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Monitoring of neuronal loss in the hippocampus of Aβ-injected rat: Autophagy, mitophagy, and mitochondrial biogenesis stand against apoptosis

机译:监测注射Aβ的大鼠海马中神经元的损失:自噬,线粒体和线粒体的生物发生可以防止细胞凋亡

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In the present study, we tried to answer the following questions: which kind of defense pathways are activated after Aβ insult? How defense systems react against noxious effects of Aβ and whether they are able to deal against apoptosis or not? So, we traced some molecular pathways including autophagy, mitophagy, and mitochondrial biogenesis before reaching to the endpoint of apoptosis. Besides, we measured the function of mitochondria after injection of Aβ (1-42) in CA1 area of hippocampus as a model of Alzheimer's disease (AD). Based on our data, autophagy markers reached to their maximum level and returned to the control level as apoptotic markers started to increase. As a specialized form of autophagy, mitophagy markers followed the trend of autophagy markers. Whereas mitochondrial dynamic processes shifted toward fission, mitochondrial biogenesis was severely affected by Aβ and significantly decreased. Alongside suppression of mitochondrial biogenesis, activity of specific enzymes involved in antioxidant defense system, electron transport chain, and tricarboxylic acid cycle (TCA) decreased in response to the Aβ. Activity of antioxidant enzymes increased at first and then decreased significantly compared to the control. TCA enzymes aconitase and malate dehydrogenase activities reduced immediately while citrate synthase and fumarase activities did not change. Based on our finding, monitoring of the master molecules of intracellular cascades and determining their trends before the destructive function of Aβ could be the target of therapeutic issues for AD.
机译:在本研究中,我们试图回答以下问题:Aβ损伤后激活了哪种防御途径?防御系统如何对抗Aβ的有害作用以及它们是否能够应对细胞凋亡?因此,在到达凋亡终点之前,我们追踪了一些分子途径,包括自噬,线粒体吞噬和线粒体生物发生。此外,我们测量了海马CA1区注射Aβ(1-42)后线粒体的功能,这是阿尔茨海默氏病(AD)的模型。根据我们的数据,自噬标记物达到最高水平,并随着凋亡标记物开始增加而回到对照水平。作为自噬的一种特殊形式,线粒体标志物遵循自噬标志物的趋势。线粒体的动态过程向裂变转移,而线粒体的生物发生受到Aβ的严重影响并显着降低。除了抑制线粒体的生物发生外,抗Aβ的抗氧化防御系统,电子传输链和三羧酸循环(TCA)中涉及的特定酶的活性也降低了。与对照相比,抗氧化剂酶的活性首先增加,然后显着降低。 TCA酶乌头酸酶和苹果酸脱氢酶活性立即降低,而柠檬酸合酶和富马酸酯酶活性未改变。基于我们的发现,监测细胞内级联反应的主要分子并在Aβ破坏功能之前确定其趋势可能是AD治疗的目标。

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