2009Unpublished venueRequires access

Mediators of renal injury in membranous nephropathy

Masaomi Nangaku, William G. Couser

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Abstract

Membranous nephropathy (MN) is a common glomerular disease characterized by podocyte injury and proteinuria, often in the nephrotic range. Heymann nephritis (HN), a rat model of MN, has contributed to elucidation of the under- lying pathogenic mechanisms which involve in situ formation of subepithelial immune deposits of antibody reactive with podocyte antigen(s) that produce glomerular injury by damaging and/or activating podocytes through comple- ment-dependent processes. Disorganization of the cytoskeleton with subse- quent redistribution of components of the slit diaphragm and loss of the glomerular charge barrier induces proteinuria in MN. C5b-9 in sublytic quanti- ties stimulates podocytes to produce proteases, oxidants, prostanoids, extra- cellular matrix components, and cytokines. Alterations of the cytoskeleton induced by C5b-9 also lead podocyte depletion through apoptosis and detach- ment of viable podocytes. Furthermore, complement components in proteinuric urine induce proximal tubular epithelial cell injury and mediate progressive tubu- lointerstitial injury in MN.

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What this paper is about

Membranous nephropathy (MN) is a common glomerular disease characterized by podocyte injury and proteinuria, often in the nephrotic range. Heymann nephritis (HN), a rat model of MN, has contributed to elucidation of the under- lying pathogenic mechanisms which involve in situ formation of subepithelial immune deposits of antibody reactive with podocyte antigen(s) that produce glomerular injury by damaging and/or activating podocytes through comple- ment-dependent processes. Disorganization of the cytoskeleton with subse- quent redistribution of components of the slit diaphragm and loss of the glomerular charge barrier induces proteinuria in MN. C5b-9 in sublytic quanti- ties stimulates podocytes to produce proteases, oxidants, prostanoids, extra- cellular matrix components, and cytokines. Alterations of the cytoskeleton induced by C5b-9 also lead podocyte depletion through apoptosis and detach- ment of viable podocytes. Furthermore, complement components in proteinuric urine induce proximal tubular epithelial cell injury and mediate progressive tubu- lointerstitial injury in MN.

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Available abstract

Membranous nephropathy (MN) is a common glomerular disease characterized by podocyte injury and proteinuria, often in the nephrotic range. Heymann nephritis (HN), a rat model of MN, has contributed to elucidation of the under- lying pathogenic mechanisms which involve in situ formation of subepithelial immune deposits of antibody reactive with podocyte antigen(s) that produce glomerular injury by damaging and/or activating podocytes through comple- ment-dependent processes. Disorganization of the cytoskeleton with subse- quent redistribution of components of the slit diaphragm and loss of the glomerular charge barrier induces proteinuria in MN. C5b-9 in sublytic quanti- ties stimulates podocytes to produce proteases, oxidants, prostanoids, extra- cellular matrix components, and cytokines. Alterations of the cytoskeleton induced by C5b-9 also lead podocyte depletion through apoptosis and detach- ment of viable podocytes. Furthermore, complement components in proteinuric urine induce proximal tubular epithelial cell injury and mediate progressive tubu- lointerstitial injury in MN.

Key concepts: Podocyte, Membranous nephropathy, Chemistry, Cell biology, Nephrotic syndrome, Minimal change disease, Glomerulonephritis, Nephritis

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