The design of physiologically relevant blood vessel in vitro models has been impaired by the difficulty to reproduce the complex architecture of native blood vessels and the mechanisms mediating key cellular functions within miniaturized perfusable systems. Aiming to simulate blood vessel walls, in this work innovative 2D platforms are designed and patterned with magnetic-responsive gelatin for enabling in situ co-culture of mesenchymal stromal cells (MSCs) and human umbilical vein endothelial cells (HUVECs) within confined compartments. The performance of the 2D chips is evaluated based on HUVECs migration, adherence, and angiogenic behavior (proliferation and sprouting), as well as production of Endothelin-1 (endothelium marker), and comp...
Vascular tissue engineering seeks to develop functional blood vessels that comprise of both endothel...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
The use of intravascular stents to restore blood flow through restricted vessels in patients with co...
The design of physiologically relevant blood vessel in vitro models has been impaired by the difficu...
Mimicking the vascularization of the native tissue microenvironment is a widely studied yet still ch...
The growing prevalence of vascular diseases worldwide has emphasized the need for novel tissue-engin...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
The vascular system is one of the first to develop during embryogenesis and is essential for all org...
The human body employs a tube-like system calledblood vessels for transporting molecules such as o...
The creation of vascularized engineered tissues of clinically relevant size is a major challenge of ...
The generation of functional microvascular networks is critical for the development of advanced in v...
Blood vessel models are increasingly recognized to have value in understanding disease and drug disc...
Microphysiological systems (MPSs) (i.e., tissue or organ chips) exploit microfluidics and 3D cell cu...
An overriding limiting factor in tissue engineering is the current inability to vascularise large th...
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
Vascular tissue engineering seeks to develop functional blood vessels that comprise of both endothel...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
The use of intravascular stents to restore blood flow through restricted vessels in patients with co...
The design of physiologically relevant blood vessel in vitro models has been impaired by the difficu...
Mimicking the vascularization of the native tissue microenvironment is a widely studied yet still ch...
The growing prevalence of vascular diseases worldwide has emphasized the need for novel tissue-engin...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
The vascular system is one of the first to develop during embryogenesis and is essential for all org...
The human body employs a tube-like system calledblood vessels for transporting molecules such as o...
The creation of vascularized engineered tissues of clinically relevant size is a major challenge of ...
The generation of functional microvascular networks is critical for the development of advanced in v...
Blood vessel models are increasingly recognized to have value in understanding disease and drug disc...
Microphysiological systems (MPSs) (i.e., tissue or organ chips) exploit microfluidics and 3D cell cu...
An overriding limiting factor in tissue engineering is the current inability to vascularise large th...
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
Vascular tissue engineering seeks to develop functional blood vessels that comprise of both endothel...
Microfluidic organ-on-a-chip designs are used to mimic human tissues, including the vasculature. Her...
The use of intravascular stents to restore blood flow through restricted vessels in patients with co...