Organoid– tag –
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New Technology
UA Little Rock Secures Grant to Develop 3D Tissue Scaffold Replicating Human Intestinal Villi-Crypt Structures
University of Arkansas at Little Rock News USA Overview Dr. Sujan Ghosh at the University of Arkansas at Little Rock has received a grant to develop a novel 3D tissue scaffold capable of accurately mimicking the villi-crypt structures of... -
New Technology
Next-Gen Brain Organoids Reveal How APOE4 Astrocytes Drive Alpha-Synuclein Pathology, Unlocking New Therapeutic Targets
ALZFORUM USA Overview A novel mechanism by which APOE4, a major Alzheimer's risk gene, exacerbates neuropathology has been published in Cell Stem Cell, leveraging a newly developed human brain organoid model termed 'miBrains.' This six-c... -
New Technology
Celvivo Secures $6.6M to Propel Advanced 3D Cell Culture Platform, Appoints New CEO for Commercial Scale-Up
Dealroom News Denmark Overview Danish biotech Celvivo has raised $6.6 million from a mix of existing and new investors, earmarked for the accelerated commercial expansion of its ClinoStar 3D cell culture platform. This platform, which ge... -
New Technology
Lonza and Entropic Unveil Scalable 96-Well 3D Human Skin Organoid Platform for Accelerated Screening
Scientist.com Switzerland Overview Lonza and Entropic have jointly developed a scalable 96-well 3D human skin organoid model, dramatically improving the efficiency of skin barrier function and injury screening. Utilizing Entropic's ZYRAL... -
New Technology
ABM Unveils Spheroid & Organoid Medium Portfolio to Revolutionize 3D Culture Workflows for Drug Discovery and Disease Modeling
ABM (via Facebook) International Overview ABM has launched a new Spheroid & Organoid Medium portfolio designed to robustly support reproducible and scalable 3D culture workflows for drug discovery and disease modeling. This new produ... -
New Technology
Angiogenic Tumor Organoids Revolutionize Model Design in Cell Therapy Development, RegMedNet Reports Critical Importance
RegMedNet UK Overview RegMedNet reports on the critical role of model design in cell therapy development, highlighting how the emergence of angiogenic tumor organoids is revolutionizing research. These advanced organoids enable researche... -
New Technology
AI and Organ-on-Chip Systems Accelerate Therapeutic Discovery for Emerging and Re-Emerging Infections, Frontiers Review Highlights
Frontiers Switzerland Overview A Frontiers review highlights the groundbreaking potential of human organoids and organ-on-chip systems as AI-guided therapeutic discovery platforms for emerging and re-emerging infections. These platforms ... -
New Technology
Broad Institute Achieves Long-Term Brain Organoid Longevity and Streamlines Prime Editing with AI
Broad Institute USA Overview The Broad Institute announced a significant milestone on August 20, 2026, where an AI model streamlined the prime editing process and enabled the long-term longevity of brain organoids. The institute actively... -
New Technology
Next-Generation Bioinks Create New Opportunities in Tissue Engineering and Drug Discovery via 3D Bioprinting
ACS Publications USA Overview Advances in next-generation bioinks are significantly propelling the fields of tissue engineering and regenerative medicine through 3D bioprinting technology. These bioinks are essential for creating microen... -
New Technology
3D Bioprinting Advances Tumor Organoid Modeling and Bone Regeneration Spheroids
PMC - NIH USA Overview 3D bioprinting technology is revolutionizing cancer modeling by enabling the construction of human tumor organoids that accurately recapitulate complex tumor microenvironments for high-throughput drug screening. Co...