Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge gap between animal studies and two-dimensional (2D) monolayer cell culture to study chronic diseases such as cancer. In particular, the preclinical platforms for multicellular spheroid formation and culture can be regarded as ideal in vitro tumour models. The complex tumour microenvironment such as hypoxic region and necrotic core can be recapitulated in 3D spheroid configuration. Cells aggregated in spheroid structures can better illustrate the performance of anti-cancer drugs as well. Various methods have been proposed so far to create such 3D spheroid aggregations. Both conventional techniques and microfluidic methods can be used for gene...
Introduction: Three-dimensional (3D) cell cultures are identified as more accurate and representativ...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
© 2018 Elsevier B.V. A cell spheroid is a three-dimensional (3D) aggregation of cells. Synthetic, in...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
When compared to methodologies based on low adhesion or hanging drop plates, droplet microfluidics o...
Introduction: Three-dimensional (3D) cell cultures are identified as more accurate and representativ...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
Microfluidics is a valuable technology for a variety of different biomedical applications. In partic...
© 2018 Elsevier B.V. A cell spheroid is a three-dimensional (3D) aggregation of cells. Synthetic, in...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
It is of great value to develop reliable in vitro models for cell biology and toxicology. However, e...
When compared to methodologies based on low adhesion or hanging drop plates, droplet microfluidics o...
Introduction: Three-dimensional (3D) cell cultures are identified as more accurate and representativ...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...
The representativeness of a cellular model is fundamental in pre-clinical cancer studies. Size, hete...