We used 3D cell printing to emulate an airway coupled with a naturally-derived blood vessel network in vitro. Decellularized extracellular matrix bioink derived from porcine tracheal mucosa (tmdECM) was used to encapsulate and print endothelial cells and fibroblasts within a designated polycarprolactone (PCL) frame. Providing a niche that emulates conditions in vivo, tmdECM gradually drives endothelial re-orientation, which leads to the formation of a lumen and blood vessel network. A fully-differentiated in vitro airway model was assembled with the printed vascular platform, and collectively reproduced a functional interface between the airway epithelium and the vascular network. The model presented respiratory symptoms including asthmatic...
[[abstract]]A tissue engineering trachea with structural similarity to native trachea was fabricated...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Vascular diseases, such as atherosclerosis and thrombosis, are the leading cause of morbidity and mo...
DoctorOrgan-on-chip technologies has a great potential of predicting the pharmaceutical effectivenes...
Recently, 3D printing technology has become a powerful tool, enabling precise control and distributi...
Recent advances in materials science coupled with advanced manufacturing techniques have opened up n...
Organ-on-a-chip technologies have made significant strides in recapitulating the complex multicellul...
Fabricating clinically relevant three-dimensional (3D) tissue/organ analogue is one of the main issu...
Despite notable advances in extrusion-based 3D bioprinting, it remains a challenge to create a clini...
Respiratory diseases and major airway trauma represent a global healthcare emergency with most treat...
MasterOrgan-on-a-chip is an emerging technology that can biomimic the dynamic microenvironment and k...
Through an inkjet bio-printing, we have previously developed a novel 3D-structured lung model. Despi...
A dependence on the use of animal models and reductionistic in vitro models of the respiratory epith...
Intensive efforts in recent years to develop and commercialize in vitro alternatives in the field of...
Organ-on-a-chip is an emerging technology that can biomimic the dynamic microenvironment and key fun...
[[abstract]]A tissue engineering trachea with structural similarity to native trachea was fabricated...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Vascular diseases, such as atherosclerosis and thrombosis, are the leading cause of morbidity and mo...
DoctorOrgan-on-chip technologies has a great potential of predicting the pharmaceutical effectivenes...
Recently, 3D printing technology has become a powerful tool, enabling precise control and distributi...
Recent advances in materials science coupled with advanced manufacturing techniques have opened up n...
Organ-on-a-chip technologies have made significant strides in recapitulating the complex multicellul...
Fabricating clinically relevant three-dimensional (3D) tissue/organ analogue is one of the main issu...
Despite notable advances in extrusion-based 3D bioprinting, it remains a challenge to create a clini...
Respiratory diseases and major airway trauma represent a global healthcare emergency with most treat...
MasterOrgan-on-a-chip is an emerging technology that can biomimic the dynamic microenvironment and k...
Through an inkjet bio-printing, we have previously developed a novel 3D-structured lung model. Despi...
A dependence on the use of animal models and reductionistic in vitro models of the respiratory epith...
Intensive efforts in recent years to develop and commercialize in vitro alternatives in the field of...
Organ-on-a-chip is an emerging technology that can biomimic the dynamic microenvironment and key fun...
[[abstract]]A tissue engineering trachea with structural similarity to native trachea was fabricated...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Vascular diseases, such as atherosclerosis and thrombosis, are the leading cause of morbidity and mo...