The complex and heterogenous nature of cancer contributes to the development of cancer cell drug resistance. The construction of the cancer microenvironment, including the cell–cell interactions and extracellular matrix (ECM), plays a significant role in the development of drug resistance. Traditional animal models used in drug discovery studies have been associated with feasibility issues that limit the recapitulation of human functions; thus, in vitro models have been developed to reconstruct the human cancer system. However, conventional two-dimensional and three-dimensional (3D) in vitro cancer models are limited in their ability to emulate complex cancer microenvironments. Advances in technologies, including bioprinting and cancer micr...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
Three-dimensional printing technologies allow for the fabrication of complex parts with accurate geo...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
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 cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
The extracellular matrix (ECM) is a critical cue to direct tumorigenesis and metastasis. Although tw...
Tumor cells evolve in a complex and heterogeneous environment composed of different cell types and a...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
In vitro cancer models that can simulate patient-specific drug responses for personalized medicine h...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
Three-dimensional printing technologies allow for the fabrication of complex parts with accurate geo...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
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 cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
The extracellular matrix (ECM) is a critical cue to direct tumorigenesis and metastasis. Although tw...
Tumor cells evolve in a complex and heterogeneous environment composed of different cell types and a...
The bioprinting technique with specialized tissue production allows the study of biological, physiol...
In vitro cancer models that can simulate patient-specific drug responses for personalized medicine h...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
Three-dimensional printing technologies allow for the fabrication of complex parts with accurate geo...
Innovative drug screening platforms should improve the discovery of novel and personalized cancer tr...