In vitro tissue models that mimic in vivo human physiology to improve drug discovery
In vitro tissue models that mimic in vivo human physiology to improve drug discovery
In vitro tissue models that mimic in vivo human physiology to improve drug discovery
The results of a recent collaboration between Sanofi, GSK, Lilly, Vesalius Therapeutics, Leiden University, Heidelberg University, ElmorePathology and Newcells aimed at enhancing safety assessments has just been published. Find out how rat kidney gene co-expression networks has enabled biomarker identification and human translation for renal safety assessments.

Valeria Chichagova. Drug Target Review. June 2020.
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Valeria Chichagova, Maria Georgiou, Birthe Dorgau, Madeleine Carter, Git Chung, Evelyne Sernagor, Lyle Armstrong, Majlinda Lako Investigative Ophthalmology & Visual Science. 2020; 61(7)
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Maria Georgiou et al. PLoS ONE. 2020; 15(6), e0233860.
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Analysis of the effect of a compound on retinal microtissue composition
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Development of a human in vitro model for retinitis pigmentosa
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Assessing the validity of a nephron model for a metabolic disease study
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DDI study on renal creatinine clearance mechanism
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Predicting renal retention of radioconjugates in a human relevant in vitro model
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Safety and efficacy evaluation of a novel therapeutic AAV vectors using a human retinal organoid model
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Comparing the transduction efficiency of two AAV vectors in RPE and Retinal Organoid models derived from iPSCs lines
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Comprehensive toxicity study on retinal ganglion cells in early-stage human retinal organoids
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Development and characterisation of an early-stage retinal organoid disease model (for non-ocular disease)
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Quantitative Fibroblast-to-Myofibroblast Transition (FMT) studies
Quantitative FMT assay with high content imaging
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Comprehensive in vitro evaluation of ocular toxicity and phenotypic rescue
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In vitro selection of the most relevant species to predict human
Evaluation of glomerular ADC toxicity in podocytes
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Gene therapy viral vector assessment on retinal organoids
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Gene therapy viral vector assessment on RPE cells
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Predicting human renal injury from antisense oligonucleotide (ASO)
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