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首页> 外文期刊>The Journal of Physiology >Extra- and intracellular unstirred layer effects in measurements of CO2 diffusion across membranes--a novel approach applied to the mass spectrometric 18O technique for red blood cells.
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Extra- and intracellular unstirred layer effects in measurements of CO2 diffusion across membranes--a novel approach applied to the mass spectrometric 18O technique for red blood cells.

机译:细胞外和细胞内未搅拌层效应在跨膜的CO2扩散测量中-一种应用于红细胞质谱18O技术的新方法。

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摘要

We have developed an experimental approach that allows us to quantify unstirred layers around cells suspended in stirred solutions. This technique is applicable to all types of transport measurements and was applied here to the (18)O technique used to measure CO(2) permeability of red cells (PCO2). We measure PCO2 in well-stirred red cell (RBC) suspensions of various viscosities adjusted by adding different amounts of 60 kDa dextran. Plotting 1/PCO2 vs. viscosity nu gives a linear relation, which can be extrapolated to nu=0. Theoretical hydrodynamics predicts that extracellular unstirred layers vanish at zero viscosity when stirring is maintained, and thus this extrapolation gives us an estimate of the PCO2 free from extracellular unstirred layer artifacts. The extrapolated value is found to be 0.16 cm s(-1) instead of the experimental value in saline of 0.12 cm s(-1) (+30%). This effect corresponds to an unstirred layer thickness of 0.5 microm. In addition, we present a theoretical approach modelling the actual geometrical and physico-chemical conditions of (18)O exchange in our experiments. It confirms the role of an extracellular unstirred layer in the determination of PCO2. Also, it allows us to quantify the contribution of the so-called intracellular unstirred layer, which results from the fact that in these transport measurements--as in all such measurements in general--the intracellular space is not stirred. The apparent thickness of this intracellular unstirred layer is about 1/4-1/3 of the maximal intracellular diffusion distance, and correction for it results in a true PCO2 of the RBC membrane of 0.20 cm s(-1). Thus, the order of magnitude of this is PCO2 unaltered compared to our previous reports. Discussion of the available evidence in the light of these results confirms that CO(2) channels exist in red cell and other membranes, and that PCO2 of red cell membranes in the absence of these channels is quite low.
机译:我们开发了一种实验方法,可以量化悬浮在搅拌溶液中的细胞周围的未搅拌层。这项技术适用于所有类型的运输测量,并在这里应用于(18)O技术,用于测量红细胞(PCO2)的CO(2)渗透性。我们通过添加不同量的60 kDa右旋糖酐来调节各种粘度的充分搅拌的红细胞(RBC)悬浮液中的PCO2。绘制1 / PCO2与粘度nu的关系为线性关系,可以将其外推至nu = 0。理论流体力学预测,维持搅拌时,细胞外未搅拌层在零粘度下会消失,因此这种外推法可以估算出不含细胞外未搅拌层伪影的PCO2。发现外推值为0.16 cm s(-1),而不是盐水中的实验值0.12 cm s(-1)(+ 30%)。该效果对应于0.5微米的未搅拌层厚度。此外,我们提出了一种在我们的实验中模拟(18)O交换的实际几何和物理化学条件的理论方法。它证实了细胞外未搅拌层在PCO2测定中的作用。此外,它还使我们能够量化所谓的细胞内非搅拌层的贡献,这是由于在这些转运测量(通常与所有此类测量一样)中,并未搅动细胞内空间。该细胞内未搅拌层的表观厚度约为最大细胞内扩散距离的1 / 4-1 / 3,对其进行校正会导致RBC膜的真实PCO2为0.20 cm s(-1)。因此,与我们以前的报告相比,PCO2的数量级没有改变。根据这些结果对可用证据的讨论证实了红细胞和其他膜中存在CO(2)通道,并且在没有这些通道的情况下红细胞膜的PCO2相当低。

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