Karnaky K J, Lau K R, Garretson L T, Schultz S G
Am J Anat. 1984 Oct;171(2):227-42. doi: 10.1002/aja.1001710208.
Although the urinary bladder of Necturus maculosus provides an important model system for studying the mechanisms of active Na absorption, little critical attention has been paid to the fine structure of its epithelium. Moreover, two distinct groups of urinary bladders, low and high Na transporters, have been described based on short-circuit current or transepithelial potential difference. In the present study, over an 11-month period, stable electrical parameters (short-circuit current, transepithelial potential difference, and resistance) were recorded from 63 chamber-mounted bladders. Analysis of these parameters revealed a highly significant difference between two groups (low transporters and high transporters) occurring at different times of the year. Consistent with these data, in urine collected from the bladders, the Na concentration in low transporters was significantly higher than that in high transporters. A subpopulation of these bladders was subsequently fixed and examined at the light and/or electron microscopic level. Low-transporting bladders were characterized unequivocally by a thin, stratified squamous epithelium only 6-15 micron thick. High-transporting bladders were composed predominantly of columnar-shaped granular cells up to 70 micron in height, with ciliated, mitochondria-rich, and basal cells present in small numbers. There is thus a correlation between transport activity, as measured by electrophysiological techniques and urine sodium analysis, and the structure of the tissue. Moreover, these parameters exhibit significant seasonal variation, the underlying mechanisms of which remain obscure.
尽管黄斑美西螈的膀胱为研究主动钠吸收机制提供了一个重要的模型系统,但对其上皮的精细结构却很少有批判性的关注。此外,根据短路电流或跨上皮电位差,已描述了两组不同的膀胱,即低钠转运体和高钠转运体。在本研究中,在11个月的时间里,从63个安装在腔室中的膀胱记录了稳定的电参数(短路电流、跨上皮电位差和电阻)。对这些参数的分析揭示了在一年中不同时间出现的两组(低转运体和高转运体)之间存在高度显著的差异。与这些数据一致的是,在从膀胱收集的尿液中,低转运体中的钠浓度显著高于高转运体中的钠浓度。随后,对这些膀胱中的一个亚群进行固定,并在光镜和/或电镜水平上进行检查。低转运膀胱的明确特征是只有6-15微米厚的薄分层鳞状上皮。高转运膀胱主要由高度达70微米的柱状颗粒细胞组成,少量存在纤毛、富含线粒体的基底细胞。因此,通过电生理技术和尿钠分析测量的转运活性与组织结构之间存在相关性。此外,这些参数表现出显著的季节性变化,其潜在机制仍不清楚。