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Effects of stevia on synaptic plasticity and NADPH oxidase level of CNS in conditions of metabolic disorders caused by fructose

机译:甜菊对果糖引起的代谢障碍条件下CNS突触塑性和NADPH氧化酶水平的影响

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摘要

Abstract Background Excess dietary fructose intake associated with metabolic syndrome and insulin resistance and increased risk of developing type 2 diabetes. Previous animal studies have reported that diabetic animals have significantly impaired behavioural and cognitive functions, pathological synaptic function and impaired expression of glutamate receptors. Correction of the antioxidant status of laboratory rodents largely prevents the development of fructose-induced plurimetabolic changes in the nervous system. We suggest a novel concept of efficiency of Stevia leaves for treatment of central diabetic neuropathy. Methods By in vivo extracellular studies induced spike activity of hippocampal neurons during high frequency stimulation of entorhinal cortex, as well as neurons of basolateral amygdala to high-frequency stimulation of the hippocampus effects of Stevia rebaudiana Bertoni plant evaluated in synaptic activity in the brain of fructose-enriched diet rats. In the conditions of metabolic disorders caused by fructose, antioxidant activity of Stevia rebaudiana was assessed by measuring the NOX activity of the hippocampus, amygdala and spinal cord. Results In this study, the characteristic features of the metabolic effects of dietary fructose on synaptic plasticity in hippocampal neurons and basolateral amygdala and the state of the NADPH oxidase (NOX) oxidative system of these brain formations are revealed, as well as the prospects for development of multitarget and polyfunctional phytopreparations (with adaptogenic, antioxidant, antidiabetic, nootropic activity) from native raw material of Stevia rebaudiana. Stevia modulates degree of expressiveness of potentiation/depression (approaches but fails to achieve the norm) by shifting the percentage balance in favor of depressor type of responses during high-frequency stimulation, indicating its adaptogenic role in plasticity of neural networks. Under the action of fructose an increase (3–5 times) in specific quantity of total fraction of NOX isoforms isolated from the central nervous system tissue (amygdala, hippocampus, spinal cord) was revealed. Stevia exhibits an antistress, membrane-stabilizing role reducing the level of total fractions of NOX isoforms from central nervous system tissues and regulates NADPH-dependent O2 − −producing activity. Conclusion Generally, in condition of metabolic disorders caused by intensive consumption of dietary fructose Stevia leaves contributes to the control of neuronal synaptic plasticity possibly influencing the conjugated NOX-specific targets.
机译:摘要背景多余的膳食果糖摄入与代谢综合征和胰岛素抗性相关,以及发育2型糖尿病的风险增加。以往的动物研究报道,糖尿病动物具有显着受损的行为和认知功能,病理突触功能和谷氨酸受体的表达受损。实验室啮齿动物的抗氧化状态的校正在很大程度上妨碍了神经系统中果糖诱导的plumetabolic变化的发展。我们建议一种新颖的甜叶菊叶效率概念,以治疗中枢糖尿病神经病变。方法在体内细胞外研究诱导在Entorhinal Cortex的高频刺激期间海马神经元的尖峰活性,以及​​基石孢子的高频刺激对果糖的突触活性评估的甜叶菊雷尼尼菌植物的高频刺激 - 养蛋饮食大鼠。在由果糖造成的代谢紊乱的条件下,通过测量海马,杏仁杆和脊髓的NOx活性来评估甜叶菊雷氏菌的抗氧化活性。结果在该研究中,揭示了膳食果糖对海马神经元突触塑性的代谢效应的特征特征,以及这些脑形成的NADPH氧化酶(NOX)氧化体系的状态,以及发展前景多靶和多官能植物(多官能植物植物)(含有甜叶菊雷尼氏菌天然原料的植物原料(具有适应性,抗氧化剂,抗糖尿病活性)。甜叶菊通过转移在高频刺激期间,通过转移减少压抑的响应的百分比来调节增强/抑郁症的表达程度(且未能达到常态),表明其在神经网络的可塑性中的适应性作用。在果糖的作用下,揭示了从中枢神经系统组织(Amygdala,海马,脊髓)中分离的NOx同种型的特定量的增加(3-5次)。甜叶菊表现出抗溶剂,膜稳定作用,减少中枢神经系统组织的NOx同种型的总分数水平,并调节NADPH依赖性O2--促进活性。结论一般来说,在膳食果糖甜叶菊的密集消耗造成的代谢紊乱的条件下,叶片的控制有助于控制神经元突触可塑性,可能影响缀合的NOx特异性靶标。

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