Mao Guogen, Ye Shaojing, Zeng Qunli
Institute of Industrial and Environmental Hygiene, Zhejiang University, School of Medicine, Hangzhou 310031, China.
Zhonghua Lao Dong Wei Sheng Zhi Ye Bing Za Zhi. 2002 Dec;20(6):452-4.
To study the effect of supernatants from silicon dioxide(SiO2) stimulated pulmonary alveolar macrophages(PAM) on the localization of connexin 43(Cx43) so as to explore the inhibition level of SiO2 on alveolar epithelial cellular gap-junctional communication(GJIC).
The supermatants from the primary cultured PAM were prepared, and then added 5% (v/v) SiO2 into 2% (v/v) NBS RPMI 1640 to stimulate the normal mink lung epithelial cell line CCL-64 for 24 hours. The localizations of Cx43 in CCL-64 were analyzed by indirect immunofluorescence histochemistry and laser confocal scanning microscopy(LCSM).
The normal cultured CCL-64 cells displayed bright membrane-associated Cx43 plaques labeling and formed dashes at regions of intercellular junction. Being exposed to supernatants from SiO2-stimulated PAM, the CCL-64 cells retained a relative low degree of Cx43 labeling at the cell periphery, localized in cytoplasm, and the individual spot, rather than plaques, were smaller compared to normal cultured cells. Along with the increase of the concentrations of SiO2, the cells displayed a different staining pattern, with clear cluster labeling aggregating towards the nucleus.
The altered localization of the gap-junctional protein Cx43 in alveolar epithelial cells, mediated by SiO2, indicated that the internalization of Cx43 may contribute to the inhibition on GJIC in silica-induced lung epithelium injury.
研究二氧化硅(SiO₂)刺激的肺泡巨噬细胞(PAM)培养上清液对连接蛋白43(Cx43)定位的影响,以探讨SiO₂对肺泡上皮细胞间隙连接通讯(GJIC)的抑制程度。
制备原代培养的PAM培养上清液,然后在2%(v/v)新生牛血清(NBS)RPMI 1640中加入5%(v/v)SiO₂,刺激正常水貂肺上皮细胞系CCL-64 24小时。采用间接免疫荧光组织化学和激光共聚焦扫描显微镜(LCSM)分析CCL-64中Cx43的定位。
正常培养的CCL-64细胞在细胞膜上显示明亮的Cx43斑块标记,并在细胞间连接处形成条纹。暴露于SiO₂刺激的PAM培养上清液后,CCL-64细胞在细胞周边的Cx43标记程度相对较低,定位于细胞质中,与正常培养细胞相比,单个斑点而非斑块较小。随着SiO₂浓度的增加,细胞呈现出不同的染色模式,清晰的簇状标记向细胞核聚集。
SiO₂介导的肺泡上皮细胞间隙连接蛋白Cx43定位改变表明,Cx43的内化可能导致二氧化硅诱导的肺上皮损伤中GJIC受到抑制。