The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip, in vitro drug screening, and tissue engineering is one of the most fascinating research areas in the field of bioengineering. The continuous evolution of additive manufacturing techniques provides the tools to engineer these architectures at different scales. Moreover, it is now possible to tailor their biomechanical and topological properties while taking inspiration from the characteristics of the extracellular matrix, the three-dimensional scaffold in which cells proliferate, migrate, and differentiate. In such context, there is therefore a continuous quest for synthetic and nature-derived composite materials that must hold biocompatible,...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
Physiologically relevant tissue models that bridge the gap between 2D tissue culture and animal tria...
Additive manufacturing (AM), sometimes called three-dimensional (3D) printing, has attracted a lot o...
The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip,...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
The application of hydrogels as a matrix for 3-dimensional cell cultures has become an indispensable...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
Abweichender Titel nach Übersetzung der Verfasserin/des VerfassersOne of the main challenges of curr...
Tissue engineering strategies have relied on engineered 3-dimensional (3D) scaffolds to provide arch...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
Thesis (Ph.D.)--University of Washington, 2020Living materials are created through the embedding of ...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Contains fulltext : 199381.pdf (publisher's version ) (Open Access)Abstract Conven...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The development of distinct biomimetic microenvironments for regulating stem cell behavior and bioen...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
Physiologically relevant tissue models that bridge the gap between 2D tissue culture and animal tria...
Additive manufacturing (AM), sometimes called three-dimensional (3D) printing, has attracted a lot o...
The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip,...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
The application of hydrogels as a matrix for 3-dimensional cell cultures has become an indispensable...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
Abweichender Titel nach Übersetzung der Verfasserin/des VerfassersOne of the main challenges of curr...
Tissue engineering strategies have relied on engineered 3-dimensional (3D) scaffolds to provide arch...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
Thesis (Ph.D.)--University of Washington, 2020Living materials are created through the embedding of ...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Contains fulltext : 199381.pdf (publisher's version ) (Open Access)Abstract Conven...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The development of distinct biomimetic microenvironments for regulating stem cell behavior and bioen...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
Physiologically relevant tissue models that bridge the gap between 2D tissue culture and animal tria...
Additive manufacturing (AM), sometimes called three-dimensional (3D) printing, has attracted a lot o...