The overarching principle of three-dimensional (3D) bioprinting is the placing of cells or cell clusters in the 3D space to generate a cohesive tissue microarchitecture that comes close to in vivo characteristics. To achieve this goal, several technical solutions are available, generating considerable combinatorial bandwidth: (i) Support structures are generated first, and cells are seeded subsequently; (ii) alternatively, cells are delivered in a printing medium, so-called “bioink,” that contains them during the printing process and ensures shape fidelity of the generated structure; and (iii) a “scaffold-free” version of bioprinting, where only cells are used and the extracellular matrix is produced by the cells themselves, also recently e...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
Biofabrication of tissue analogues is aspiring to become a disruptive technology capable to solve st...
Abstract only availableBioprinting is a tissue engineering technique in which spherical cell aggrega...
Three-dimensional (3D) printing of biological material, or 3D bioprinting, is a rapidly expanding fi...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Thefield of Tissue engineering and regenerative medicine that work toward creatingfunctional tissue-...
In the past few decades, tissue engineering has been seen unprecedented escalation driving the field...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The field of regenerative medicine has progressed tremendously over the past few decades in its abil...
Bioprinting promises to create three-dimensional in vitro models to study pathological states and po...
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...
Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of ce...
The classic cell culture involves the use of support in two dimensions, such as a well plate or a Pe...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
Biofabrication of tissue analogues is aspiring to become a disruptive technology capable to solve st...
Abstract only availableBioprinting is a tissue engineering technique in which spherical cell aggrega...
Three-dimensional (3D) printing of biological material, or 3D bioprinting, is a rapidly expanding fi...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Thefield of Tissue engineering and regenerative medicine that work toward creatingfunctional tissue-...
In the past few decades, tissue engineering has been seen unprecedented escalation driving the field...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The field of regenerative medicine has progressed tremendously over the past few decades in its abil...
Bioprinting promises to create three-dimensional in vitro models to study pathological states and po...
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...
Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of ce...
The classic cell culture involves the use of support in two dimensions, such as a well plate or a Pe...
Three-dimensional (3D) bioprinting technology has emerged as a powerful bio- fabrication platform fo...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
Biofabrication of tissue analogues is aspiring to become a disruptive technology capable to solve st...