Organoid– tag –
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New Technology
HTMP Biotechnology Unveils HTMP™ 192 High-Throughput Platform for 3D Cell Culture, Revolutionizing Drug Discovery and Disease Modeling
HTMP Biotechnology USA Overview HTMP Biotechnology has launched its "HTMP™ 192" high-throughput microwell platform, designed to enable stable 3D cell culture workflows, addressing the critical challenge of disturbing 3D cellular structur... -
New Technology
bioRxiv Announces Automated Scalable Organoid Culture Platform with Servo-Actuated 3D-Printed Disposable Microvalves
bioRxiv USA Overview A preprint study on bioRxiv describes a compact multi-well platform for fully automated, scalable organoid culture within standard incubators, featuring servo-actuated 3D-printed disposable microvalves. This design e... -
New Technology
University of Illinois Opens TORM, First Lab Combining Cancer Treatment and Regenerative Medicine, Featuring Automated Bioproduction Biofoundry
University of Illinois Urbana-Champaign (Carle Illinois College of Medicine) USA Overview The University of Illinois Urbana-Champaign has established the Translational Oncology and Regenerative Medicine Laboratory (TORM), the first resea... -
New Technology
iPSC-Derived Scar Organoid (SCO) Model Established, Revolutionizing Human Hypertrophic Scar Pathogenesis and Antifibrotic Drug Screening
MDPI Switzerland Overview Researchers have successfully developed an iPSC-derived scar organoid (SCO) model that accurately recapitulates key features of human hypertrophic scars, including collagen accumulation and tissue contraction. T... -
New Technology
STEMCELL Technologies Supports Organoid Research with Standardized hPSC Lines and Differentiation Kits
STEMCELL Technologies Canada Overview STEMCELL Technologies offers high-quality human iPSC lines and differentiation kits, including the STEMdiff™ Intestinal Organoid Kit, to support diverse research applications such as organoid generat... -
New Technology
Organoid Revolution: 3D Models Set New Standard for Drug Discovery and Development
学術論文 (UU.DIVA-PORTAL.ORG) スウェーデン Overview Organoids are rapidly transforming drug discovery and development, serving as miniature 3D tissue models that offer significantly enhanced physiological relevance compared to traditiona... -
New Technology
CellShip® Method Preserves iPSC-Derived Cardiac Organoids for 7 Days at Room Temperature, Outperforming Cryopreservation
MDPI Switzerland Overview A novel room-temperature preservation method using CellShip® has successfully maintained the viability and functionality of human iPSC-derived cardiac organoids for up to seven days, significantly surpassing the... -
New Technology
STEMCELL Technologies Launches Human iPSC-Derived Hepatic Organoids, Advancing Liver Research
STEMCELL Technologies Canada Overview STEMCELL Technologies has launched human iPSC-derived hepatic organoid products to advance research into liver development, drug-induced liver injury, hepatotoxicity, and metabolism. These organoids ... -
New Technology
Laboratories Accelerate Shift to Automated Adherent and Suspension Cell Culture Platforms with CellXpress.ai Supporting Diverse Cell Types
News-Medical.Net UK Overview Laboratories are rapidly transitioning to automated adherent and suspension cell culture platforms like the CellXpress.ai system. This platform supports diverse cell types including 2D adherent, suspension, a... -
New Technology
CellXpress.ai System Automates Brain Organoid Generation from iPSCs, Boosting Reproducibility and Efficiency for Neuroscience Research
News-Medical.Net UK Overview The CellXpress.ai automated cell culture system has been developed for the automated generation of brain organoids from iPSCs. Integrating liquid handlers, incubators, imagers, and machine learning-assisted i...