Discover how skeletal muscle cells regulate fuel selection between glucose and fatty acids during exercise through the glucose-fatty acid cycle.
Unraveling the hidden impact of metabolic disease on egg cell development and the delicate communication within oocyte-cumulus complexes.
Explore the fascinating world of uridine, a cellular chameleon that changes form and location to perform critical functions in your cells.
Discover the fascinating theoretical model of neurovascular coupling and how NO, EET, and 20-HETE molecules coordinate blood flow in your brain.
Discover how the MLX protein selectively binds to lipid droplets, regulating cellular energy storage and metabolism with implications for obesity and diabetes.
Discover how RNA N6-methyladenosine (m6A) methylation regulates glycolipid metabolism and its implications for metabolic diseases.
Exploring whether standard cell culture conditions are adequate for human umbilical cord blood mesenchymal stem cells and the potential of physiological oxygen environments.
Explore how artificial intelligence is transforming education through personalized learning, intelligent tutoring systems, and data-driven insights that enhance student outcomes.
Discover how the H+-monocarboxylate cotransporter powers early embryonic development through lactate transport and metabolic switching
Discover how glucose-inhibited neurons in the ventromedial hypothalamus use nitric oxide signaling to regulate appetite through insulin and leptin pathways.