Tissue engineering (TE) pursues the ambitious goal to heal damaged tissues. One of the most successful TE approaches relies on the use of scaolds specifically designed and fabricated to promote tissue growth. During regeneration the guidance of biological events may be essential to sustain vasculature neoformation inside the engineered scaold. In this context, one of the most eective strategies includes the incorporation of vasculature forming cells, namely endothelial cells (EC), into engineered constructs. However, the most common EC sources currently available, intended as primary cells, are aected by several limitations that make them inappropriate to personalized medicine. Human induced Pluripotent Stem Cells (hiPSC), since the ...
Forming functional blood vessel networks is a major clinical challenge in the fields of tissue engin...
The success of tissue regenerative therapies is contingent upon functional and multicellular vascula...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...
Tissue engineering (TE) pursues the ambitious goal to heal damaged tissues. One of the most success...
Human induced pluripotent stem cells (hiPSCs) hold great promise for cardiovascular regeneration fol...
Pluripotent stem cells hold great promise in regenerative medicine. Theoretically, a variety of tiss...
The discovery of human induced pluripotent stem cells (hiPSCs) opened new avenues for research and p...
An ideal cell source for human therapeutic and disease modeling applications should be easily access...
An ideal cell source for human therapeutic and disease modeling applications should be easily access...
AbstractEndothelial damage and dysfunction are implicated in cardiovascular pathological changes and...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2008.Includes bibliographic...
Here we describe a strategy to model blood vessel development using a well-defined induced pluripote...
Background: Vascular endothelial dysfunction plays a major role in the pathogenesis of atheroscler...
The emergence of induced pluripotent stem cell (iPSC) technology paves the way to generate large num...
SummaryVascular endothelium is a dynamic cellular interface that displays a unique phenotypic plasti...
Forming functional blood vessel networks is a major clinical challenge in the fields of tissue engin...
The success of tissue regenerative therapies is contingent upon functional and multicellular vascula...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...
Tissue engineering (TE) pursues the ambitious goal to heal damaged tissues. One of the most success...
Human induced pluripotent stem cells (hiPSCs) hold great promise for cardiovascular regeneration fol...
Pluripotent stem cells hold great promise in regenerative medicine. Theoretically, a variety of tiss...
The discovery of human induced pluripotent stem cells (hiPSCs) opened new avenues for research and p...
An ideal cell source for human therapeutic and disease modeling applications should be easily access...
An ideal cell source for human therapeutic and disease modeling applications should be easily access...
AbstractEndothelial damage and dysfunction are implicated in cardiovascular pathological changes and...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2008.Includes bibliographic...
Here we describe a strategy to model blood vessel development using a well-defined induced pluripote...
Background: Vascular endothelial dysfunction plays a major role in the pathogenesis of atheroscler...
The emergence of induced pluripotent stem cell (iPSC) technology paves the way to generate large num...
SummaryVascular endothelium is a dynamic cellular interface that displays a unique phenotypic plasti...
Forming functional blood vessel networks is a major clinical challenge in the fields of tissue engin...
The success of tissue regenerative therapies is contingent upon functional and multicellular vascula...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...