Hazen-Martin D J, Todd J H, Sens M A, Khan W, Bylander J E, Smyth B J, Sens D A
Department of Pathology and Laboratory Medicine, Medical University of South Carolina, Charleston 29425.
Environ Health Perspect. 1993 Nov;101(6):510-6. doi: 10.1289/ehp.93101510.
We previously reported that cell cultures of human proximal tubule (HPT) cells respond to ionic cadmium in a manner consistent with well-defined Cd(2+)-elicited responses reported for in vivo systems. However, one unique finding was that the transepithelial electrical resistance and tight junction sealing strands were altered as a result of Cd2+ exposure at micromolar concentrations. These alterations are reexamined in detail in the present report to determine whether the Cd(2+)-induced alterations are specific alterations in the tight junction structure or reflect a general alteration in the cell membrane. Exhaustive analysis of tight junction sealing strands demonstrated no significant alterations due to Cd2+ exposure, even at the concentration that elicited a significant reduction in transepithelial resistance. Further analysis of intramembrane particle distribution demonstrated a significant increase in apical intramembrane particles, indicating that Cd2+ exposure altered the characteristics of the apical cell membrane. Overall, the results were consistent with evidence of Cd(2+)-induced alteration in the apical cell membrane of the HPT cell.
我们之前报道过,人近端小管(HPT)细胞的细胞培养物对离子镉的反应方式与体内系统中明确报道的镉离子(Cd2+)引发的反应一致。然而,一个独特的发现是,微摩尔浓度的Cd2+暴露导致跨上皮电阻和紧密连接封闭索发生改变。本报告对这些改变进行了详细的重新研究,以确定Cd2+诱导的改变是紧密连接结构的特异性改变还是反映了细胞膜的一般改变。对紧密连接封闭索的详尽分析表明,即使在引起跨上皮电阻显著降低的浓度下,Cd2+暴露也未导致明显改变。对膜内颗粒分布的进一步分析表明,顶端膜内颗粒显著增加,表明Cd2+暴露改变了顶端细胞膜的特性。总体而言,结果与Cd2+诱导HPT细胞顶端细胞膜改变的证据一致。