Pages that link to "Q38026240"
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The following pages link to The progression of calcific aortic valve disease through injury, cell dysfunction, and disruptive biologic and physical force feedback loops (Q38026240):
Displaying 28 items.
- In vitro models of aortic valve calcification: solidifying a system (Q27022156) (← links)
- Calcific Aortic Valve Disease Is Associated with Layer-Specific Alterations in Collagen Architecture (Q27321148) (← links)
- The role of valvular endothelial cell paracrine signaling and matrix elasticity on valvular interstitial cell activation (Q33692958) (← links)
- Aortic valve calcification is mediated by a differential response of aortic valve interstitial cells to inflammation (Q33740891) (← links)
- S100/Calgranulin-mediated inflammation accelerates left ventricular hypertrophy and aortic valve sclerosis in chronic kidney disease in a receptor for advanced glycation end products-dependent manner (Q33939707) (← links)
- Surface chemistry regulates valvular interstitial cell differentiation in vitro (Q36289169) (← links)
- Mechanisms of calcification in aortic valve disease: role of mechanokinetics and mechanodynamics (Q36857772) (← links)
- Active tissue stiffness modulation controls valve interstitial cell phenotype and osteogenic potential in 3D culture (Q36943818) (← links)
- The pathology and pathobiology of bicuspid aortic valve: State of the art and novel research perspectives (Q37082556) (← links)
- NOTCH1 Mutations in Aortic Stenosis: Association with Osteoprotegerin/RANK/RANKL. (Q37633121) (← links)
- MicroRNA-449c-5p inhibits osteogenic differentiation of human VICs through Smad4-mediated pathway (Q38617922) (← links)
- Cells and extracellular matrix interplay in cardiac valve disease: because age matters. (Q38718100) (← links)
- Double-stranded RNA upregulates the expression of inflammatory mediators in human aortic valve cells through the TLR3-TRIF-noncanonical NF-κB pathway (Q38722969) (← links)
- Morphology, Clinicopathologic Correlations, and Mechanisms in Heart Valve Health and Disease (Q40630689) (← links)
- Robust Generation of Quiescent Porcine Valvular Interstitial Cell Cultures. (Q41103995) (← links)
- Valve interstitial cell tensional homeostasis directs calcification and extracellular matrix remodeling processes via RhoA signaling (Q41634289) (← links)
- Epigenome alterations in aortic valve stenosis and its related left ventricular hypertrophy (Q42281204) (← links)
- Notch1 Mutation Leads to Valvular Calcification Through Enhanced Myofibroblast Mechanotransduction (Q42591197) (← links)
- Fat cells and membranous fat necrosis of aortic valves: a clinicopathological study (Q43451144) (← links)
- Coupled Simulation of Heart Valves: Applications to Clinical Practice. (Q48632937) (← links)
- Deficiency of CCAAT/enhancer-binding protein homologous protein (CHOP) prevents diet-induced aortic valve calcification in vivo (Q47140339) (← links)
- Creation of disease-inspired biomaterial environments to mimic pathological events in early calcific aortic valve disease (Q47215469) (← links)
- Clickable, photodegradable hydrogels to dynamically modulate valvular interstitial cell phenotype. (Q53633665) (← links)
- Cadherin-11 as a regulator of valve myofibroblast mechanobiology (Q57784517) (← links)
- Globularization and Domestication (Q58227194) (← links)
- Comparing the Role of Mechanical Forces in Vascular and Valvular Calcification Progression (Q61449461) (← links)
- MicroRNA-638 inhibits human aortic valve interstitial cell calcification by targeting Sp7 (Q92368937) (← links)
- Caffeic Acid Phenethyl Ester Ameliorates Calcification by Inhibiting Activation of the AKT/NF-κB/NLRP3 Inflammasome Pathway in Human Aortic Valve Interstitial Cells (Q98177415) (← links)