Influence of vascular and lumen flow on sodium movements across anuran intestine in vitro.

D S Parsons, S A Wade
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引用次数: 2

Abstract

There is a positive linear relation between the vascular flow rate and the magnitudes of the unidirectional fluxes of Na in either direction in the steady state across the small intestine of the frog. Both unidirectional Na fluxes increase to the same extent with an increase in vascular flow so there is no apparent effect of flow on net Na movement. Raising the vascular flow rate in individual experiments increases the lumen-blood Na flux proportionately, but reducing the flow from an initially high value reduces the lumen-blood flux only slowly at first then more rapidly. The unidirectional Na fluxes increase linearly as the lumen flow rate is increased. In the colon increasing the vascular flow rate also increases the lumen-blood Na flux but changing the vascular flow rate has little effect on the blood-lumen flux, the net absorption of Na is invariably increased as the vascular flow increases. Using 14C-labelled sucrose as a marker for the extracellular space of the small intestine, it can be shown that the increases in Na flux found with increased vascular flow rates are associated with an increase in this sucrose space. An increase in sucrose space, therefore, seems to enhance the accessibility of the low resistance, paracellular pathways for Na to and from the blood across the epithelium.

体外血管和管腔流动对钠离子跨肠运动的影响。
在稳定状态下,蛙小肠内的血管流速与钠离子在任何方向上的单向通量大小呈线性正相关。随着血管流量的增加,两种单向钠通量的增加程度相同,因此流量对净钠运动没有明显的影响。在个别实验中,提高血管流速可成比例地增加管腔血钠通量,而在初始较高的流速下降低管腔血钠通量,只会先缓慢地降低,然后迅速降低。单向钠通量随管腔流速的增加而线性增加。在结肠内,增加血管流速也会增加血腔内钠通量,但改变血管流速对血腔内钠通量影响不大,钠的净吸收总是随着血管流速的增加而增加。用14c标记的蔗糖作为小肠细胞外空间的标记物,可以发现随着血管流速的增加,钠通量的增加与这个蔗糖空间的增加有关。因此,蔗糖空间的增加似乎增强了钠通过上皮进出血液的低阻力细胞旁通路的可及性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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