Cell-communication molecules called kinases play a key role in the growth and spread of many cancers. But exactly which ...
Researchers have shown that activation of the protein YAP, known to help cancer cells survive treatment, behaves very differently in cell culture models depending on how they are grown in the lab, ...
For nearly a decade, the Cancer Dependency Map, or DepMap, at the Broad Institute has helped scientists uncover new cancer dependencies—the genetic changes some cancers need to thrive that can ...
3D cell cultures are no longer a futuristic idea. They’re already reshaping how we study diseases like cancer, offering more realistic models of how cells behave in the body. But despite their ...
Research and drug discovery are undergoing a transformation, driven by the rise of 3D cell culture models that better replicate human biology. Unlike traditional 2D cultures and animal models, which ...
Most cells in the human body exist in complex three-dimensional environments, yet they are still commonly studied on flat plastic dishes. These two-dimensional cultures distort cell behavior, limiting ...
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 ...
CellFiber Co., Ltd. (“CellFiber”), a Tokyo-based biotechnology company built on its proprietary CellFiber® cell encapsulation platform, and Tidewave Bio (“Tidewave”), a Los Angeles-based biotechnology ...
Explore how 3D printed tumor models are revolutionizing cancer research, focusing on chondrosarcoma treatment strategies.
Researchers developed a microfluidic chip with 3D-printed microstructures that moves droplets precisely, captures cells efficiently, and quickly forms cell spheroids for improved lab-grown tissue ...
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