Organ on chip (OOC) has emerged as a major technological breakthrough and distinct model system revolutionizing biomedical research and drug discovery by recapitulating the crucial structural and functional complexity of human organs in vitro. OOC are rapidly emerging as powerful tools for oncology research. Indeed, Cancer on chip (COC) can ideally reproduce certain key aspects of the tumor microenvironment (TME), such as biochemical gradients and niche factors, dynamic cell–cell and cell–matrix interactions, and complex tissue structures composed of tumor and stromal cells. Here, we review the state of the art in COC models with a focus on the microphysiological systems that host multicellular 3D tissue engineering models and can help eluc...
Malignant cells grow in a complex microenvironment that plays a key role in cancer progression. The ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
For centuries, animal experiments have contributed much to our understanding of mechanisms of human ...
Organ on chip (OOC) has emerged as a major technological breakthrough and distinct model system revo...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
More than 90% of cancer-related deaths can be attributed to the occurrence of metastatic diseases. R...
More than 90% of cancer-related deaths can be attributed to the occurrence of metastatic diseases. R...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Tumors develop in intricate microenvironments required for their sustained growth, invasion, and met...
Malignant cells grow in a complex microenvironment that plays a key role in cancer progression. The ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
For centuries, animal experiments have contributed much to our understanding of mechanisms of human ...
Organ on chip (OOC) has emerged as a major technological breakthrough and distinct model system revo...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
International audienceConventional 2D cell cultures are widely used for the development of new antic...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
More than 90% of cancer-related deaths can be attributed to the occurrence of metastatic diseases. R...
More than 90% of cancer-related deaths can be attributed to the occurrence of metastatic diseases. R...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Tumors develop in intricate microenvironments required for their sustained growth, invasion, and met...
Malignant cells grow in a complex microenvironment that plays a key role in cancer progression. The ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
For centuries, animal experiments have contributed much to our understanding of mechanisms of human ...