Three-dimensional (3D) models with cells arranged in clusters or spheroids have emerged as valuable tools to improve physiological relevance in drug screening. One of the challenges with cells cultured in 3D, especially for high-throughput applications, is to quickly and non-invasively assess the cellular state in vitro. In this article, we show that the number of cells growing out from human induced pluripotent stem cell (hiPSC)-derived cardiac spheroids can be quantified to serve as an indicator of a drug’s effect on spheroids captured in a microfluidic device. Combining this spheroid-on-a-chip with confocal high content imaging reveals easily accessible, quantitative outgrowth data. We found that effects on outgrowing cell numb...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
INTRODUCTION: The heart is one of the least regenerative organs in the body and any major insult can...
Three-dimensional (3D) models with cells arranged in clusters or spheroids have emerged as valuable ...
Anticancer drug development needs to be shifted to a patient-specific platform that can be performed...
The substantial progress of the human induced pluripotent stem cell (hiPSC) technologies over the la...
Cancer remains a leading health threat in the United States, and cardiovascular drug toxicity is a p...
Unexpected adverse effects on the cardiovascular system remain a major challenge in the development ...
Background Toxicity evaluation based on two-dimensional cell culture shows differences from clinical...
International audienceA recent decline in the discovery of novel medications challenges the widespre...
There is an increasing interest in using three-dimensional (3D) spheroids for modelling cancer and t...
Current preclinical methods to evaluate drug safety fail to accurately predict cardiotoxicity, the l...
There is an increasing interest in using three-dimensional (3D) spheroids for modeling cancer and ti...
Human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) hold great potential in the c...
Purpose: Cardiomyocytes are terminally differentiated cells in the adult heart and ischemia and card...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
INTRODUCTION: The heart is one of the least regenerative organs in the body and any major insult can...
Three-dimensional (3D) models with cells arranged in clusters or spheroids have emerged as valuable ...
Anticancer drug development needs to be shifted to a patient-specific platform that can be performed...
The substantial progress of the human induced pluripotent stem cell (hiPSC) technologies over the la...
Cancer remains a leading health threat in the United States, and cardiovascular drug toxicity is a p...
Unexpected adverse effects on the cardiovascular system remain a major challenge in the development ...
Background Toxicity evaluation based on two-dimensional cell culture shows differences from clinical...
International audienceA recent decline in the discovery of novel medications challenges the widespre...
There is an increasing interest in using three-dimensional (3D) spheroids for modelling cancer and t...
Current preclinical methods to evaluate drug safety fail to accurately predict cardiotoxicity, the l...
There is an increasing interest in using three-dimensional (3D) spheroids for modeling cancer and ti...
Human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) hold great potential in the c...
Purpose: Cardiomyocytes are terminally differentiated cells in the adult heart and ischemia and card...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
Three-dimensional in vitro cell systems are a promising alternative to animals to study cardiac biol...
INTRODUCTION: The heart is one of the least regenerative organs in the body and any major insult can...