New research reveals that disrupting bacterial communication in heart valve infections backfires by triggering the growth of larger, more resilient biofilms that resist antibiotic treatment.
Most Recent Articles
Targeting Circular RNA to Reduce Inflammatory Fibrosis and Heart Failure Progression
A newly discovered molecular switch in immune cells can be deactivated to reduce heart scarring and improve recovery after a heart attack, according to researchers.
Hypocretin Neuronal Overactivity and Diastolic Dysfunction Linked to Gut Metabolites
A newly discovered gut-brain-heart signaling pathway shows that bacterial metabolites control brain neurons to prevent heart stiffness and hypertension.
Therapeutic Potential of PGG in the Clearance of Established Cardiac Amyloid Deposits
A new study identifies a pomegranate-derived molecule that selectively disrupts the toxic protein aggregates in TTR amyloidosis, potentially offering a way to clear existing organ-damaging deposits.
Survival Benefits of Prehospital Emergency Intubation in Major Trauma
Using advanced AI modeling, researchers have found that inserting breathing tubes before trauma patients reach the hospital increases survival by 10% and could save 170 lives annually
