Cell-based models of the human cortex transplanted into mice produce neurons that are inaccessible in vitro, and could enable scientists to link brain injury to behaviour.
The human dental pulp stem cell (hDPSC) secretome contains extracellular vesicles, growth factors, antioxidant enzymes, and immunomodulatory proteins, offering a potential cell-free therapeutic ...
UCLA researchers show for the first time that human brain assembloids can reproduce the hallmark electrical changes seen ...
A paper has been published on the creation of a disease model for multiple sclerosis using organoids. I am introducing this ...
The human nose is the first checkpoint of the respiratory tract, a thin, moist lining where viruses such as influenza A make ...
Revvity, Inc. (NYSE: RVTY) today announced it has entered into a definitive agreement to acquire Human Cell Design (HCD), a France-based biotechnology company specializing in human cell models and ...
Scientists are using cell-free transcription and translation systems to synthesize proteins, design biology-based sensors and ...
University of Sydney researchers have developed a new way to test how closely lab-grown biological models resemble real human ...
Scientists have grown human brain tissue to fill most of a mouse’s cortex, creating a new model for studying brain disease and neural circuits.
University of Sydney researchers have developed a powerful way to test how closely lab-grown biological models resemble real human embryos, finding that while some models perform well, none yet fully ...
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