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Neuroprotective effects of resveratrol against oxygen glucose deprivation induced mitochondrial dysfunction by activation of AMPK in SH-SY5Y cells with 3D gelatin scaffold

机译:白藜芦醇对氧葡萄糖剥夺诱导的线粒体功能障碍的神经保护作用通过3D明胶支架中的AMPK激活AMPK

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Ischemic stroke arising from the sudden blockage of arteries in the brain, is a common and serious brain damaging problem worldwide, often leading to disability or death. The oxygen glucose deprivation (OGD) model was created to improve understanding of hypoxia- and hypoglycemia-induced neuronal cell injury, and provide an in vitro surrogate to assess novel treatments for cerebral hypoxia-ischemia. AMP-activated protein kinase (AMPK) is a critical neuroprotective regulator of energy homeostasis, metabolism and cell survival. However, the neuroprotective mechanisms by which AMPK achieves these beneficial effects in human SH-SY5Y neural cells exposed to OGD are still not well understood. Resveratrol is a potent activator of AMPK suggesting it may have therapeutic potential as a neuroprotective agent. Therefore, we hypothesized the AMPK activator resveratrol protects against OGD-mediated impairment of human SH-SY5Y neuronal cells. The novelty of the experiment using a 3D gelatin scaffold cell culture assay, we have tested the potential of 3D systems to mimic the endogenous neuronal environment and have applied these systems to study the effect of OGD on neuronal cells with/without resveratrol. Here we show resveratrol reverses, via AMPK-dependent downregulation of caspase 3 and 9 activity, the OGD-mediated decreases in SH-SY5Y cell viability on a 3D gelatin scaffold. In addition, treatment with OGD decreases mRNA levels of AMPK and the neuroprotective genes (Bcl-2 and CREB); however, co-treatment with resveratrol significantly normalizes these effects. Importantly, resveratrol improves the expression of AMPK and p-AMPK in OGD-exposed SH-SY5Y cells. Resveratrol also significantly rescues SH-SY5Y cells from OGD-mediated mitochondrial deficiency (lower D-loop level, mitochondrial mass, maximal respiratory function, COX activity, and mitochondrial membrane potential). Resveratrol also rescues the transcript expression levels of PGC1 alpha and mitochondrial genes (NRF-1 and Tfam) in OGD-treated SH-SY5Y cells. These findings extend our mechanistic understanding of the central role of AMPK in OGD-related neuronal impairment, and may serve as basis for implementing new therapeutic strategies in the treatment of ischemic stroke.
机译:缺血中风从大脑中动脉突然堵塞,是全世界常见而严重的脑损伤问题,往往导致残疾或死亡。产生氧葡萄糖剥夺(OGD)模型以改善对缺氧和低血糖症诱导的神经元细胞损伤的理解,并提供体外替代物,以评估对脑缺氧缺血的新疗法。 AMP活化蛋白激酶(AMPK)是能量稳态,代谢和细胞存活的关键神经保护调节因子。然而,AMPK在暴露于OGD的人SH-SY5Y神经细胞中实现这些有益效果的神经保护机制仍然不太了解。白藜芦醇是AMPK的有效活化剂,表明它可能具有作为神经保护剂的治疗潜力。因此,我们假设AMPK活化剂白藜芦醇可防止OGD介导的人SH-SY5Y神经元细胞的损伤。使用3D明胶支架细胞培养测定的实验的新颖性,我们测试了3D系统的潜力,以模仿内源性神经元环境,并应用这些系统研究OGD对具有/不含白藜芦醇的神经元细胞的影响。在这里,我们展示了白藜芦醇酶3和9活性的AMPK依赖性下调的白藜芦醇逆转,OGD介导的3D明胶支架上的SH-SY5Y细胞活力降低。此外,用OGD的治疗降低了AMPK和神经保护基因的mRNA水平(BCL-2和CREB);然而,与白藜芦醇共同治疗明显标准化这些效果。重要的是,白藜芦醇改善了OGD暴露的SH-SY5Y细胞中AMPK和P-AMPK的表达。白藜芦醇还显着抵消来自OGD介导的线粒体缺陷(低D环水平,线粒体质量,最大呼吸功能,COX活性和线粒体膜电位)的SH-SY5Y细胞。白藜芦醇还抵押在OGD处理的SH-SY5Y细胞中的PGC1α和线粒体基因(NRF-1和TFAM)的转录表达水平。这些调查结果延长了机械理解对AMPK在OGD相关的神经元损伤中的核心作用,并且可以作为实施缺血性卒中治疗新的治疗策略的基础。

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