Pathophysiological Role of Vascular Smooth Muscle Alkaline Phosphatase in Medial Artery Calcification
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- Campbell R Sheen
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Pia Kuss
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Sonoko Narisawa
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Manisha C Yadav
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Jessica Nigro
- Cardiometabolic Phenotyping CoreSanford-Burnham Medical Research Institute at Lake NonaOrlandoFLUSA
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- Wei Wang
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- T Nicole Chhea
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Eduard A Sergienko
- Conrad Prebys Center for Chemical GenomicsSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Kapil Kapoor
- Cardiometabolic Phenotyping CoreSanford-Burnham Medical Research Institute at Lake NonaOrlandoFLUSA
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- Michael R Jackson
- Conrad Prebys Center for Chemical GenomicsSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- Marc F Hoylaerts
- Department of Cardiovascular SciencesCenter for Molecular and Vascular BiologyUniversity of LeuvenLeuvenBelgium
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- Anthony B Pinkerton
- Conrad Prebys Center for Chemical GenomicsSanford-Burnham Medical Research InstituteLa JollaCAUSA
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- W Charles O'Neill
- Renal DivisionEmory University School of MedicineAtlantaGAUSA
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- José Luis Millán
- Sanford Children's Health Research CenterSanford-Burnham Medical Research InstituteLa JollaCAUSA
書誌事項
- 公開日
- 2014-11-27
- 権利情報
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- https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model
- DOI
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- 10.1002/jbmr.2420
- 公開者
- Oxford University Press (OUP)
この論文をさがす
説明
<jats:title>ABSTRACT</jats:title> <jats:sec> <jats:title> </jats:title> <jats:p>Medial vascular calcification (MVC) is a pathological phenomenon that causes vascular stiffening and can lead to heart failure; it is common to a variety of conditions, including aging, chronic kidney disease, diabetes, obesity, and a variety of rare genetic diseases. These conditions share the common feature of tissue-nonspecific alkaline phosphatase (TNAP) upregulation in the vasculature. To evaluate the role of TNAP in MVC, we developed a mouse model that overexpresses human TNAP in vascular smooth muscle cells in an X-linked manner. Hemizygous overexpressor male mice (Tagln-Cre+/–; HprtALPL/Y or TNAP-OE) show extensive vascular calcification, high blood pressure, and cardiac hypertrophy, and have a median age of death of 44 days, whereas the cardiovascular phenotype is much less pronounced and life expectancy is longer in heterozygous (Tagln-Cre+/–; HprtALPL/−) female TNAP-OE mice. Gene expression analysis showed upregulation of osteoblast and chondrocyte markers and decreased expression of vascular smooth muscle markers in the aortas of TNAP-OE mice. Through medicinal chemistry efforts, we developed inhibitors of TNAP with drug-like pharmacokinetic characteristics. TNAP-OE mice were treated with the prototypical TNAP inhibitor SBI-425 or vehicle to evaluate the feasibility of TNAP inhibition in vivo. Treatment with this inhibitor significantly reduced aortic calcification and cardiac hypertrophy, and extended lifespan over vehicle-treated controls, in the absence of secondary effects on the skeleton. This study shows that TNAP in the vasculature contributes to the pathology of MVC and that it is a druggable target. © 2015 American Society for Bone and Mineral Research.</jats:p> </jats:sec>
収録刊行物
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- Journal of Bone and Mineral Research
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Journal of Bone and Mineral Research 30 (5), 824-836, 2014-11-27
Oxford University Press (OUP)