The Lieberam Lab, in collaboration with the Song Group at UCL and led by Ph.D. student Aimee Cheesbrough, have developed a new synthetic scaffold to grow muscle cells from human stem cells, allowing ...
Do you have questions about Tissue Processing? Robin Fitzl, Senior Application Specialist at Leica Biosystems, has the answers! As part of her popular “Lessons from the Laboratory” series, Robin ...
When chemistry major Jessica Holmes joined biophysicist Andrew Pelling’s Lab for Augmented Biology at the University of Ottawa, she was charged with an unusual task: coax mammalian cells to multiply ...
Within our bodies, cells survive by being chatty: They rely on a network of blood vessels to communicate with one another and receive vital nutrients. Replicating this cell crosstalk in a lab is less ...
Welcome to the Tissue Instructive Materials (TIMs) lab at Drexel University! The focus of the laboratory is on the development, application, and understanding of biomaterials which interact with ...
The resource is comprised of three shared laboratory spaces that are maintained exclusively for cell culture work. There are two smaller laboratories that each have two biological safety cabinets, ...
Have your research results or laboratory processes been bogged down by poor staining quality of histology slides? We all know that proper tissue processing is a key element to downstream staining ...
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Electricity prompts lab-grown pancreatic cells to mature, suggesting a new way to treat diabetes. A new electronic implant system can help lab‑grown pancreatic cells mature and function properly, ...
In a small lab at the University of California, Santa Cruz, clusters of mouse brain cells have taken on a task normally reserved for computer algorithms: keeping a simulated pole balanced upright. The ...
In a story ripped from the opening scenes of a sci-fi horror movie, scientists have bridged a critical gap between the biological and electronic. The study, published in Nature Electronics (summarized ...
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