Epigenetic Age Acceleration Mediates Cancer Treatment's Cardiovascular Damage
Study of 2,939 childhood cancer survivors reveals how accelerated aging explains up to 35% of treatment-related heart disease risk.
Aging biology, lifespan extension, hallmarks of aging, and healthspan optimization
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Study of 2,939 childhood cancer survivors reveals how accelerated aging explains up to 35% of treatment-related heart disease risk.
Researchers discover alamandine peptide prevents pathological retinal blood vessel formation that threatens vision in premature infants.
New research reveals how neutralizing ACBP/DBI protein could prevent and treat fatty liver disease, fibrosis, and liver cancer through autophagy restoration.
Researchers discover that neutralizing ACBP protein reduces joint inflammation and cartilage damage in osteoarthritis models.
Scientists discover how reprogramming factors rejuvenate eye cells and restore vision by activating a protective enzyme that clears toxic lipids.
Scientists reveal how breast tissue changes at the cellular and spatial level during aging, offering new insights into tissue remodeling.
Researchers identify promising collection of antiviral proteins that could lead to breakthrough molecular tools and therapies.
New review reveals how lungs communicate with distant organs during sepsis, offering targets for multi-organ treatment strategies.
New research reveals how microplastics from plastic bottles could worsen pulmonary fibrosis by targeting specific cellular pathways.
Continuous fetal heart rate monitoring during labor raises surgical delivery rates but shows minimal benefit for newborn health outcomes.
Researchers identify PIM1 protein as key driver of skin fibrosis and show plant compound Bruceine D effectively treats scars.
New research identifies plasma protein patterns that can forecast individual osteoarthritis development before symptoms appear.