A Cardiac Cell Outgrowth Assay for Evaluating Drug Compounds Using a Cardiac Spheroid-on-a-Chip Device.
Jonas ChristofferssonFlorian MeierHenning KempfKristin SchwankeMichelle CoffeeMario BeilmannRobert ZweigerdtCarl-Fredrik MandeniusPublished in: Bioengineering (Basel, Switzerland) (2018)
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 numbers correlate to the concentrations of relevant pharmacological compounds and could thus serve as a practical readout to monitor drug effects. Here, we demonstrate the potential of this semi-high-throughput “cardiac cell outgrowth assay” with six compounds at three concentrations applied to spheroids for 48 h. The image-based readout complements end-point assays or may be used as a non-invasive assay for quality control during long-term culture.
Keyphrases
- high throughput
- single cell
- induced apoptosis
- cell cycle arrest
- stem cells
- endothelial cells
- left ventricular
- cell therapy
- quality control
- high resolution
- adverse drug
- signaling pathway
- drug induced
- circulating tumor cells
- oxidative stress
- cell death
- cell proliferation
- high glucose
- emergency department
- climate change
- optical coherence tomography
- diabetic rats
- risk assessment
- atrial fibrillation
- big data
- photodynamic therapy
- human health
- bone marrow
- pluripotent stem cells