Even with many advances in treatment over the past decades, cancer still remains a leading cause of death worldwide. Despite the recognized relationship between metastasis and increased mortality rate, surprisingly little is known about the exact mechanism of metastatic progression. Currently available in vitro models cannot replicate the three-dimensionality and heterogeneity of the tumor microenvironment sufficiently to recapitulate many of the known characteristics of tumors in vivo. Our understanding of metastatic progression would thus be boosted by the development of in vitro models that could more completely capture the salient features of cancer biology. Bioengineering groups have been working for over two decades to create in vitro...
A wide variety of experimental models including 2D cell cultures, model organisms, and 3D in vitro m...
The drug discovery process is very long, costly, and challenging but essential in medical sciences. ...
Advances in three-dimensional (3D) printing have increased feasibility towards the synthesis of livi...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
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...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
Bone cancer, both primary and metastatic, is characterized by a low survival rate. Currently, availa...
Combinatorial conjugation of organ-on-a-chip platforms with additive manufacturing technologies is r...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
In vitro cancer 3D models are valuable tools to provide mechanistic insight into solid tumor growth,...
A wide variety of experimental models including 2D cell cultures, model organisms, and 3D in vitro m...
The drug discovery process is very long, costly, and challenging but essential in medical sciences. ...
Advances in three-dimensional (3D) printing have increased feasibility towards the synthesis of livi...
Even with many advances in treatment over the past decades, cancer still remains a leading cause of ...
The tumor microenvironment (TME) typically comprises cancer cells, tumor vasculature, stromal compon...
The complex and heterogenous nature of cancer contributes to the development of cancer cell drug res...
The cancer microenvironment is known for its complexity, both in its content as well as its dynamic ...
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...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
Bone cancer, both primary and metastatic, is characterized by a low survival rate. Currently, availa...
Combinatorial conjugation of organ-on-a-chip platforms with additive manufacturing technologies is r...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
In vitro cancer 3D models are valuable tools to provide mechanistic insight into solid tumor growth,...
A wide variety of experimental models including 2D cell cultures, model organisms, and 3D in vitro m...
The drug discovery process is very long, costly, and challenging but essential in medical sciences. ...
Advances in three-dimensional (3D) printing have increased feasibility towards the synthesis of livi...