Alginate-based microfluidic system for tumor spheroid formation and anticancer agent screening.

PubWeight™: 0.89‹?›

🔗 View Article (PMID 20237849)

Published in Biomed Microdevices on August 01, 2010

Authors

Michael C W Chen1, Madhuja Gupta, Karen C Cheung

Author Affiliations

1: Department of Electrical & Computer Engineering, University of British Columbia, Vancouver, BC, Canada.

Articles by these authors

Droplet-based microfluidic system for multicellular tumor spheroid formation and anticancer drug testing. Lab Chip (2010) 1.07

Optical oxygen sensors for applications in microfluidic cell culture. Sensors (Basel) (2010) 0.99

Silicon photonic micro-disk resonators for label-free biosensing. Opt Express (2013) 0.85

Microfabricated formaldehyde gas sensors. Sensors (Basel) (2009) 0.85

Alginate core-shell beads for simplified three-dimensional tumor spheroid culture and drug screening. Biomed Microdevices (2015) 0.84

Improving piezoelectric cell printing accuracy and reliability through neutral buoyancy of suspensions. Biotechnol Bioeng (2012) 0.81

Sub-wavelength grating for enhanced ring resonator biosensor. Opt Express (2016) 0.78

Application of a three-dimensional (3D) particle tracking method to microfluidic particle focusing. Lab Chip (2014) 0.77

Investigation of the hydrodynamic response of cells in drop on demand piezoelectric inkjet nozzles. Biofabrication (2016) 0.76

Effects of surfactant and gentle agitation on inkjet dispensing of living cells. Biofabrication (2010) 0.76

Hydrogel-based microfluidic systems for co-culture of cells. Conf Proc IEEE Eng Med Biol Soc (2008) 0.76

Optimal receiver design for diffusive molecular communication with flow and additive noise. IEEE Trans Nanobioscience (2014) 0.75

A silicon photonic biosensor using phase-shifted Bragg gratings in slot waveguide. J Biophotonics (2013) 0.75

A simple method for eliminating fixed-region interference of aptamer binding during SELEX. Biotechnol Bioeng (2014) 0.75

Contributors to the emerging investigators issue. Lab Chip (2010) 0.75

Improving receiver performance of diffusive molecular communication with enzymes. IEEE Trans Nanobioscience (2014) 0.75