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肺泡巨噬细胞胞浆内pH值及“表观”细胞内pH值的调节

Regulation of intracytoplasmic pH and "apparent" intracellular pH in alveolar macrophages.

作者信息

Laman D, Theodore J, Robin E D

出版信息

Exp Lung Res. 1981 May;2(2):141-53. doi: 10.3109/01902148109052310.

Abstract

An approach for determining the permeability of cell and subcell membranes to H+/HCO3- has been applied to alveolar macrophages. The approach uses analysis of substrate ratios which are compartment specific and involved in pH-dependent reactions. By determining the changes in substrate pair ratios produced by perturbations of CO2, the effects of intracellular acidosis and alkalosis can be determined. By measuring substrate pair ratios at a constant PCO2 and variable H+/HCO3- it is possible to determine the permeability of the macrophage plasma membrane to these ions qualitatively. Measurements of intracellular lactate/pyruvate ratios showed that the alveolar macrophage plasma membrane is permeable to H+/HCO3-. Previous studies have shown that alveolar macrophages are freely permeable to Cl-. pHi was determined from measurements of pHe and Cli-/Cle- following changes of external PCO2 at a constant HCO3- concentration and following changes in pHe produced by changes of external HCO3- concentration at a constant PCO2. The data show that the relationship between pHi and Phe is: pHi = 0.973 pHe - 0.027 (r = 0.99, P less than 0.001). Thus at pHe = 7.40, macrophage intracellular pHi = 7.17. Alveolar macrophages appear to be permeable to H+/HCO3- and thus resemble erythrocytes, platelets, and lymphocytes and not brain and muscle cells.

摘要

一种用于确定细胞及亚细胞膜对H⁺/HCO₃⁻通透性的方法已应用于肺泡巨噬细胞。该方法利用对底物比率的分析,这些比率具有特定的区室性且参与pH依赖性反应。通过确定由CO₂扰动产生的底物对比率的变化,可以确定细胞内酸中毒和碱中毒的影响。通过在恒定的PCO₂和可变的H⁺/HCO₃⁻条件下测量底物对比率,能够定性地确定巨噬细胞质膜对这些离子的通透性。细胞内乳酸/丙酮酸比率的测量结果表明,肺泡巨噬细胞质膜对H⁺/HCO₃⁻具有通透性。先前的研究表明,肺泡巨噬细胞对Cl⁻具有自由通透性。在恒定的HCO₃⁻浓度下改变外部PCO₂后以及在恒定的PCO₂下改变外部HCO₃⁻浓度产生的pHe变化后,通过测量pHe和Cli⁻/Cle⁻来确定pHi。数据显示pHi与Phe之间的关系为:pHi = 0.973 pHe - 0.027(r = 0.99,P < 0.001)。因此,在pHe = 7.40时,巨噬细胞内pHi = 7.17。肺泡巨噬细胞似乎对H⁺/HCO₃⁻具有通透性,因此类似于红细胞、血小板和淋巴细胞,而不像脑和肌肉细胞。

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