The development of a scalable and highly reproducible in vitro tumor microenvironment (TME) platform still sheds light on new insights into cancer metastasis mechanisms and anticancer therapeutic strategies. Here, we present an all-in-one injection molded plastic array three-dimensional culture platform (All-in-One-IMPACT) that integrates vascularized tumor spheroids for highly reproducible, high-throughput experimentation. This device allows the formation of self-assembled cell spheroids on a chip by applying the hanging drop method to the cell culture channel. Then, when the hydrogel containing endothelial cells and fibroblasts is injected, the spheroid inside the droplet can be patterned together in three dimensions along the culture cha...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
Three-dimensional (3D) spheroid cell cultures are excellent models used in cancer biology research a...
Research on the development of anti-cancer drugs has progressed, but the low reliability of animal e...
Angiogenesis, the development of new blood vessels from existing vasculature, is a key mechanism in ...
When compared to methodologies based on low adhesion or hanging drop plates, droplet microfluidics o...
The “Tumor microenvironment” (TME) has been increasingly recognized as an underlying factor in drug ...
Three-dimensional (3D) cell culture is considered more clinically relevant in mimicking the structur...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Abstract Anticancer drug development is a crucial step toward cancer treatment, that requires realis...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Tumor spheroids are considered a valuable three dimensional (3D) tissue model to study various aspec...
Incorporation of extracellular matrix (ECM) and hydrogel in microfluidic 3D cell culture platforms i...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
Three-dimensional (3D) spheroid cell cultures are excellent models used in cancer biology research a...
Research on the development of anti-cancer drugs has progressed, but the low reliability of animal e...
Angiogenesis, the development of new blood vessels from existing vasculature, is a key mechanism in ...
When compared to methodologies based on low adhesion or hanging drop plates, droplet microfluidics o...
The “Tumor microenvironment” (TME) has been increasingly recognized as an underlying factor in drug ...
Three-dimensional (3D) cell culture is considered more clinically relevant in mimicking the structur...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Abstract Anticancer drug development is a crucial step toward cancer treatment, that requires realis...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Tumor spheroids are considered a valuable three dimensional (3D) tissue model to study various aspec...
Incorporation of extracellular matrix (ECM) and hydrogel in microfluidic 3D cell culture platforms i...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
[[abstract]]Co-culturing of embryoid bodies (EBs) and tumor spheroids (TSs) allows mimicking tumor a...
Three-dimensional (3D) spheroid cell cultures are excellent models used in cancer biology research a...