Abstract
Abstract
Translation of pharmacological results from in vitro cell testing to clinical trials is challenging. One of the causes that may underlie these discrepant results is the lack of the phenotypic or species-specific relevance of the tested cells; today, this lack of relevance may be reduced by relying on cells differentiated from human pluripotent stem cells. To analyse the benefits provided by this approach, we chose to focus on Friedreich ataxia, a neurodegenerative condition for which the recent clinical testing of two compounds was not successful. These compounds, namely, resveratrol and nicotinamide, were selected because they had been shown to stimulate the expression of frataxin in fibroblasts and lymphoblastoid cells. Our results indicated that these compounds failed to do so in iPSC-derived neurons generated from two patients with Friedreich ataxia. By comparing the effects of both molecules on different cell types that may be considered to be non-relevant for the disease, such as fibroblasts, or more relevant to the disease, such as neurons differentiated from iPSCs, a differential response was observed; this response suggests the importance of developing more predictive in vitro systems for drug discovery. Our results demonstrate the value of utilizing human iPSCs early in drug discovery to improve translational predictability.
Funder
Agence Nationale de la Recherche
Publisher
Springer Science and Business Media LLC
Reference28 articles.
1. Hosoya, M. & Czysz, K. Translational Prospects and Challenges in Human Induced Pluripotent Stem Cell Research in Drug Discovery. Cells, 4 (2016).
2. Langdon, S. P. Cell culture contamination: an overview. Methods Mol Med, 309–317 (2004).
3. Hughes, P. et al. The costs of using unauthenticated, over-passaged cell lines: how much more data do we need? Biotechniques 5: 575, 577–578, 581–572 passim (2007).
4. Pamies, D. et al. Good Cell Culture Practice for stem cells and stem-cell-derived models. ALTEX 1, 95–132 (2017).
5. Peric, D. et al. Cytostatic Effect of Repeated Exposure to Simvastatin: A Mechanism for Chronic Myotoxicity Revealed by the Use of Mesodermal Progenitors Derived from Human Pluripotent. Stem Cells. Stem Cells 10, 2936–2948 (2015).
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