International audienceBioprinting technologies are powerful new bioengineering tools that can spatially reproduce multiple microenvironmental cues in a highly controlled, tunable, and precise manner. In this study, microvalve bioprinting technology was successfully used to print in close proximity endothelial and tumor cells at higher concentrations than previously thought possible, while preserving their viability. We propose that the resulting multicellular models, bioprinted in a controlled extracellular matrix microenvironment, are well-suited to study endothelial and cancer cell crosstalk within a cancer niche. As proof of concept, microvalve bioprinting was applied to the bioengineering of a simplified glioblastoma model in which biol...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
Metastatic breast cancer is one of the deadliest forms of malignancy, primarily driven by its charac...
Regulation of tissue development and repair depends on communication between neighbouring cells. Rec...
International audienceBioprinting technologies are powerful new bioengineering tools that can spatia...
Glioblastomas are the most frequently diagnosed and one of the most lethal primary brain tumors, and...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
Glioblastoma multiforme (GBM) is the most lethal primary brain tumor characterized by high cellular ...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
While bioprinting is well positioned for creating thick tissues and whole organs due to its scalabil...
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 ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2013.Catalo...
The interaction between tumor and endothelial cells is crucial to cancer metastasis and angiogenesis...
Brain tumors are dynamic complex ecosystems with multiple cell types. To model the brain tumor micro...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
Metastatic breast cancer is one of the deadliest forms of malignancy, primarily driven by its charac...
Regulation of tissue development and repair depends on communication between neighbouring cells. Rec...
International audienceBioprinting technologies are powerful new bioengineering tools that can spatia...
Glioblastomas are the most frequently diagnosed and one of the most lethal primary brain tumors, and...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
Glioblastoma multiforme (GBM) is the most lethal primary brain tumor characterized by high cellular ...
International audienceThree dimensional (3D) bioprinting of multiple cell types within optimised ext...
Microfluidic technology has led to the development of advanced in vitro tumor platforms that overcom...
While bioprinting is well positioned for creating thick tissues and whole organs due to its scalabil...
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 ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2013.Catalo...
The interaction between tumor and endothelial cells is crucial to cancer metastasis and angiogenesis...
Brain tumors are dynamic complex ecosystems with multiple cell types. To model the brain tumor micro...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
Metastatic breast cancer is one of the deadliest forms of malignancy, primarily driven by its charac...
Regulation of tissue development and repair depends on communication between neighbouring cells. Rec...