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拉伸对蟾蜍膀胱被动转运的影响。

Effect of stretch on passive transport in toad urinary bladder.

作者信息

Lief P D, Mutz B F, Bank N

出版信息

Am J Physiol. 1976 Jun;230(6):1722-9. doi: 10.1152/ajplegacy.1976.230.6.1722.

Abstract

In order to gain further information about the effect of stretch on the urinary bladder of the toad, transepithelial movement of radioactive sucrose, chloride, and urea was measured across bladder sacs during acute changes in the internal volume. Short-circuit current (SCC) and total tissue conductance (Kt) were also measured in each experiment. It was found that sudden large increases or smaller graded increases in volume resulted in a consistent fall in the tracer permeability (P*) of all three isotopes. However, this fall was due entirely to the larger area term in the calculation of P* rather than any real change in isotope movement. When total diffusion (TD) of each isotope was calculated by a method that eliminated the changes in surface area, it was apparent that stretch produced no significant effects on the transepithelial movement of any of these three molecules. Large stretch also resulted in parallel increases in SCC and Kt in most bladders. We conclude from these observations that the intercellular pathway for sucrose and chloride and the transcellular pathway for urea are unaltered by degrees of stretch that enhance SCC and sodium transport. By inference, the observed increases in Kt appear to represent changes in specific active pathway conductance (Ka), and may relate importantly to the changes in sodium transport.

摘要

为了进一步了解拉伸对蟾蜍膀胱的影响,在膀胱内部容积发生急性变化期间,测量了放射性蔗糖、氯离子和尿素跨膀胱囊的跨上皮转运。在每个实验中还测量了短路电流(SCC)和总组织电导(Kt)。结果发现,容积突然大幅增加或较小程度的分级增加,都会导致所有三种同位素的示踪剂渗透率(P*)持续下降。然而,这种下降完全是由于计算P*时面积项较大,而不是同位素转运有任何实际变化。当通过消除表面积变化的方法计算每种同位素的总扩散(TD)时,很明显拉伸对这三种分子中任何一种的跨上皮转运都没有显著影响。在大多数膀胱中,大幅拉伸还会导致SCC和Kt平行增加。我们从这些观察结果得出结论,蔗糖和氯离子的细胞间途径以及尿素的跨细胞途径不会因增强SCC和钠转运的拉伸程度而改变。由此推断,观察到的Kt增加似乎代表特定主动途径电导(Ka)的变化,并且可能与钠转运的变化密切相关。

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