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Determination of the Biomolecular Composition of an Enzyme−Polymer Biosensor
American Chemical Society | 1997| -
Cycling of Rational Hybridization Chain Reaction To Enable Enzyme-Free DNA-Based Clinical Diagnosis
American Chemical Society | 2018| -
Construction and Characterization of a Gold Nanoparticle Wire Assembled Using Mg2+-Dependent RNA−RNA Interactions
American Chemical Society | 2006| -
Computational Image Analysis of Guided Acoustic Waves Enables Rheological Assessment of Sub-nanoliter Volumes
American Chemical Society | 2019| -
Comparison and assessment of CaV1.2 kinetics described by different in silico cellular cardiac electrophysiology models
British Library Online Contents | 2018| -
Chip-Based Dynamic Real-Time Quantification of Drug-Induced Cytotoxicity in Human Tumor Cells
American Chemical Society | 2009| -
Characterization of a novel porcine model of CLN3-Batten disease
British Library Online Contents | 2019| -
Biological Implications of Polymeric Microdevices for Live Cell Assays
American Chemical Society | 2009| -
Apoptosis goes on a chip: advances in the microfluidic analysis of programmed cell death
Recent years have brought enormous progress in cell-based lab-on-a-chip technologies, allowing dynamic studies of cell death with an unprecedented accuracy. As interest in the microfabricated technologies for cell-based bioassays is rapidly gaining momentum, we highlight the most promising technologies that provide a new outlook for the rapid assessment of programmed and accidental cell death and are applicable in drug discovery, high-content drug screening, and personalized clinical diagnostics.American Chemical Society | 2011| -
A Mechanism for Src Kinase-Dependent Signaling by Noncatalytic Receptors
American Chemical Society | 2008| -
3D Mapping of Microfluidic Flow in Laboratory-on-a-Chip Structures Using Optical Tweezers
American Chemical Society | 2008|
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