Tumor cells evolve in a complex and heterogeneous environment composed of different cell types and an extracellular matrix. Current 2D culture methods are very limited in their ability to mimic the cancer cell environment. In recent years, various 3D models of cancer cells have been developed, notably in the form of spheroids/organoids, using scaffold or cancer-on-chip devices. However, these models have the disadvantage of not being able to precisely control the organization of multiple cell types in complex architecture and are sometimes not very reproducible in their production, and this is especially true for spheroids. Three-dimensional bioprinting can produce complex, multi-cellular, and reproducible constructs in which the matrix com...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
6si‘Bioinks’ are important tools for the fabrication of artificial living-tissue constructs that are...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
In vitro cancer 3D models are valuable tools to provide mechanistic insight into solid tumor growth,...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
‘Bioinks’ are important tools for the fabrication of artificial living-tissue constructs that are ab...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
6si‘Bioinks’ are important tools for the fabrication of artificial living-tissue constructs that are...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
In vitro cancer 3D models are valuable tools to provide mechanistic insight into solid tumor growth,...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
‘Bioinks’ are important tools for the fabrication of artificial living-tissue constructs that are ab...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
6si‘Bioinks’ are important tools for the fabrication of artificial living-tissue constructs that are...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...