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近端小管中溶质的转运因介质渗透压的变化而改变。

Transport of solute in proximal tubules is modified by changes in medium osmolality.

作者信息

Williams J C, Barfuss D W, Schafer J A

出版信息

Am J Physiol. 1986 Feb;250(2 Pt 2):F246-55. doi: 10.1152/ajprenal.1986.250.2.F246.

Abstract

To examine the hypothesis that fluid absorption is driven by transepithelial osmotic differences, we measured such differences in proximal tubules perfused under oil and attempted to increase the rate of fluid absorption (Jv) and hence the absorbate-perfusate osmotic differences by lowering the osmolality of the perfusate. We were able to consistently increase Jv in this manner only in proximal straight tubules perfused with a simple perfusate that contained no bicarbonate or amino acids. With the simple perfusate, a small but significant increase in the absorbate-perfusate osmolality difference was seen with increased Jv, which is expected if the volume absorption is driven by a transepithelial osmotic difference. In addition, lowering the perfusate osmolality from 290 to 160 mosmol/kg H2O increased the rate of solute absorption from 79 +/- 7 to 91 +/- 8 posmol . min-1 . mm-1; this increase was partly accounted for by an increase in the rate of absorption of glucose from 6.6 +/- 0.9 to 9.5 +/- 1.1 pmol . min-1 . mm-1. In contrast, with the complete perfusate in proximal straight tubules there was little or no increment in Jv, no change in transepithelial osmolality differences, and a decrease in the rate of solute transport with hypoosmolality from 136 +/- 21 to 87 +/- 22 posmol . min-1 . mm-1. In proximal convoluted tubules, similar results were obtained, but a time-dependent decline of Jv complicated the interpretation of the results in the convoluted tubules. It is hypothesized that the observed changes in solute transport with hypotonic perfusate may be the result of changes in membrane permeability that are subsequent to cell swelling.

摘要

为了检验液体吸收是由跨上皮渗透压差驱动这一假说,我们测量了在油下灌注的近端小管中的此类差异,并试图通过降低灌注液的渗透压来提高液体吸收速率(Jv),从而增大吸收液与灌注液之间的渗透压差。只有在用不含碳酸氢盐或氨基酸的简单灌注液灌注的近端直小管中,我们才能以这种方式持续提高Jv。使用简单灌注液时,随着Jv增加,吸收液与灌注液的渗透压差有小幅但显著的增加,如果体积吸收是由跨上皮渗透压差驱动的,这是预期的结果。此外,将灌注液渗透压从290 mosmol/kg H₂O降至160 mosmol/kg H₂O,溶质吸收速率从79±7增至91±8 posmol·min⁻¹·mm⁻¹;这种增加部分是由于葡萄糖吸收速率从6.6±0.9增至9.5±1.1 pmol·min⁻¹·mm⁻¹。相反,在近端直小管中使用完全灌注液时,Jv几乎没有增加或没有增加,跨上皮渗透压差没有变化,并且随着低渗,溶质转运速率从136±21降至87±22 posmol·min⁻¹·mm⁻¹。在近端曲小管中也得到了类似结果,但Jv随时间的下降使曲小管中结果的解释变得复杂。据推测,用低渗灌注液时观察到的溶质转运变化可能是细胞肿胀后膜通透性变化的结果。

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