Using sophisticated RNA sequencing technology, biomedical researchers can measure the activity of our genes across millions ...
Scientists uncover a universal law explaining how nutrient increases slow cell growth, reshaping our understanding of biology ...
Cell culture plates in the Roeder lab where scientists recently studied gene expression in breast cancer. (Credit: Lori ...
Senescent fibroblasts are aging cells in connective tissue that no longer divide and protect against tumor development. Yet, these same cells can promote cancer growth in a laboratory setting.Until ...
Japanese researchers uncovered a universal rule describing why life’s growth slows despite abundant nutrients. Their “global ...
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Terasaki Institute and Caltech join forces on groundbreaking embryo formation study
The Terasaki Institute for Biomedical Innovation (TIBI) is pleased to announce its collaboration with the California ...
Researchers in Georgetown University’s Glasgow Lab are using zebrafish as a model to investigate treatments for cancer and ...
Single-cell sequencing provides great insights into the inner workings of cells – but making sense of the data requires ...
Cell growth is the most fundamental process in organisms, yet the way in which metabolism determines its rate has long remained unclear. To decipher this mystery, researchers from Earth-Life Science ...
Emerging research highlights the transformative potential of m6A RNA modification in the diagnosis and treatment of cardiovascular diseases (CVDs).
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AI chat box helps investigate complex biology in English language
Using sophisticated RNA sequencing technology, biomedical researchers can measure the activity of our genes across millions ...
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