Exploring the pharmaceutical potential of red algae bioactive compounds including antiviral, anticancer, and dermatological applications
Explore how pharmacogenetics is revolutionizing personalized medicine by using genetic information to determine the right drug and dosage for each patient.
Explore how green chemistry approaches are revolutionizing the development of thiazole-containing compounds for cancer therapy, creating sustainable and effective treatments.
Explore the fascinating molecular targets within the cell cycle and innovative strategies scientists are using to derail cancer's relentless growth.
Discover how GLUT2-targeted carbon nanodots and big data analytics are transforming hepatocellular carcinoma diagnosis through innovative nanotechnology.
Explore how scientists are creating hybrid molecules like tetrahydroquinoline-isoxazole compounds to develop targeted cancer therapies with precision and reduced side effects.
Discover how 2-amino-5-arylmethyl-1,3-thiazole derivatives show promise as potential therapeutic agents for prostate cancer treatment.
Explore the fascinating interaction between superoxide and nitric oxide and how their collision creates peroxynitrite, leading to DNA damage and mutations.
Discover how modern dentistry uses caries risk assessment to predict and prevent cavities through scientific analysis of your unique oral ecosystem.
Explore MK-2206, a revolutionary allosteric AKT inhibitor that targets cancer's survival pathways with precision and minimal side effects.