Discover how targeted radionuclide therapy combined with activatable prodrugs creates a precision approach to treating metastatic cancer.
Exploring how streptavidin-biotin systems are revolutionizing Boron Neutron Capture Therapy for precise cancer treatment
Explore how oxadiazole derivatives are revolutionizing cancer treatment through targeted molecular therapy, apoptosis induction, and metastasis inhibition.
Discover how scientists are creating smart cancer drugs that target tumors with precision and release chemotherapy only inside cancer cells, reducing side effects.
Explore the discovery of AZD0364, a potent ERK1/2 inhibitor showing promise in treating resistant non-small cell lung cancer through targeted molecular therapy.
Discover how scientists determined the optimal denosumab dose regimen through pharmacokinetic and pharmacodynamic analysis in breast cancer patients with bone metastases.
Discover how late-stage maleimidation on C(7)-H tryptophan enables modular synthesis of clickable peptides for advanced therapeutic applications.
Explore how high-level computational methods are transforming drug design, atmospheric chemistry, and thermochemistry through virtual experiments.
Discover how natural compounds in everyday foods are enhancing cancer treatments by overcoming chemotherapy resistance through chemo-sensitization.
Explore how aspergillosis, a fungal infection, can mimic lung cancer in diagnosis, symptoms, and imaging, creating significant challenges for clinicians.