Exploring how animal models are transforming our understanding of cardiac metabolism and paving the way for new treatments for heart disease.
Exploring how chiral chromatography separates drug enantiomers to improve pharmacokinetics and prevent tragedies like thalidomide
Decoding the genetic secrets of Eucommia ulmoides through transcriptome analysis reveals insights into rubber biosynthesis, sex determination, and medicinal compounds.
Exploring how the BAT2 gene in Saccharomyces cerevisiae regulates the conversion of leucine and isoleucine into flavor compounds in fermented foods.
Exploring the global vitamin D deficiency crisis in orthopedic patients across different latitudes, with insights from German-Greek comparative studies.
Discover how interleukin-1 beta (IL-1β) acts as a molecular hourglass in female fertility, accelerating cellular aging in the endometrium through inflammaging.
Discover how Lactobacillus salivarius SNK-6 from laying hens could transform NAFLD treatment through the miR-130a-5p/MBOAT2 pathway
Exploring how κ-opioid receptor enantiomers differentially regulate renal water and electrolyte balance through chiral molecular interactions.
A groundbreaking case study revealing how phenytoin metabolites can form kidney stones, a previously unknown complication of this common epilepsy medication.
Discover how St. John's Wort harbors rare tocotrienols, challenging botanical conventions and offering potent health benefits.