Intracellular ROS homeostasis is characterized by the ability of cells to adapt to changing conditions such as hypoxia, hyperoxia, and oxidative stress [4,5,6], while disruptions in this equilibrium can have significant implications for cell fate [7], disease progression [8], and therapeutic responses [9]
It appears to modulate glutamate levels in the brain, the most abundant neurotransmitter, which, in excess, can cause neurotoxicity and contribute to the development of neurological disorders
Liu et al., 2003)
Your body has rebuilt its glutathione reserves and is maintaining optimal cellular protection across all tissues
Induction of oxidative stress by restraint stress and corticosterone treatments in rats
this assigned the best hit for each of the ASVs and then provided the percentage of identical matches between the sequence of interest and the top hit as well as an e-value (i.e., the number of expected hits with a similar quality that could be found by chance)