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 ...
Tomocube, a global leader in 3D label-free imaging and analysis, proudly introduces the HT-X1â„¢ Plus, a state-of-the-art bioimaging platform designed to meet the evolving needs of biomedical ...
Cells are like metropolises, home to millions of molecular residents. If one were to stand atop a high-rise, trying to ...
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 ...
In conventional pathology and physiology research, two-dimensional (2D) analysis—observing thinly sliced tissue sections—has been mainstream, making it difficult to comprehensively understand the ...
Discover how 3D biology, automation, and AI are revolutionizing drug discovery, improving predictive accuracy, and accelerating research. Can you introduce yourself and tell us about your role at ...
Researchers in Nikolaus Rajewsky's lab at Max Delbrück Center combined high-resolution, single-cell spatial technologies to map a tumor's cellular neighborhoods in 3D and identify potential targets ...
Harvard stem cell biologists have pioneered a groundbreaking 3D organoid culture method for generating large numbers of adult skeletal muscle satellite cells, also known as muscle stem cells, in vitro ...
True three-dimensional (3D) spatial biology provides a more physiologically relevant view of tissue biology and cellular interactions than conventional single-cell or two-dimensional (2D) thin-tissue ...