Drug-induced cardiotoxicity is a major barrier to drug development and a main cause of withdrawal of marketed drugs. Drugs can strongly alter the spontaneous functioning of the heart by interacting with the cardiac membrane ion channels. If these effects only surface during in vivo preclinical tests, clinical trials or worse after commercialization, the societal and economic burden will be significant and seriously hinder the efficient drug development process. Hence, cardiac safety pharmacology requires in vitro electrophysiological screening assays of all drug candidates to predict cardiotoxic effects before clinical trials. In the past 10 years, microelectrode array (MEA) technology began to be considered a valuable approach in pharmaceu...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Microelectrode arrays (MEAs) are widely used to assess the electrophysiology of human pluripotent st...
This article shows the combination of light activatable ion channels and microelectrode array (MEA) ...
Side effects on cardiac ion channels causing lethal arrhythmias are one major reason for drug withdr...
Unexpected adverse effects on the cardiovascular system remain a major challenge in the development ...
Cardiac toxicity represents one of the leading causes of drug failure along different stages of drug...
Human induced pluripotent stem cell-derived cardiomyocytes (hiPS-CMs) are emerging as new and human-...
Unintended binding of small-molecule drugs to ion channels affects electrophysiological propert...
A potential serious side effect of drugs is cardiotoxicity which can result in lethal heart arrhythm...
Animal models and traditional cell cultures are essential tools for drug development. However, these...
Cardiotoxicity is a common side-effect of drugs and a major cause of late-stage drug rejections, cos...
Cardiac toxicity still represents a common adverse outcome causing drug attrition and post-marketing...
Summary: Multielectrode array (MEA) technology has been extensively used for field potential recordi...
Multi electrode arrays (MEAs) are increasingly used to detect external field potentials in electrica...
Multielectrode array (MEA) technology has been extensively used for field potential recordings from ...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Microelectrode arrays (MEAs) are widely used to assess the electrophysiology of human pluripotent st...
This article shows the combination of light activatable ion channels and microelectrode array (MEA) ...
Side effects on cardiac ion channels causing lethal arrhythmias are one major reason for drug withdr...
Unexpected adverse effects on the cardiovascular system remain a major challenge in the development ...
Cardiac toxicity represents one of the leading causes of drug failure along different stages of drug...
Human induced pluripotent stem cell-derived cardiomyocytes (hiPS-CMs) are emerging as new and human-...
Unintended binding of small-molecule drugs to ion channels affects electrophysiological propert...
A potential serious side effect of drugs is cardiotoxicity which can result in lethal heart arrhythm...
Animal models and traditional cell cultures are essential tools for drug development. However, these...
Cardiotoxicity is a common side-effect of drugs and a major cause of late-stage drug rejections, cos...
Cardiac toxicity still represents a common adverse outcome causing drug attrition and post-marketing...
Summary: Multielectrode array (MEA) technology has been extensively used for field potential recordi...
Multi electrode arrays (MEAs) are increasingly used to detect external field potentials in electrica...
Multielectrode array (MEA) technology has been extensively used for field potential recordings from ...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Microelectrode arrays (MEAs) are widely used to assess the electrophysiology of human pluripotent st...
This article shows the combination of light activatable ion channels and microelectrode array (MEA) ...