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Dan Teodor Simionescu

Showing results (1-10 of 5) with videos related to

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Tissue Engineering. Part A|September 10, 2016
Stabilized Collagen and Elastin-Based Scaffolds for Mitral Valve Tissue EngineeringChristopher Deborde, Dan Teodor Simionescu, Cristopher Wright, et al.
Pharmaceutics|May 28, 2022
VLA4-Enhanced Allogeneic Endothelial Progenitor Cell-Based Therapy Preserves the Aortic Valve Function in a Mouse Model of Dyslipidemia and DiabetesAlexandru Filippi, Alina Constantin, Nicoleta Alexandru, et al.
Frontiers in Cardiovascular Medicine|August 30, 2021
High Glucose Induced Changes in Human VEC Phenotype in a 3D Hydrogel Derived From Cell-Free Native Aortic RootSergiu Cecoltan, Letitia Ciortan, Razvan D Macarie, et al.
Diabetes & Vascular Disease Research|September 19, 2019
Diabetes-induced early molecular and functional changes in aortic heart valves in a murine model of atherosclerosisMonica Madalina Tucureanu, Alexandru Filippi, Nicoleta Alexandru, et al.
Tissue Engineering. Part C, Methods|October 16, 2015
Functional Heart Valve Scaffolds Obtained by Complete Decellularization of Porcine Aortic Roots in a Novel Differential Pressure Gradient Perfusion SystemLeslie Neil Sierad, Eliza Laine Shaw, Alexander Bina, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Tissue Engineering. Part A|September 10, 2016
Stabilized Collagen and Elastin-Based Scaffolds for Mitral Valve Tissue EngineeringChristopher Deborde, Dan Teodor Simionescu, Cristopher Wright, et al.
Pharmaceutics|May 28, 2022
VLA4-Enhanced Allogeneic Endothelial Progenitor Cell-Based Therapy Preserves the Aortic Valve Function in a Mouse Model of Dyslipidemia and DiabetesAlexandru Filippi, Alina Constantin, Nicoleta Alexandru, et al.
Frontiers in Cardiovascular Medicine|August 30, 2021
High Glucose Induced Changes in Human VEC Phenotype in a 3D Hydrogel Derived From Cell-Free Native Aortic RootSergiu Cecoltan, Letitia Ciortan, Razvan D Macarie, et al.
Diabetes & Vascular Disease Research|September 19, 2019
Diabetes-induced early molecular and functional changes in aortic heart valves in a murine model of atherosclerosisMonica Madalina Tucureanu, Alexandru Filippi, Nicoleta Alexandru, et al.
Tissue Engineering. Part C, Methods|October 16, 2015
Functional Heart Valve Scaffolds Obtained by Complete Decellularization of Porcine Aortic Roots in a Novel Differential Pressure Gradient Perfusion SystemLeslie Neil Sierad, Eliza Laine Shaw, Alexander Bina, et al.
Pageof 1