Learn how antibody-dependent cellular phagocytosis targets cancer using monoclonal antibodies like rituximab, FcγR signaling, complement pathways and CD47-related resistance.
Antibody structure and dynamics drive therapeutic success. Biointron highlights how molecular insights improve stability, function, and performance of antibody drugs.
Therapeutic antibodies have transformed modern medicine. Biointron reviews their evolution, clinical applications, and impact on shaping today’s treatment landscape.
Multi-payload ADCs bring new strength to cancer therapy. Biointron explains how combining payloads boosts potency, reduces resistance, and improves patient outcomes.
Antibody drugs in ophthalmology represent a significant advancement in treating various eye diseases. These biologics target specific proteins involved in pathological processes, such as vascular endothelial growth factor (VEGF), which plays a key role in conditions like age-related macular degenera
Antibody mimetics are engineered proteins that replicate antibody binding. Biointron explores their unique properties and potential advantages in therapy and research.
VHH antibodies offer stability, small size, and strong binding. Biointron highlights their promise in diagnostics, therapeutics, and next-generation antibody design.
Antibody-antibiotic conjugates fight resistant bacteria with precision. Biointron highlights how AACs combine antibody targeting with antibiotic power for infections.
Explore key highlights from PEGS 2024, featuring breakthroughs in antibody engineering, immunotherapy, ADC development, AI-driven discovery, and protein science.
scFvs combine compact design with strong binding. Biointron explores their history, therapeutic applications, and role in diagnostics and research innovation.
VHH antibodies have reshaped biotech. Biointron reviews their discovery, unique advantages, and applications driving innovation in diagnostics and therapeutic development.
Bispecific ADCs advance oncology. Biointron shows how dual-targeted antibody-drug conjugates improve precision, efficacy, and patient outcomes in cancer treatment.
Antibody drugs for diabetes typically target specific molecules involved in the regulation of blood sugar levels or the immune response against insulin-producing cells, or specific hormones or receptors involved in glucose metabolism. For instance, teplizumab (Tzield), targets CD3 on T cells, thus deactivating immune cells which attack β-cells.
The 4th Fc-Mediated Function Summit in Boston showcased Fc engineering advances. Biointron reports key insights driving next-generation antibody therapeutics.
Antibody-drug conjugates unite precision with potency. Biointron outlines how ADCs combine antibodies with cytotoxic drugs to deliver targeted cancer therapies.