Ogborn M R, Sareen S, Tomobe K, Takahashi H, Crocker J F
Department of Pediatrics and Child Health, University of Manitoba, Winnipeg, Canada.
J Histochem Cytochem. 1995 Aug;43(8):785-90. doi: 10.1177/43.8.7622841.
Apical mislocation of the ubiquitous transport enzyme Na,K-ATPase has been implicated as a feature of cyst development in in vitro studies of human polycystic kidney disease (PKD) epithelia. We undertook an immunohistochemical study of murine glucocorticoid-induced PKD, the pcy mouse, the cpk mouse, and the diphenylthiazole (DPT)-induced rat models of PKD to determine if this feature was common to these models of cyst development. Distribution of Na,K-ATPase was determined with a polyclonal anti-Na,K-ATPase antibody and a nickel-silver-enhanced peroxidase color development system. Results were documented objectively with densitometric techniques. Control animals appropriate to the age, strain, and species of the experimental groups demonstrated the expected polar distribution of Na,K-ATPase to the basolateral surface. This distribution was more marked in mature animals. Tubular dilatation and cystic change, however, were associated with increased apical Na,K-ATPase in all models. The murine models demonstrated decreased basolateral staining for Na,K-ATPase compared with controls, although this was not a feature of the DPT rat model. Abnormal location of Na,K-ATPase is a shared feature of a variety of animal models and human PKD. This may contribute to abnormal fluid and electrolyte flux favoring cyst formation or may represent expression of a less differentiated renal tubule epithelial phenotype.
在人类多囊肾病(PKD)上皮细胞的体外研究中,普遍存在的转运酶钠钾ATP酶的顶端错位被认为是囊肿形成的一个特征。我们对小鼠糖皮质激素诱导的PKD、pcy小鼠、cpk小鼠以及二苯基噻唑(DPT)诱导的大鼠PKD模型进行了免疫组织化学研究,以确定这一特征在这些囊肿形成模型中是否普遍存在。使用多克隆抗钠钾ATP酶抗体和镍银增强过氧化物酶显色系统来确定钠钾ATP酶的分布。结果采用光密度技术进行客观记录。与实验组年龄、品系和物种相匹配的对照动物显示钠钾ATP酶在基底外侧表面呈现预期的极性分布。这种分布在成熟动物中更为明显。然而,在所有模型中,肾小管扩张和囊性改变都与顶端钠钾ATP酶增加有关。与对照相比,小鼠模型显示钠钾ATP酶的基底外侧染色减少,尽管这不是DPT大鼠模型的特征。钠钾ATP酶的异常定位是多种动物模型和人类PKD的共同特征。这可能导致有利于囊肿形成的异常液体和电解质通量,或者可能代表分化程度较低的肾小管上皮表型的表达。