In this review, we will highlight evidence linking sleep homeostasis and regulation to redox metabolism by discussing (1) the bipartite role that sleepwake neuropeptides and hormones have in redox metabolism through comparing cross-species cellular and molecular mechanisms, (2) the evolutionarily metabolic changes that accompanied the development of sleep loss in cavefish, and finally, (3) some of the challenges of uncovering the cellular mechanism underpinning how ROS accumulation builds sleep pressure and cellularly, how this pressure is cleared
Further studies are required to confirm whether changes in redox balance, and de-glutathionylation of enolase specifically, stimulates the glycolysis pathway and Bd growth
Several terpenoids, such as 18-glycyrrhetinic acid, -amyrin, betulinic acid, lupeol, and ursolic acid, act as both antibacterial and antioxidant agents (Ludwiczuk et al
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