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Showing 1-20 of 1,451 results
  1. Biomechanical Remodeling of Aortic Valve Interstitial Cells During Calcified Lesion Formation In Vitro

    Healthy aortic heart valves are essential to the regulation of unidirectional blood flow. Calcific aortic valve disease (CAVD) is an actively...

    Justine Yushiuan Shih, Terence Gee, ... Jonathan Butcher in Annals of Biomedical Engineering
    Article 19 February 2024
  2. circ-CCND1 regulates the CCND1/P53/P21 pathway through sponging miR-138-5p in valve interstitial cells to aggravate aortic valve calcification

    To discuss the effect and mechanism of circular-CCND1 (circ-CCND1) on the regulation of calcified aortic valve disease (CAVD). Differentially...

    Fei Yan, **ang **e, ... Lin Shi in Journal of Physiology and Biochemistry
    Article 01 July 2022
  3. Inhibition of miR-101-3p prevents human aortic valve interstitial cell calcification through regulation of CDH11/SOX9 expression

    Background

    Calcific aortic valve disease (CAVD) is the second leading cause of adult heart diseases. The purpose of this study is to investigate...

    Jianglei Chen, Yi Lin, Zhongjie Sun in Molecular Medicine
    Article Open access 21 February 2023
  4. Heart Valve Regeneration

    The valves of the heart cannot regenerate spontaneously. Therefore, heart valve disease generally necessitates surgical repair or replacement of the...
    Elena Rabkin-Aikawa, John E. Mayer Jr., Frederick J. Schoen in Regenerative Medicine II
    Chapter
  5. Monocytes augment inflammatory responses in human aortic valve interstitial cells via β2-integrin/ICAM-1-mediated signaling

    Objective

    Inflammatory infiltration in aortic valves promotes calcific aortic valve disease (CAVD) progression. While soluble extracellular matrix...

    Zichao Luo, Erlinda The, ... **anzhong Meng in Inflammation Research
    Article 11 April 2022
  6. Chondroitin Sulfate Promotes Interstitial Cell Activation and Calcification in an In Vitro Model of the Aortic Valve

    Purpose

    Calcific aortic valve disease (CAVD), has been characterized as a cascade of cellular changes leading to leaflet thickening and valvular...

    Sudip Dahal, Jonathan Alejandro Bramsen, ... Gretchen J. Mahler in Cardiovascular Engineering and Technology
    Article 04 November 2021
  7. Metformin alleviates the calcification of aortic valve interstitial cells through activating the PI3K/AKT pathway in an AMPK dependent way

    Background

    Calcific aortic valve disease (CAVD) is the most prevalent valvular disease worldwide. However, no effective treatment could delay or...

    Qiao En, Huang Ze**, ... Wang Wei in Molecular Medicine
    Article Open access 11 December 2021
  8. LncRNA AFAP1-AS1 promotes M1 polarization of macrophages and osteogenic differentiation of valve interstitial cells

    Little is known about the biological functions and underlying mechanisms of long non-coding RNA AFAP1-AS1 in degenerative calcified aortic valve...

    Welai He, Hong Che, ... Ruyuan Zhou in Journal of Physiology and Biochemistry
    Article 27 May 2021
  9. Noncoding RNA regulates the expression of Krm1 and Dkk2 to synergistically affect aortic valve lesions

    Calcific aortic valve disease (CAVD) is becoming an increasingly important global medical problem, but effective pharmacological treatments are...

    Gaopeng **an, Rong Huang, ... Qingchun Zeng in Experimental & Molecular Medicine
    Article Open access 01 July 2024
  10. Advanced glycation end product-modified low-density lipoprotein promotes pro-osteogenic reprogramming via RAGE/NF-κB pathway and exaggerates aortic valve calcification in hamsters

    Background

    Advanced glycation end product-modified low-density lipoprotein (AGE-LDL) is related to inflammation and the development of...

    ** Yang, **gxin Zeng, ... Qingchun Zeng in Molecular Medicine
    Article Open access 05 June 2024
  11. The role of neutrophil elastase in aortic valve calcification

    Background

    Calcific aortic valve disease (CAVD) is the most commonly valvular disease in the western countries initiated by inflammation and abnormal...

    Yan Liu, Peng Jiang, ... Yaguang Weng in Journal of Translational Medicine
    Article Open access 09 April 2022
  12. Identification of Circulating Inflammatory Proteins Associated with Calcific Aortic Valve Stenosis by Multiplex Analysis

    Calcific aortic valve stenosis (CAVS) is characterized by increasing inflammation and progressive calcification in the aortic valve leaflets and is a...

    Rui Lin, Yuexin Zhu, ... Jie Du in Cardiovascular Toxicology
    Article 08 April 2024
  13. RNA-sequencing of human aortic valves identifies that miR-629-3p and TAGLN miRNA-mRNA pair involving in calcified aortic valve disease

    This study aimed to uncover the microRNA and messenger RNA (miRNA/mRNA) interactions in the pathophysiological process of calcified aortic valve...

    Chunli Wang, Juanjuan Han, ... Kang Xu in Journal of Physiology and Biochemistry
    Article 01 July 2022
  14. The Individual and Combined Effects of Shear, Tension, and Flexure on Aortic Heart Valve Endothelial Cells in Culture

    Purpose

    The necessity of living engineered heart valves to treat patients with severe heart disease poses a challenge to tissue engineers. To reach...

    Nandini Deb, Carla M. R. Lacerda in Cardiovascular Engineering and Technology
    Article 22 November 2021
  15. Epigenetic age acceleration and risk of aortic valve stenosis: a bidirectional Mendelian randomization study

    Background

    Aortic valve stenosis (AVS) is the most prevalent cardiac valve lesion in developed countries, and pathogenesis is closely related to...

    Wanqian Pan, Qi Huang, ... Weixiang Chen in Clinical Epigenetics
    Article Open access 12 March 2024
  16. Pro-inflammatory mediators released by activated monocytes promote aortic valve fibrocalcific activity

    Background

    Calcific aortic valve disease (CAVD) is the most prevalent heart valve disorder in the elderly. Valvular fibrocalcification is a...

    Peijian Zhang, Erlinda The, ... **anzhong Meng in Molecular Medicine
    Article Open access 21 January 2022
  17. Fibrosis and expression of extracellular matrix proteins in human interventricular septum in aortic valve stenosis and regurgitation

    Valvular heart disease leads to ventricular pressure and/or volume overload. Pressure overload leads to fibrosis, which might regress with its...

    David Sedmera, Alena Kvasilova, ... Radka Kockova in Histochemistry and Cell Biology
    Article Open access 12 February 2024
  18. Screening of immune-related secretory proteins linking chronic kidney disease with calcific aortic valve disease based on comprehensive bioinformatics analysis and machine learning

    Background

    Chronic kidney disease (CKD) is one of the most significant cardiovascular risk factors, playing vital roles in various cardiovascular...

    Enyi Zhu, **aorong Shu, ... Zhihua Zheng in Journal of Translational Medicine
    Article Open access 01 June 2023
  19. Simulation of Mitral Valve Plasticity in Response to Myocardial Infarction

    Left ventricular myocardial infarction (MI) has broad and debilitating effects on cardiac function. In many cases, MI leads to ischemic mitral...

    Bruno V. Rego, Amir H. Khalighi, ... Michael S. Sacks in Annals of Biomedical Engineering
    Article 27 August 2022
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