The primary role of NAC as an antioxidant stems from its ability to increase the intracellular concentration of glutathione (GSH), which is the most crucial biothiol responsible for cellular redox imbalance
At the same time, it reduces bleeding complications and thrombocytopenia (low platelet counts) caused by anticoagulant medications like heparin and warfarin
One significant challenge is the incomplete understanding of ferroptosis pathways, particularly their complexity and the multitude of interacting molecules involved

Water, glycerin, isopentyldiol, sorbitol, butylene glycol (BG), mannitol, water-soluble collagen, recombinant human oligopeptide-1 (EGF-type), hydrogenated lecithin, sodium phosphate, caprylyl glycol, 1,2-hexanediol, recombinant human polypeptide-11 (FGF-type), umbilical cord blood stem-cell conditioned culture, human stem-cell conditioned culture, caprylic/capric triglycerides, polysorbate-80, ascorbyl propyl hyaluronate, tocopherol acetate (vitamin E), capryloyl adipeptide-17, phytosterols, ceramide EOP, ceramide NG, ceramide NP, ceramide AG, ceramide AP, vitamin B3 NMN (nicotinamide mononucleotide), lecithin, umbilical cord blood cell conditioned culture, umbilical cord blood stem-cell exosomes, cholesterol, tocopherol, arbutin, flax fatty acids, ascorbyl palmitate (vitamin C), glutathione, xanthan gum, citric acid, sodium citrate, methylparaben, phenoxyethanol

Trypsin-digested cells were collected by centrifugation and resuspended, and the intracellular LPO levels were determined by flow cytometry at 488 nm