Discover how dairy cows' mammary glands adapt to once-daily milking and feed restriction through sophisticated biological mechanisms that maintain efficiency and health.
Explore how starvation affects the physiology of Notopterus notopterus, a freshwater fish species, through hematological and biochemical changes.
Discover groundbreaking research revealing glucose's dual role as both energy source and master regulator of cellular processes, with implications for diabetes, cancer, and regenerative medicine.
Discover how the FAIM protein regulates metabolism, promotes fat browning, and could revolutionize obesity treatment through cutting-edge research findings.
Explore the microscopic factory at plant shoot tips - the shoot apical meristem - and its role in plant development and agriculture.
Discover how the DREAM protein regulates prodynorphin in pancreatic cells and its role in Type 2 Diabetes development.
Discover how bacteria specifically recognize and metabolize sulfoquinovose, one of Earth's most abundant sugars, through specialized sulfoglycolysis pathways.
Discover how voltage-gated potassium channels (Kv1 and Kv2) regulate insulin secretion in pancreatic beta cells and their potential for diabetes treatment.
Groundbreaking research reveals prediabetes remission can occur without weight loss through metabolic improvements and healthier fat distribution.
Discover how fenofibrate suppresses metabolic memory in diabetic retinopathy through SIRT1 pathway, offering new hope for preventing diabetic blindness.