Kimberly A. Homan. Industry Adoption of Organoids and Organs-on-Chip Technology: Toward a Paradox of Choice. Advanced Biology. 2023;7(6):2200334. doi:10.1002/adbi.202200334
Chrianjay Mukhopadhyay, Manash K. Paul. Organoid-based 3D in vitro microphysiological systems as alternatives to animal experimentation for preclinical and clinical research. Archives of Toxicology. 2023;97(5):1429-1431. doi:10.1007/s00204-023-03466-8
Passley Hargrove-Grimes, Lucie A. Low, Danilo A. Tagle. Microphysiological Systems: Stakeholder Challenges to Adoption in Drug Development. Cells Tissues Organs. 2022;211(3):269-281. doi:10.1159/000517422
MarÃa Virumbrales-Muñoz, Jose M. Ayuso. From microfluidics to microphysiological systems: Past, present, and future. Organs-on-a-Chip. 2022;4:100015. doi:10.1016/j.ooc.2022.100015
Nina S. Corsini, Juergen A. Knoblich. Human organoids: New strategies and methods for analyzing human development and disease. Cell. 2022;185(15):2756-2769. doi:10.1016/j.cell.2022.06.051
Jennifer E. Rood, Aidan Maartens, Anna Hupalowska, Sarah A. Teichmann, Aviv Regev. Impact of the Human Cell Atlas on medicine. Nature Medicine. 2022;28(12):2486-2496. doi:10.1038/s41591-022-02104-7
Ivan Rusyn, Courtney Sakolish, Yuki Kato, et al. Microphysiological Systems Evaluation: Experience of TEX-VAL Tissue Chip Testing Consortium. Toxicological Sciences: An Official Journal of the Society of Toxicology. 2022;188(2):143-152. doi:10.1093/toxsci/kfac061