Surface-engineered mitochondria coated with protective polymers and cell-penetrating peptides enter cells more efficiently while preserving energy-producing function.
Two studies mapped the structures of VPS13 proteins associated with neurodegenerative diseases, laying the groundwork for understanding how mutations disrupt cellular lipid transport.
A new surface engineering approach that enhances mitochondrial stability and cellular uptake promises to advance ...
Meet your body’s internal maintenance guy: apoptosis — a hero of healthy ageing - Have you heard of ‘apoptosis’? It’s the ...
An organelle discovered inside a microbe inside a cow’s gut helps explain how livestock burps contribute to warming our ...
Professor Yeu-Chun Kim's team in the Department of Chemical and Biomolecular Engineering developed helical polypeptide nanoparticles that induce an ...
Skeletal muscle undergo remarkable changes during aging including anatomical, ultrastructural, and moreover biochemical. The aging associated reduction of muscle mass, t ...
A team from the University of Bonn and the Research Center Borstel, Leibniz Lung Center (FZB) has discovered a previously ...
Automated, detergent-free purification preserves native membrane protein structure while supporting more reliable target ...
Discover how the amino acid leucine enhances energy production and protects mitochondrial health in our cells.
A new lipid nanoparticle platform delivers full-length antibodies inside cells, unlocking intracellular targets in cancer, autoimmune disease, and Parkinson’s.
Synthetic biologists have long dreamed of constructing artificial cells from the bottom up. Researchers have now taken a major step in this direction by demonstrating that non-living components can be ...
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