Abstract Background Induced pluripotent stem-cell derived endothelial cells (iPSC-ECs) can be generated from any somatic cell and their iPSC sources possess unlimited self-renewal. Previous demonstration of their proangiogenic activity makes them a promising cell type for treatment of ischemic injury. As with many other stem cell approaches, the low rate of in-vivo survival has been a major limitation to the efficacy of iPSC-ECs to date. In this study, we aimed to increase the in-vivo lifetime of iPSC-ECs by culturing them on electrospun polycaprolactone (PCL)/gelatin scaffolds, before quantifying the subsequent impact on their proangiogenic function. Methods iPSC-ECs were isolated and stably transfected with a luciferase reporter to facili...
Directing angiogenic differentiation of mesenchymal stem cells (MSCs) still remains challenging for ...
Objective: Three-dimensional (3D) biomimetic nanofiber scaffolds have widespread applications in bi...
Introduction: Rapid establishment of functional blood vessels is a prerequisite for successful tissu...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
Current therapeutic angiogenesis strategies are focused on the development of biologically responsiv...
Tissue engineering has gained attention as an alternative approach for developing small diameter tis...
BACKGROUND: Human pluripotent stem cell (hPSC)-derived endothelial cells (ECs) have limited clinical...
Cell therapies are emerging as a new therapeutic frontier for the treatment of ischemic disease. How...
The objective of this study is elucidating the mechanisms by which the wettability of nanofibrous el...
The study described here has made considerable progress in developing techniques and optimizing mate...
Cardiovascular disease (CVD) is the leading cause of morbidity and mortality worldwide, (1, 2). Curr...
The goal of therapeutic angiogenesis is the development of functional and mature vasculature by comb...
The aim of this study was to look at how the composition and morphology of polymer scaffolds could b...
Aims The in situ release and maintaining of cells able to promote revascularization is a new goal of...
Coronary artery disease is the leading cause of death amongst the cardiovascular diseases (~51%), wh...
Directing angiogenic differentiation of mesenchymal stem cells (MSCs) still remains challenging for ...
Objective: Three-dimensional (3D) biomimetic nanofiber scaffolds have widespread applications in bi...
Introduction: Rapid establishment of functional blood vessels is a prerequisite for successful tissu...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
Current therapeutic angiogenesis strategies are focused on the development of biologically responsiv...
Tissue engineering has gained attention as an alternative approach for developing small diameter tis...
BACKGROUND: Human pluripotent stem cell (hPSC)-derived endothelial cells (ECs) have limited clinical...
Cell therapies are emerging as a new therapeutic frontier for the treatment of ischemic disease. How...
The objective of this study is elucidating the mechanisms by which the wettability of nanofibrous el...
The study described here has made considerable progress in developing techniques and optimizing mate...
Cardiovascular disease (CVD) is the leading cause of morbidity and mortality worldwide, (1, 2). Curr...
The goal of therapeutic angiogenesis is the development of functional and mature vasculature by comb...
The aim of this study was to look at how the composition and morphology of polymer scaffolds could b...
Aims The in situ release and maintaining of cells able to promote revascularization is a new goal of...
Coronary artery disease is the leading cause of death amongst the cardiovascular diseases (~51%), wh...
Directing angiogenic differentiation of mesenchymal stem cells (MSCs) still remains challenging for ...
Objective: Three-dimensional (3D) biomimetic nanofiber scaffolds have widespread applications in bi...
Introduction: Rapid establishment of functional blood vessels is a prerequisite for successful tissu...