Explore how computational chemistry is revolutionizing diabetes drug discovery through 3D-QSAR, molecular docking, and molecular dynamics simulations.
Explore how genetic studies are revealing the complex relationship between type 2 diabetes and obesity, uncovering subtypes and personalized treatment approaches.
Understanding Diabetic Ketoacidosis (DKA) - a life-threatening complication of diabetes where the body produces dangerous blood acids called ketones.
Discover how Ichnocarpus frutescens, a traditional Ayurvedic plant, is scientifically proven to combat diabetes and hyperlipidemia through its powerful polyphenolic compounds.
Discover how Zanthoxylum armatum DC. shows remarkable antidiabetic and antioxidant activity in type 2 diabetic rats, bridging traditional medicine and modern science.
Explore how polyhydroxylated alkaloids from jungle vines can inhibit Maltase-Glucoamylase and potentially revolutionize diabetes treatment.
Discover how anti-endothelial cell antibodies (AECAs) target blood vessels in diabetes, contributing to vascular complications through autoimmune mechanisms.
Exploring the scientific evidence behind Bilimbi and Soursop leaf extracts and their potential role in managing blood glucose levels in Diabetes Mellitus.
Exploring how children of diabetic parents carry invisible metabolic signatures that alter their bodies' sugar processing, fat storage, and inflammation responses.