Schiffer M S, Michael A F, Kim Y, Fish A J
Lab Invest. 1981 Mar;44(3):234-40.
We have previously shown, using high resolution epifluorescence microscopy, that heterologous rabbit antihuman glomerular basement membrane (GBM) antibody (RAHGBM) stains the GBM of normal human kidney in a bilaminar distribution along the endothelial and epithelial aspects of the GBM. In contrast, Goodpasture (GP) antibody stains a single linear component along the inner aspect of the GBM. In the present study, alterations in the staining reactivity of these components appear consistently to correlate with the known morphologic changes in various glomerulopathies. In idiopathic nephrotic syndrome, no changes from normal were observed. In membranous glomerulopathy, the inner RAHGBM antigen was preserved, but the outer antigen showed an irregular beaded alteration adjacent to membranous GBM immune deposits. In diabetic glomerulopathy, striking increase in the inner RAHGBM component was evident with markedly increased separation from the outer RAHGBM line. In membranoproliferative glomerulonephritis (MPGN), loss of the inner component but preservation of the outer RAHGBM line was evident; however, in type I MPGN, GP antigen was preserved as a single linear component, but in type II MPGN, there was splitting of GP antigen by GBM-dense deposit material into a double linear array along the endothelial and epithelial aspects of the GBM. These observations serve to substantiate our earlier findings that antigenic and nonantigenic components of the GBM are partitioned in the glomerular capillary wall; their selective characteristic alteration in various glomerulopathies additionally supports this view.
我们之前利用高分辨率落射荧光显微镜显示,异源性兔抗人肾小球基底膜(GBM)抗体(RAHGBM)沿着GBM的内皮和上皮层面以双分子层分布模式对正常人肾脏的GBM进行染色。相比之下,Goodpasture(GP)抗体沿着GBM的内侧染出单一的线性成分。在本研究中,这些成分染色反应性的改变似乎始终与各种肾小球病中已知的形态学变化相关。在特发性肾病综合征中,未观察到与正常情况有差异。在膜性肾小球病中,内侧的RAHGBM抗原得以保留,但外侧抗原在膜性GBM免疫沉积物附近呈现不规则的串珠样改变。在糖尿病肾小球病中,内侧RAHGBM成分显著增加,且与外侧RAHGBM线的分离明显增大。在膜增生性肾小球肾炎(MPGN)中,内侧成分缺失但外侧RAHGBM线得以保留;然而,在I型MPGN中,GP抗原作为单一的线性成分得以保留,但在II型MPGN中,GP抗原被GBM致密沉积物材料沿GBM的内皮和上皮层面分裂成双线状排列。这些观察结果证实了我们早期的发现,即GBM的抗原性和非抗原性成分在肾小球毛细血管壁中是分隔的;它们在各种肾小球病中的选择性特征性改变进一步支持了这一观点。