We designed and biofabricated a channeled construct as a possible cell-delivery device that can be endothelialized to overcome size limitations due to oxygen diffusion. The channeled device mimicking a leaf was designed using computer-aided design software, with fluid flow through the channels visualized using simulation studies. The device was fabricated either by form casting using a custom 3D-printed plastic mold or by 3D-bioprinting using Pluronic F-127 as sacrificial ink to print the channels. The actual leaf was cast or bioprinted using hydrogel made from a mixture of tunicate cellulose nanofibers and alginate that was cross-linked in calcium chloride solution to allow a stable device. The resulting device was a 20 7 8 7 3 mm or 35 ...
Previously held under moratorium from 23 May 2018 until 16 February 2022Development of readily avail...
Artificial vessels capable of long-term patency are essential clinical tools in vascular surgery tha...
In this work, a novel strategy was developed to fabricate prevascularized cell-layer blood vessels i...
We designed and biofabricated a channeled construct as a possible cell-delivery device that can be e...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In order to fabricate a large-volume bioengineered tissue, building vasculature is the most importan...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
We used indirect stereolithography (SL) to form inner-layered fluidic networks in a porous scaffold ...
We used indirect stereolithography (SL) to form inner-layered fluidic networks in a porous scaffold ...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
Bacterial nanocellulose (BNC) has proven to be an effective hydrogel-like material for different tis...
[[abstract]]Although various research efforts have been made to produce a vascular-like network stru...
Replacement of small-sized vessels is still challenging. This study is aimed at investigating the po...
In this study, 3D hydrogel-based vascular structures with multilevel fluidic channels (macro-channel...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
Previously held under moratorium from 23 May 2018 until 16 February 2022Development of readily avail...
Artificial vessels capable of long-term patency are essential clinical tools in vascular surgery tha...
In this work, a novel strategy was developed to fabricate prevascularized cell-layer blood vessels i...
We designed and biofabricated a channeled construct as a possible cell-delivery device that can be e...
The inability to adequately vascularize tissues in vivo or in vitro currently limits the development...
In order to fabricate a large-volume bioengineered tissue, building vasculature is the most importan...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
We used indirect stereolithography (SL) to form inner-layered fluidic networks in a porous scaffold ...
We used indirect stereolithography (SL) to form inner-layered fluidic networks in a porous scaffold ...
The bioengineering of artificial tissue constructs requires special attention to their fast vascular...
Bacterial nanocellulose (BNC) has proven to be an effective hydrogel-like material for different tis...
[[abstract]]Although various research efforts have been made to produce a vascular-like network stru...
Replacement of small-sized vessels is still challenging. This study is aimed at investigating the po...
In this study, 3D hydrogel-based vascular structures with multilevel fluidic channels (macro-channel...
One of the greatest challenges currently faced in tissue engineering is the incorporation of vascula...
Previously held under moratorium from 23 May 2018 until 16 February 2022Development of readily avail...
Artificial vessels capable of long-term patency are essential clinical tools in vascular surgery tha...
In this work, a novel strategy was developed to fabricate prevascularized cell-layer blood vessels i...