Advanced 3D cell models recreate the complexity of human tissues, enabling researchers to examine tumor progression, probe neurological disorders, and assess therapeutic candidates. By capturing the ...
Interesting Engineering on MSN
3D brain models made from patients’own cells open door to tailored therapies
MIT scientists have developed a new 3D human brain tissue model that could change how researchers study neurological diseases. The platform, called Multicellular Integrated Brains or miBrains, ...
Researchers at the University of California, Irvine have developed a 3D human colon model integrated with bioelectronics to aid in colorectal cancer research and drug discovery. The "3D in vivo ...
AZoLifeSciences on MSN
Deep learning reveals the 3D secrets of fruit tissue microstructure
A research team developed a 3D deep learning–based panoptic segmentation model that combines semantic and instance ...
The Physicians Committee for Responsible Medicine, a nonprofit that advances human-based science, and InSphero, a global leader in 3D in vitro technology for drug safety and efficacy testing, are ...
The number of cells being analyzed in single-cell projects continues to push the envelope. Last week, the Chan Zuckerberg Initiative (CZI) launched the Billion Cells Project—an effort to generate an ...
A shared commitment to education, innovation, and community development recently brought together two Carroll County institutions in an inspiring collaboration that bridged the gap between classroom ...
14don MSN
New 3D human brain tissue platform integrates all major brain cell types into a single culture
A new 3D human brain tissue platform developed by MIT researchers is the first to integrate all major brain cell types, including neurons, glial cells and the vasculature into a single culture.
In the new study, the team used the model to demonstrate that as Alzheimer's pathology accumulates in the brain, specific types of immune cells called CT8+ T Cells surge into the brain and amplify the ...
3D-printed lungs made with living cells could help to improve lung disease prevention and treatment—and potentially one day offer a lab-grown option for use in organ transplants. University of ...
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