A Role for in Vitro Disease Models in the Landscape of Preclinical Cardiotoxicity and Safety Testing
Journal: Journal of Evolving Stem Cell Research (Vol.1, No. 2)Publication Date: 2017-01-24
Authors : Vijayalakshmi Varma;
Page : 27-34
Keywords : Preclinical cardiotoxicity; drug-induced toxicity; drug safety; embryonic stem cells; induced pluripotent stem cells; in vitro disease models; cardiovascular diseases; obesity and type II diabetes;
Abstract
Drug-induced cardiotoxicity is one of the predominant reasons for drug attrition and withdrawals. This is of critical concern when potentially cardiotoxic drugs are administered to individuals with inherited arrhythmogenic cardiac diseases or with metabolic diseases such as obesity and diabetes, which are key risk factors for cardiovascular diseases. Pathophysiological alteration prevalent under such conditions can alter or exacerbate cardiotoxic responses. The growing incidence of obesity, diabetes and metabolic syndrome subject a significant percentage of the population to drug treatments, thereby augmenting their risk for drug-induced cardiovascular toxicity. Hence, screening for drug-induced cardiotoxicity early in the preclinical stages of drug development, by using appropriate human disease models, can be effective in ensuring safety in clinical trials and preventing late stage and post-marketing drug withdrawals owing to cardiotoxicity. The advent of human pluripotent stem cells (hPSC) and induced pluripotent stem cell (iPSC)-derived cardiomyocytes are revolutionizing safety/toxicity screening in human cells by providing relevant human-specific, renewable model systems to explore human drug toxicity. The ability to generate patient-specific iPSCs that can model cardiac diseases, now offers a valuable option that can further improve drug safety assessments and enable a more accurate prediction of toxicity that occurs in the representative population that are prescribed the drugs. Use of appropriate disease models will not only provide cost savings by decreasing potential drug attrition and withdrawals, seen with many drugs, but will also be a promising option to advance precision medicine
Other Latest Articles
- Expression of Estrogen Receptor β in Hypothalamic Stem Cells
- Dual Effects of Neuroprotection and Neurotoxicity by General Anesthetics on Neural Stem Cells: Role of Autophagy
- Calcium Transient Assays for Compound Screening with Human iPSC-derived Cardiomyocytes: Evaluating New Tools
- Human Umbilical Cord-Derived Mesenchymal Stem Cells as a Source of Odontoblasts: a GMP-compliant Approach
- AN EXPERIMENTAL INVESTIGATION ON THE PROPERTIES OF CONCRETE WITH PARTIAL REPLACEMENT OF CEMENT BY SILICA FUME AND COARSE AGGREGATE BY RECYCLED AGGREGATE
Last modified: 2018-02-10 17:45:40