metabolic alkalosis plasma HCO3 increased 6.5 mEq/L and CSF HCO3 remained unchanged and lactate increased 2.12 mEq/L. In combined hypocapnia and metabolic acidosis plasma HCO3 fall 10.5 mEq/L but CSF HCO3 fell 3.1 mEq/L and CSF pH returned to normal at 4 hours. Therefore CSF HCO3 fall in hypocapnia is primarily and critically dependent on the simultaneous fall in plasma HCO3 content, with a minimal contribution from CNS lactate increase. When CSF PH has returned to normal, however, CSF HCO3 fall is stopped despite further falls in plasma HCO3.

摘要

在呼吸性碱中毒时,脑脊液中碳酸氢盐的下降部分归因于脑脊液中乳酸的增加。脑脊液中其余的碳酸氢根下降可能受到主动调节,或者正如最新证据所表明的那样,取决于血浆中碳酸氢根的下降。因此,在麻醉犬的呼吸性碱中毒(动脉血二氧化碳分压 = 20 mmHg)4小时期间,研究了血浆和脑脊液中碳酸氢根变化之间的关系,此时血浆碳酸氢根:(1) 正常下降,(2) 通过输注碳酸氢钠保持“正常”,(3) 通过输注更多碳酸氢钠而升高,(4) 通过输注盐酸而降低。在呼吸性碱中毒时,血浆和脑脊液中碳酸氢根分别下降4.6和3.8 mEQ/L。在低碳酸血症和“正常”血浆碳酸氢根时,脑脊液中碳酸氢根下降2 mEq/L,乳酸增加1.33 mEq/L。在低碳酸血症和代谢性碱中毒时,血浆碳酸氢根增加6.5 mEq/L,脑脊液中碳酸氢根保持不变,乳酸增加2.12 mEq/L。在低碳酸血症和代谢性酸中毒合并时,血浆碳酸氢根下降10.5 mEq/L,但脑脊液中碳酸氢根下降3.1 mEq/L,4小时时脑脊液pH恢复正常。因此,低碳酸血症时脑脊液中碳酸氢根的下降主要且关键地依赖于血浆中碳酸氢根含量的同时下降,中枢神经系统乳酸增加的贡献最小。然而,当脑脊液pH恢复正常时,尽管血浆中碳酸氢根进一步下降,脑脊液中碳酸氢根的下降仍停止。

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