Following oral administration, glycyrrhizin exhibits low oral bioavailability, primarily because it requires enzymatic hydrolysis by intestinal microbiota to generate its active metabolite, GA, which is then absorbed into the systemic circulation ( Clostridium innocuum (ES2406), possess specialized -glucuronidases that hydrolyze GL to GA in the gastrointestinal tract, with optimal enzymatic activity occurring at pH values between 5.7 and 7.0 ( When administered intravenously, glycyrrhizin exhibits a biphasic plasma clearance profile, characterized by a rapid distribution phase followed by a slower elimination phase ( Irrespective of the administration route, GA predominates in systemic circulation and is rapidly and widely distributed throughout the body, with the highest concentration observed in liver tissue (Figure 2) ( 3 Core pharmacological mechanisms of glycyrrhizin in the liver GA exerts hepatoprotective effects through multiple pathways and targets, forming a synergistic network that includes anti-inflammatory, antioxidant, liver-protecting, and immunomodulatory actions (Xie et al., 2015) (Table 2

Glutathione is a naturally occurring tripeptide made from three amino acids: glutamate, cysteine, and glycine
ER-mitochondria contacts promote mtDNA nucleoids active transportation via mitochondrial dynamic tubulation
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A simple way to hold the difference: a peptide is a message, a short instruction that tells a specific cell to do a specific thing, while NAD+ is the battery and the spark, the coenzyme that keeps the cell powered enough to carry any instruction out