Experts from the Fraunhofer Institute for Microengineering and Microsystems IMM have harnessed their know-how in microfluidics and single-cell technologies to print organ structures. They will be ...
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 ...
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 ...
Stephen Quake, a bioengineer and applied physicist at Stanford University, has always been interested in the interface between physics and biology. During his work at the California Institute of ...
Researchers have discovered a novel criterion for sorting particles in microfluidic channels, paving the way for advancements in disease diagnostics and liquid biopsies. Using the supercomputer ...
Interest in cell therapy has increased in recent years, with additional focus on leveraging this as a strategy to fight tumors by harnessing the immune system. Cell therapy technologies include ...
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