Literature DB >> 24151757

Sclerostin as a potential novel biomarker for aortic valve calcification: an in-vivo and ex-vivo study.

Ralf Koos1, Vincent Brandenburg, Andreas Horst Mahnken, Rebekka Schneider, Guido Dohmen, Rüdiger Autschbach, Nikolaus Marx, Rafael Kramann.   

Abstract

BACKGROUND AND AIM OF THE STUDY: Sclerostin is a key negative regulator of bone formation. It was hypothesized that sclerostin might also play a potential role in the development of aortic valve calcification (AVC). The study aim was to evaluate serum sclerostin levels in patients with different degrees of AVC compared to a healthy control group, and to investigate local sclerostin expression in explanted calcified and non-calcified aortic valves.
METHODS: A prospective cross-sectional study was performed in 115 patients (mean age 74 +/- 7 years) with echocardiographically proven AVC. Sclerostin serum levels were measured using ELISA and compared to values obtained from a healthy control population. For quantification of AVC, all patients of the study cohort underwent non-contrast-enhanced dual-source computed tomography (DSCT). Immunohistochemistry (IHC) staining for sclerostin and mRNA sclerostin expression was analyzed in 10 calcified aortic valves and 10 non-calcified age-matched control valves.
RESULTS: Patients with AVC showed significantly higher sclerostin serum levels as compared to healthy controls (0.94 +/- 0.45 versus 0.58 +/- 0.26 ng/ml, p < 0.001). A significant correlation between sclerostin serum levels and Agatston AVC scores as assessed by DSCT was observed (r = 0.62, p < 0.001) in the study cohort. IHC revealed positive sclerostin staining in nine calcified valves, in contrast to negative staining for sclerostin in all non-calcified valves. Quantitative real-time PCR confirmed the increased sclerostin expression on mRNA level, with a significant up-regulation of sclerostin mRNA (fold change 150 +/- 52, p < 0.001) expression being shown in calcified aortic valves compared to non-calcified control valves. Co-staining experiments revealed that sclerostin-expressing cells co-express the major osteogenic transcription factor Runx2 and the extracellular matrix protein osteocalcin.
CONCLUSION: Patients with AVC showed increased sclerostin serum levels compared to a healthy reference population, and it was revealed that the severity of AVC may be linked to increased sclerostin serum levels. Moreover, the PCR and staining data demonstrated an increased sclerostin expression in parallel to prototypic markers of osteogenic transdifferentiation, indicating a role of sclerostin in the valvular calcification process.

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Year:  2013        PMID: 24151757

Source DB:  PubMed          Journal:  J Heart Valve Dis        ISSN: 0966-8519


  33 in total

1.  Relationship between serum sclerostin, vascular sclerostin expression and vascular calcification assessed by different methods in ESRD patients eligible for renal transplantation: a cross-sectional study.

Authors:  Min Li; Hua Zhou; Min Yang; Changying Xing
Journal:  Int Urol Nephrol       Date:  2018-12-04       Impact factor: 2.370

Review 2.  Role and mechanism of action of sclerostin in bone.

Authors:  Jesus Delgado-Calle; Amy Y Sato; Teresita Bellido
Journal:  Bone       Date:  2016-10-12       Impact factor: 4.398

Review 3.  From skeletal to cardiovascular disease in 12 steps-the evolution of sclerostin as a major player in CKD-MBD.

Authors:  Vincent M Brandenburg; Patrick D'Haese; Annika Deck; Djalila Mekahli; Björn Meijers; Ellen Neven; Pieter Evenepoel
Journal:  Pediatr Nephrol       Date:  2015-03-04       Impact factor: 3.714

4.  Elevated levels of serum sclerostin are linked to adverse cardiovascular outcomes in peritoneal dialysis patients.

Authors:  Li Gong; Dongxia Zheng; Jiangzi Yuan; Liou Cao; Zhaohui Ni; Wei Fang
Journal:  Int Urol Nephrol       Date:  2018-01-22       Impact factor: 2.370

Review 5.  Sclerostin and DKK1: new players in renal bone and vascular disease.

Authors:  Pieter Evenepoel; Patrick D'Haese; Vincent Brandenburg
Journal:  Kidney Int       Date:  2015-06-17       Impact factor: 10.612

6.  Association of circulating sclerostin with vascular calcification in Afro-Caribbean men.

Authors:  Allison L Kuipers; Iva Miljkovic; J Jeffery Carr; James G Terry; Cara S Nestlerode; Yaorong Ge; Clareann H Bunker; Alan L Patrick; Joseph M Zmuda
Journal:  Atherosclerosis       Date:  2015-01-17       Impact factor: 5.162

Review 7.  Bone kidney interactions.

Authors:  Thomas L Nickolas; Sophie A Jamal
Journal:  Rev Endocr Metab Disord       Date:  2015-06       Impact factor: 6.514

Review 8.  Sclerostin, cardiovascular disease and mortality: a systematic review and meta-analysis.

Authors:  Mehmet Kanbay; Yalcin Solak; Dimitrie Siriopol; Gamze Aslan; Baris Afsar; Dilek Yazici; Adrian Covic
Journal:  Int Urol Nephrol       Date:  2016-08-06       Impact factor: 2.370

9.  Increased circulating sclerostin levels in end-stage renal disease predict biopsy-verified vascular medial calcification and coronary artery calcification.

Authors:  Abdul Rashid Qureshi; Hannes Olauson; Anna Witasp; Mathias Haarhaus; Vincent Brandenburg; Annika Wernerson; Bengt Lindholm; Magnus Söderberg; Lars Wennberg; Louise Nordfors; Jonaz Ripsweden; Peter Barany; Peter Stenvinkel
Journal:  Kidney Int       Date:  2015-09-02       Impact factor: 10.612

10.  The Impact of Rosuvastatin on the Density Score of Coronary Artery Calcification in Coronary Artery Disease Patients with Type 2 Diabetes Mellitus: Rationale and Design of RosCal Study.

Authors:  Wenbin Zhang; Yi Luan; Chongying Jin; Shengjie Xu; Xukun Bi; Yanbo Zhao; Fuyu Qiu; Guosheng Fu; Min Wang
Journal:  Clin Drug Investig       Date:  2016-12       Impact factor: 2.859

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