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Nicola Smart

Showing results (61-70 of 78) with videos related to

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Cardiovascular Research|June 26, 2021
Human coronary microvascular contractile dysfunction associates with viable synthetic smooth muscle cellsKim A Dora, Lyudmyla Borysova, Xi Ye, et al.
Annals of the New York Academy of Sciences|October 11, 2012
Myocardial regeneration: expanding the repertoire of thymosin β4 in the ischemic heartNicola Smart, Sveva Bollini, Karina N Dubé, et al.
Stem Cells and Development|May 4, 2011
Amniotic fluid stem cells are cardioprotective following acute myocardial infarctionSveva Bollini, King K Cheung, Johannes Riegler, et al.
Nature|June 10, 2011
De novo cardiomyocytes from within the activated adult heart after injuryNicola Smart, Sveva Bollini, Karina N Dubé, et al.
Cell Reports|October 5, 2022
Apj<sup>+</sup> Vessels Drive Tumor Growth and Represent a Tractable Therapeutic TargetHuan Zhao, Xueying Tian, Lingjuan He, et al.
Cell Reports|November 1, 2018
Apj<sup>+</sup> Vessels Drive Tumor Growth and Represent a Tractable Therapeutic TargetHuan Zhao, Xueying Tian, Lingjuan He, et al.
Blood|July 18, 2014
Human CD68 promoter GFP transgenic mice allow analysis of monocyte to macrophage differentiation in vivoAsif J Iqbal, Eileen McNeill, Theodore S Kapellos, et al.
Journal of Molecular and Cellular Cardiology|December 5, 2016
Aberrant developmental titin splicing and dysregulated sarcomere length in Thymosin β4 knockout miceNicola Smart, Johannes Riegler, Cameron W Turtle, et al.
The Journal of Clinical Investigation|March 30, 2021
Thymosin β4 protects against aortic aneurysm via endocytic regulation of growth factor signalingSonali Munshaw, Susann Bruche, Andia N Redpath, et al.
Circulation Research|January 7, 2022
Extension of Endocardium-Derived Vessels Generate Coronary Arteries in NeonatesJuan Tang, Huan Zhu, Xueying Tian, et al.
Pageof 8

Showing results (61-70 of 78) with videos related to

Sort By:
Pageof 8
Cardiovascular Research|June 26, 2021
Human coronary microvascular contractile dysfunction associates with viable synthetic smooth muscle cellsKim A Dora, Lyudmyla Borysova, Xi Ye, et al.
Annals of the New York Academy of Sciences|October 11, 2012
Myocardial regeneration: expanding the repertoire of thymosin β4 in the ischemic heartNicola Smart, Sveva Bollini, Karina N Dubé, et al.
Stem Cells and Development|May 4, 2011
Amniotic fluid stem cells are cardioprotective following acute myocardial infarctionSveva Bollini, King K Cheung, Johannes Riegler, et al.
Nature|June 10, 2011
De novo cardiomyocytes from within the activated adult heart after injuryNicola Smart, Sveva Bollini, Karina N Dubé, et al.
Cell Reports|October 5, 2022
Apj<sup>+</sup> Vessels Drive Tumor Growth and Represent a Tractable Therapeutic TargetHuan Zhao, Xueying Tian, Lingjuan He, et al.
Cell Reports|November 1, 2018
Apj<sup>+</sup> Vessels Drive Tumor Growth and Represent a Tractable Therapeutic TargetHuan Zhao, Xueying Tian, Lingjuan He, et al.
Blood|July 18, 2014
Human CD68 promoter GFP transgenic mice allow analysis of monocyte to macrophage differentiation in vivoAsif J Iqbal, Eileen McNeill, Theodore S Kapellos, et al.
Journal of Molecular and Cellular Cardiology|December 5, 2016
Aberrant developmental titin splicing and dysregulated sarcomere length in Thymosin β4 knockout miceNicola Smart, Johannes Riegler, Cameron W Turtle, et al.
The Journal of Clinical Investigation|March 30, 2021
Thymosin β4 protects against aortic aneurysm via endocytic regulation of growth factor signalingSonali Munshaw, Susann Bruche, Andia N Redpath, et al.
Circulation Research|January 7, 2022
Extension of Endocardium-Derived Vessels Generate Coronary Arteries in NeonatesJuan Tang, Huan Zhu, Xueying Tian, et al.
Pageof 8