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Current Stem Cell Reports|October 7, 2017
Organoid and Organ-On-A-Chip Systems: New Paradigms for Modeling Neurological and Gastrointestinal DiseaseAslam Abbasi Akhtar, Samuel Sances, Robert Barrett, et al.Cell Stem Cell|March 7, 2020
Multi-lineage Human iPSC-Derived Platforms for Disease Modeling and Drug DiscoveryArun Sharma, Samuel Sances, Michael J Workman, et al.Lab on a Chip|October 7, 2022
Tissue clearing of human iPSC-derived organ-chips enables high resolution imaging and analysisBriana N Ondatje, Samuel Sances, Michael J Workman, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 28, 2024
Differential Vulnerability and Response to Injury among Brain Cell Types Comprising the Neurovascular UnitPadmesh Rajput, Allison Brookshier, Shweta Kothari, et al.Nature Neuroscience|July 19, 2016
ALS disrupts spinal motor neuron maturation and aging pathways within gene co-expression networksRitchie Ho, Samuel Sances, Genevieve Gowing, et al.Cell Stem Cell|June 25, 2025
An organ-chip model of sporadic ALS using iPSC-derived spinal cord motor neurons and an integrated blood-brain-like barrierDeepti Lall, Michael J Workman, Samuel Sances, et al.Biomaterials|May 9, 2022
Brain-on-a-chip: Recent advances in design and techniques for microfluidic models of the brain in health and diseaseLeyla Amirifar, Amir Shamloo, Rohollah Nasiri, et al.Stem Cell Reports|March 27, 2018
Human iPSC-Derived Endothelial Cells and Microengineered Organ-Chip Enhance Neuronal DevelopmentSamuel Sances, Ritchie Ho, Gad Vatine, et al.Cell Stem Cell|June 8, 2019
Human iPSC-Derived Blood-Brain Barrier Chips Enable Disease Modeling and Personalized Medicine ApplicationsGad D Vatine, Riccardo Barrile, Michael J Workman, et al.Nature Neuroscience|March 30, 2016
Modeling ALS with motor neurons derived from human induced pluripotent stem cellsSamuel Sances, Lucie I Bruijn, Siddharthan Chandran, et al.Pageof 2