2003•PubMedRequires access

Renal ultrastructural findings in Anderson-Fabry disease.

Adalberto Sessa, Antonella Toson, Manuela Nebuloni, Francesco Pallotti, Ferdinando Giordano, Graziana G Battini, Alessia Maglio, Mietta Meroni, Gilberto Calconi, Gabriele Bertolone, Pier Luigi Gatti

Open publisher page 30 citations

Abstract

Anderson-Fabry disease (AFd) is caused by an X-linked inborn error in the glycosphingoLipid metabolic pathway due to an enzymatic defect in a lysosomal hydrolase: alpha-galactosidase A. The defect results in the progressive accumulation of neutral glycosphingolipids in most body fluids and several tissues. The clinical manifestations of AFd are related to organ damage and, obviously, are more severe in hemizygous males than in heterozygous females. In the third decade of life, the course of the disease involves severe deterioration of kidney function progressing to end-stage renal failure. All kind of cells of renal structures are filled with glycosphingolipid deposits. Electron microscopic studies document typical intracytoplasmic osmiophilic bodies with a characteristic "zebra" or "onion-skin" appearance due to concentric lamellation of alternating clear and dark layers. Clinical interest in Fabry patients is related to recent advances in treatment with an intravenous specific enzyme to modify the biochemical error of the glycosphingolipid catabolic pathway.

About this research paper

What this paper is about

Anderson-Fabry disease (AFd) is caused by an X-linked inborn error in the glycosphingoLipid metabolic pathway due to an enzymatic defect in a lysosomal hydrolase: alpha-galactosidase A. The defect results in the progressive accumulation of neutral glycosphingolipids in most body fluids and several tissues. The clinical manifestations of AFd are related to organ damage and, obviously, are more severe in hemizygous males than in heterozygous females. In the third decade of life, the course of the disease involves severe deterioration of kidney function progressing to end-stage renal failure. All kind of cells of renal structures are filled with glycosphingolipid deposits. Electron microscopic studies document typical intracytoplasmic osmiophilic bodies with a characteristic "zebra" or "onion-skin" appearance due to concentric lamellation of alternating clear and dark layers. Clinical interest in Fabry patients is related to recent advances in treatment with an intravenous specific enzyme to modify the biochemical error of the glycosphingolipid catabolic pathway.

Why it matters

OpenAlex reports 30 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Anderson-Fabry disease (AFd) is caused by an X-linked inborn error in the glycosphingoLipid metabolic pathway due to an enzymatic defect in a lysosomal hydrolase: alpha-galactosidase A. The defect results in the progressive accumulation of neutral glycosphingolipids in most body fluids and several tissues. The clinical manifestations of AFd are related to organ damage and, obviously, are more severe in hemizygous males than in heterozygous females. In the third decade of life, the course of the disease involves severe deterioration of kidney function progressing to end-stage renal failure. All kind of cells of renal structures are filled with glycosphingolipid deposits. Electron microscopic studies document typical intracytoplasmic osmiophilic bodies with a characteristic "zebra" or "onion-skin" appearance due to concentric lamellation of alternating clear and dark layers. Clinical interest in Fabry patients is related to recent advances in treatment with an intravenous specific enzyme to modify the biochemical error of the glycosphingolipid catabolic pathway.

Key concepts: Glycosphingolipid, Fabry disease, Medicine, Globotriaosylceramide, Fabry's disease, Pathology, Kidney, Alpha-galactosidase

Related papers

Back to paper searchBrowse research topicsOriginal source
Renal ultrastructural findings in Anderson-Fabry disease. — Research Paper | ScholarLens