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ROS changes evoked by the natural sweetener Rebaudioside A in a neuronal system

机译:天然甜味剂莱鲍迪苷A在神经元系统中引起的ROS变化

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Current water treatment methods are unable to eliminate artificial sweeteners, which can lead to their accumulation in the environment. Due to this problem, natural sweeteners can be used instead, but it is important to understand their effects in biological systems. Rebaudioside A, one of the main components of stevia, causes an increase in both ROS and in FAD linked autofluorescence in hippocampal CA3 area. These effects may be due to the insulin-mimetic properties of steviol glycosides, suggesting the results that they cause enhancements in glycolysis and in OXPHOS, with this metabolic pathway being the source of the rise in ROS. In excess, these molecules may cause damage to brain cells through oxidative stress. As leftovers from Stevia’s purification process can be used as biomass, with applications ranging from energy production to fertilization, continuous accumulation in the environment should be avoided in order to prevent undesired effects in the ecosystem.
机译:当前的水处理方法不能消除人造甜味剂,这可能导致它们在环境中的积累。由于这个问题,可以代替使用天然甜味剂,但是了解它们在生物系统中的作用很重要。莱鲍迪甙A是甜菊的主要成分之一,会导致海马CA3区的ROS和FAD相关的自发荧光增加。这些作用可能是由于甜菊糖苷的胰岛素模拟特性所致,表明结果表明它们导致糖酵解和OXPHOS增强,而这种代谢途径是ROS升高的来源。过量地,这些分子可能通过氧化应激对脑细胞造成损害。由于甜叶菊纯化过程中产生的残留物可以用作生物质,其应用范围从能源生产到施肥,应避免在环境中持续积累,以防止对生态系统产生不良影响。

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