Abstract only availableBioprinting is a tissue engineering technique in which spherical cell aggregates, the "bio-ink", are deposited into biocompatible hydrogels, the "bio-paper", by a 3-axis "bio-printer". The aggregates can be deposited into essentially any 3D configuration, and when comprised of adhesive and motile cells aggregate fusion occurs. This self-organizing, liquid-like nature of these tissues is described on a molecular basis by The Differential Adhesion Hypothesis (DAH). The techniques we have developed are quite unique because of the high degree of automation that has been incorporated into our processes and the variety of engineered tissues that we are capable of creating. Despite automation, the creation of aggregates rema...
The main goal of tissue or organ engineering is to reconstruct a damaged or diseased tissue or organ...
Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of ce...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...
Abstract only availableEmbryonic development represents a sequence of spectacular morphogenetic tran...
Abstract only availableBio-printing is a novel method of tissue engineering that uses living cell sp...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Bioprinting is a relatively new technology where living cells with or without biomaterials are print...
Biofabrication of living structures with desired topology and functionality requires the interdiscip...
The ability to pattern biomaterials in planar and three-dimensional forms is of critical importance ...
3D bioprinting has the potential to fabricate highly customizable and highly organized structures th...
PubMedID: 29909085An increasing demand for directed assembly of biomaterials has inspired the develo...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
Bioprinting is the process of creating three-dimensional structures consisting of biomaterials, cell...
The main goal of tissue or organ engineering is to reconstruct a damaged or diseased tissue or organ...
Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of ce...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...
Abstract only availableEmbryonic development represents a sequence of spectacular morphogenetic tran...
Abstract only availableBio-printing is a novel method of tissue engineering that uses living cell sp...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Bioprinting is a relatively new technology where living cells with or without biomaterials are print...
Biofabrication of living structures with desired topology and functionality requires the interdiscip...
The ability to pattern biomaterials in planar and three-dimensional forms is of critical importance ...
3D bioprinting has the potential to fabricate highly customizable and highly organized structures th...
PubMedID: 29909085An increasing demand for directed assembly of biomaterials has inspired the develo...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
Bioprinting is the process of creating three-dimensional structures consisting of biomaterials, cell...
The main goal of tissue or organ engineering is to reconstruct a damaged or diseased tissue or organ...
Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of ce...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...