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Intercellular adhesion molecule-1 expression in human kidneys with glomerulonephritis.

Intercellular adhesion molecule-1 expression in human kidneys with glomerulonephritis. Intercellular adhesion molecule-1 (ICAM-1) plays an important role in immune responses. Expression of this molecule was examined on cryostat sections of 15 normal human and 112 glomerulonephritic kidneys using a specific monoclonal antibody and the indirect immunoperoxidase staining technique. The expression of ICAM-1 on renal structures was compared to that of HLA-DQ, -DR, -DR/DP and -DP antigens. On normal kidneys ICAM-1 was observed on some Bowman's capsular cells and on single glomerular cells which probably represent endothelial and mesangial cells. ICAM-1 was present on peritubular capillaries and on vascular endothelium of large vessels as well as on fibroblasts, whereas no expression of ICAM-1 on proximal tubular epithelial cells (PTECs) was detected. In normal renal tissues the distribution of ICAM-1 was similar to that of HLA-DQ and -DP antigens. In kidneys with different forms of glomerulonephritis especially in association with interstitial inflammation, an abnormal expression of ICAM-1 on PTECs was frequently correlated with aberrant expression of HLA-DQ and -DP antigens. These results further support the hypothesis that PTECs may participate in cell-mediated immune reactions in glomerulonephritis. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Clinical nephrology Pubmed

Intercellular adhesion molecule-1 expression in human kidneys with glomerulonephritis.

Clinical nephrology , Volume 36 (4): -194 – Jan 9, 1992

Intercellular adhesion molecule-1 expression in human kidneys with glomerulonephritis.


Abstract

Intercellular adhesion molecule-1 (ICAM-1) plays an important role in immune responses. Expression of this molecule was examined on cryostat sections of 15 normal human and 112 glomerulonephritic kidneys using a specific monoclonal antibody and the indirect immunoperoxidase staining technique. The expression of ICAM-1 on renal structures was compared to that of HLA-DQ, -DR, -DR/DP and -DP antigens. On normal kidneys ICAM-1 was observed on some Bowman's capsular cells and on single glomerular cells which probably represent endothelial and mesangial cells. ICAM-1 was present on peritubular capillaries and on vascular endothelium of large vessels as well as on fibroblasts, whereas no expression of ICAM-1 on proximal tubular epithelial cells (PTECs) was detected. In normal renal tissues the distribution of ICAM-1 was similar to that of HLA-DQ and -DP antigens. In kidneys with different forms of glomerulonephritis especially in association with interstitial inflammation, an abnormal expression of ICAM-1 on PTECs was frequently correlated with aberrant expression of HLA-DQ and -DP antigens. These results further support the hypothesis that PTECs may participate in cell-mediated immune reactions in glomerulonephritis.

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ISSN
0301-0430
pmid
1683616

Abstract

Intercellular adhesion molecule-1 (ICAM-1) plays an important role in immune responses. Expression of this molecule was examined on cryostat sections of 15 normal human and 112 glomerulonephritic kidneys using a specific monoclonal antibody and the indirect immunoperoxidase staining technique. The expression of ICAM-1 on renal structures was compared to that of HLA-DQ, -DR, -DR/DP and -DP antigens. On normal kidneys ICAM-1 was observed on some Bowman's capsular cells and on single glomerular cells which probably represent endothelial and mesangial cells. ICAM-1 was present on peritubular capillaries and on vascular endothelium of large vessels as well as on fibroblasts, whereas no expression of ICAM-1 on proximal tubular epithelial cells (PTECs) was detected. In normal renal tissues the distribution of ICAM-1 was similar to that of HLA-DQ and -DP antigens. In kidneys with different forms of glomerulonephritis especially in association with interstitial inflammation, an abnormal expression of ICAM-1 on PTECs was frequently correlated with aberrant expression of HLA-DQ and -DP antigens. These results further support the hypothesis that PTECs may participate in cell-mediated immune reactions in glomerulonephritis.

Journal

Clinical nephrologyPubmed

Published: Jan 9, 1992

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