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  1. Article ; Online: Microvasculopathy and soft tissue calcification in mice are governed by fetuin-A, magnesium and pyrophosphate.

    Babler, Anne / Schmitz, Carlo / Buescher, Andrea / Herrmann, Marietta / Gremse, Felix / Gorgels, Theo / Floege, Juergen / Jahnen-Dechent, Willi

    PloS one

    2020  Volume 15, Issue 2, Page(s) e0228938

    Abstract: ... of calcification, namely fetuin-A, magnesium, and pyrophosphate. All three of these are individually known ... reduced serum fetuin-A, magnesium and pyrophosphate levels. ... All treatments markedly reduced soft tissue calcification, demonstrated by computed tomography, histology and ...

    Abstract Calcifications can disrupt organ function in the cardiovascular system and the kidney, and are particularly common in patients with chronic kidney disease (CKD). Fetuin-A deficient mice maintained against the genetic background DBA/2 exhibit particularly severe soft tissue calcifications, while fetuin-A deficient C57BL/6 mice remain healthy. We employed molecular genetic analysis to identify risk factors of calcification in fetuin-A deficient mice. We sought to identify pharmaceutical therapeutic targets that could be influenced by dietary of parenteral supplementation. We studied the progeny of an intercross of fetuin-A deficient DBA/2 and C57BL/6 mice to identify candidate risk genes involved in calcification. We determined that a hypomorphic mutation of the Abcc6 gene, a liver ATP transporter supplying systemic pyrophosphate, and failure to regulate the Trpm6 magnesium transporter in kidney were associated with severity of calcification. Calcification prone fetuin-A deficient mice were alternatively treated with parenteral administration of fetuin-A dietary magnesium supplementation, phosphate restriction, or by or parenteral pyrophosphate. All treatments markedly reduced soft tissue calcification, demonstrated by computed tomography, histology and tissue calcium measurement. We show that pathological ectopic calcification in fetuin-A deficient DBA/2 mice is caused by a compound deficiency of three major extracellular and systemic inhibitors of calcification, namely fetuin-A, magnesium, and pyrophosphate. All three of these are individually known to contribute to stabilize protein-mineral complexes and thus inhibit mineral precipitation from extracellular fluid. We show for the first time a compound triple deficiency that can be treated by simple dietary or parenteral supplementation. This is of special importance in patients with advanced CKD, who commonly exhibit reduced serum fetuin-A, magnesium and pyrophosphate levels.
    MeSH term(s) Animals ; Calcinosis/genetics ; Calcinosis/pathology ; Diphosphates/metabolism ; Disease Models, Animal ; Female ; Kidney/pathology ; Liver/pathology ; Magnesium/metabolism ; Male ; Mice ; Mice, Inbred C57BL ; Mice, Inbred DBA ; Microvessels/metabolism ; Microvessels/physiology ; Minerals ; Multidrug Resistance-Associated Proteins/genetics ; Multidrug Resistance-Associated Proteins/metabolism ; Renal Insufficiency, Chronic/complications ; TRPM Cation Channels/genetics ; TRPM Cation Channels/metabolism ; alpha-2-HS-Glycoprotein/metabolism ; alpha-2-HS-Glycoprotein/physiology ; alpha-Fetoproteins
    Chemical Substances Abcc6 protein, mouse ; Diphosphates ; Minerals ; Multidrug Resistance-Associated Proteins ; TRPM Cation Channels ; Trpm6 protein, mouse ; alpha-2-HS-Glycoprotein ; alpha-Fetoproteins ; diphosphoric acid (4E862E7GRQ) ; Magnesium (I38ZP9992A)
    Language English
    Publishing date 2020-02-19
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 2267670-3
    ISSN 1932-6203 ; 1932-6203
    ISSN (online) 1932-6203
    ISSN 1932-6203
    DOI 10.1371/journal.pone.0228938
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: Microvasculopathy and soft tissue calcification in mice are governed by fetuin-A, magnesium and pyrophosphate.

    Anne Babler / Carlo Schmitz / Andrea Buescher / Marietta Herrmann / Felix Gremse / Theo Gorgels / Juergen Floege / Willi Jahnen-Dechent

    PLoS ONE, Vol 15, Iss 2, p e

    2020  Volume 0228938

    Abstract: ... of calcification, namely fetuin-A, magnesium, and pyrophosphate. All three of these are individually known ... reduced serum fetuin-A, magnesium and pyrophosphate levels. ... All treatments markedly reduced soft tissue calcification, demonstrated by computed tomography, histology and ...

    Abstract Calcifications can disrupt organ function in the cardiovascular system and the kidney, and are particularly common in patients with chronic kidney disease (CKD). Fetuin-A deficient mice maintained against the genetic background DBA/2 exhibit particularly severe soft tissue calcifications, while fetuin-A deficient C57BL/6 mice remain healthy. We employed molecular genetic analysis to identify risk factors of calcification in fetuin-A deficient mice. We sought to identify pharmaceutical therapeutic targets that could be influenced by dietary of parenteral supplementation. We studied the progeny of an intercross of fetuin-A deficient DBA/2 and C57BL/6 mice to identify candidate risk genes involved in calcification. We determined that a hypomorphic mutation of the Abcc6 gene, a liver ATP transporter supplying systemic pyrophosphate, and failure to regulate the Trpm6 magnesium transporter in kidney were associated with severity of calcification. Calcification prone fetuin-A deficient mice were alternatively treated with parenteral administration of fetuin-A dietary magnesium supplementation, phosphate restriction, or by or parenteral pyrophosphate. All treatments markedly reduced soft tissue calcification, demonstrated by computed tomography, histology and tissue calcium measurement. We show that pathological ectopic calcification in fetuin-A deficient DBA/2 mice is caused by a compound deficiency of three major extracellular and systemic inhibitors of calcification, namely fetuin-A, magnesium, and pyrophosphate. All three of these are individually known to contribute to stabilize protein-mineral complexes and thus inhibit mineral precipitation from extracellular fluid. We show for the first time a compound triple deficiency that can be treated by simple dietary or parenteral supplementation. This is of special importance in patients with advanced CKD, who commonly exhibit reduced serum fetuin-A, magnesium and pyrophosphate levels.
    Keywords Medicine ; R ; Science ; Q
    Subject code 616
    Language English
    Publishing date 2020-01-01T00:00:00Z
    Publisher Public Library of Science (PLoS)
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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