A Carnegie Mellon University-led team is developing a functional 3D bioprinted liver for transplant. The project, titled Liver Immunocompetent Volumetric Engineering (LIVE), aims to address the ...
From sub-second prints to lab-grown heart tissue, these volumetric 3D printing projects show how far the technology has come in 2026.
The Incucyte® CX3 live cell analysis system enables real‑time observation of complex 3D cell models, delivering clear images, steady incubation conditions, and streamlined software for everyday ...
During morphogenesis—the process by which living organisms take shape—cells collectively position themselves in specific ways, leading to the development of tissues and organs. Being able to recreate ...
Scientists at the University of Osaka have developed a novel hydrogel that enables the efficient, three-dimensional (3D) culture of human induced pluripotent stem cells (iPSCs). By creating a unique ...
Regulators are steering drug testing away from animals, and the systems stepping in each capture only a slice of a living body.
Most potential oncology drugs fail during the drug development pipeline, even when there has been promising data for their efficacy during the in vitro stage. This makes it vital to identify in vitro ...
3D printing technology has already transformed the field of biomedical research by allowing scientists to produce soft tissue, replacement windpipes, and working hearts on a whim. But each of these ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results