It has been demonstrated that three-dimensional (3D) cell culture models represent fundamental tools for the comprehension of cellular phenomena both for normal and cancerous tissues. Indeed, the microenvironment affects the cellular behavior as well as the response to drugs. In this study, we performed a morphological analysis on a hepatocarcinoma cell line, HepG2, grown for 24 days inside a bioartificial hydrogel composed of poly(vinyl alcohol) (PVA) and gelatin (G) to model a hepatocellular carcinoma (HCC) in 3D. Morphological features of PVA/G hydrogels were investigated, resulting to mimic the trabecular structure of liver parenchyma. A histologic analysis comparing the 3D models with HepG2 cell monolayers and tumor specimens was perfo...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Ovarian cancer (OC) grows and interacts constantly with a complex microenvironment, in which immune ...
Abstract: It has been demonstrated that three-dimensional (3D) cell culture models represent fundame...
Three-dimensional (3D) tissue models replicating liver architectures and functions are increasingly ...
AbstractPhysiologically relevant hepatic cell culture models must be based on three-dimensional (3D)...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
Aim: We wished to establish 3D organoid-like hepatocellular carcinoma (HCC) models from HCC cell lin...
Aim: We wished to establish 3D organoid-like hepatocellular carcinoma (HCC) models from HCC cell lin...
Indiana University-Purdue University Indianapolis (IUPUI)As liver disease becomes more prevalent, th...
As liver disease becomes more prevalent, the development of an in vitro culture system to study dise...
Recent studies have shown that three-dimensional (3D) culture environments allow the study of cellul...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Ovarian cancer (OC) grows and interacts constantly with a complex microenvironment, in which immune ...
Abstract: It has been demonstrated that three-dimensional (3D) cell culture models represent fundame...
Three-dimensional (3D) tissue models replicating liver architectures and functions are increasingly ...
AbstractPhysiologically relevant hepatic cell culture models must be based on three-dimensional (3D)...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
International audiencePhysiologically relevant hepatic cell culture models must be based on three-di...
Aim: We wished to establish 3D organoid-like hepatocellular carcinoma (HCC) models from HCC cell lin...
Aim: We wished to establish 3D organoid-like hepatocellular carcinoma (HCC) models from HCC cell lin...
Indiana University-Purdue University Indianapolis (IUPUI)As liver disease becomes more prevalent, th...
As liver disease becomes more prevalent, the development of an in vitro culture system to study dise...
Recent studies have shown that three-dimensional (3D) culture environments allow the study of cellul...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Introduction Three-dimensional (3D) cell culture studies are becoming extremely common because of th...
Ovarian cancer (OC) grows and interacts constantly with a complex microenvironment, in which immune ...