Exploring COX-2 overexpression in canine tumors and its potential as therapeutic targets in veterinary oncology.
Explore the fascinating structures of FTO and ALKBH5, the RNA demethylases that act as molecular erasers in gene regulation.
Discover the scientific validation of traditional medicinal plants from the Mascarene Islands and their essential oils' potential in modern pharmacology and cosmeceuticals.
Discover how computer simulations revealed the molecular mechanisms behind poliovirus RNA polymerase fidelity through free energy calculations and molecular dynamics.
Discover how dicerium complexes are revolutionizing DNA editing by performing double-strand hydrolysis at body temperature, opening new frontiers in genetic engineering.
Exploring the prevalence of carbapenemase genes in multidrug-resistant Gram-negative bacteria from a Tanzanian hospital and the global implications for antimicrobial resistance.
Discover how electron microscopy revealed adenylate cyclase localization in intestinal cells during bacterial infection, explaining the mechanism behind severe diarrheal diseases.
Discover how diffusion chambers revealed leukemia cells' ability to elevate alkaline phosphatase in response to environmental factors, advancing cancer research.
Explore the structural mechanism of TDP2 enzyme in repairing 5′-phosphotyrosine DNA adducts and its implications for cancer therapy and antiviral treatments.
Discover how a single genetic mutation in the ETNK1 enzyme drives atypical chronic myeloid leukemia through mitochondrial dysfunction and metabolic disruption.