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非稳态三室示踪动力学。II. 蟾蜍膀胱对短路反应的钠通量瞬变

Nonsteady-state three compartment tracer kinetics. II. Sodium flux transients in the toad urinary bladder in response to short circuit.

作者信息

Schwartz T L, Snell F M

出版信息

Biophys J. 1968 Jul;8(7):818-41. doi: 10.1016/S0006-3495(68)86523-3.

Abstract

The theoretical approach presented in the previous paper provides an analytical method for determining the unidirectional, nonsteady-state fluxes in a three compartment system. Based on this a study was made of the sodium flux transients in the toad urinary bladder. A transient time-dependent state was generated by suddenly short-circuiting a bladder previously maintained in an open-circuited steady state. The sequence of experiments suggested by the theory provided the data required for the analysis. The results of these tracer experiments were consistent with the complex non-three compartmental structure of this tissue. As a result both of the inadequacy of the three compartment model in representing the tissue and of certain experimental difficulties, attempts at a quantitative solution were not entirely successful. Useful information was nevertheless obtained through a careful use of this model, and a qualitative analysis implied that the sodium influxes into the tissue at both of its surfaces are sensitive to changes in electrical potential while both effluxes are insensitive to this change. This suggests that both of the effluxes result from active processes while both influxes are associated with passive processes. The net transepithelial transport of sodium would then necessarily result from a more complex polarization than that proposed by Koefoed-Johnsen and Ussing.

摘要

上一篇论文中提出的理论方法提供了一种分析方法,用于确定三室系统中的单向、非稳态通量。基于此,对蟾蜍膀胱中的钠通量瞬变进行了研究。通过突然短路先前维持在开路稳态的膀胱,产生了一个随时间变化的瞬态状态。该理论提出的实验序列提供了分析所需的数据。这些示踪实验的结果与该组织复杂的非三室结构一致。由于三室模型在表示该组织方面的不足以及某些实验困难,定量解决方案的尝试并不完全成功。然而,通过谨慎使用该模型获得了有用的信息,定性分析表明,钠在组织两个表面的流入对电势变化敏感,而两个流出对这种变化不敏感。这表明两个流出都是由主动过程导致的,而两个流入都与被动过程相关。那么,钠的跨上皮净转运必然是由比科福伊德 - 约翰森和乌辛提出的更为复杂的极化作用导致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcb1/1367561/4894545e0e84/biophysj00697-0050-a.jpg

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