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白藜芦醇通过调节 TRPM2 通道减轻缺氧诱导的神经元细胞死亡、炎症和线粒体氧化应激。

Resveratrol attenuates hypoxia-induced neuronal cell death, inflammation and mitochondrial oxidative stress by modulation of TRPM2 channel.

机构信息

Departmant of Neurosurgery, Faculty of Medicine, Hatay Mustafa Kemal University, Hatay, Turkey.

Director of Neuroscience Research Center (NOROBAM), Suleyman Demirel University, Isparta, Turkey.

出版信息

Sci Rep. 2020 Apr 15;10(1):6449. doi: 10.1038/s41598-020-63577-5.

Abstract

Hypoxia (HYPX) induced-overload Ca entry results in increase of mitochondrial oxidative stress, inflammation and apoptosis in several neurons. Ca permeable TRPM2 channel was gated by ADP-ribose (ADPR) and reactive oxygen species (ROS), although its activity was modulated in HYPX-exposed neurons by resveratrol (RSV). The aim of this study was to evaluate if a therapy of RSV can modulate the effect of HYPX in the TRPM2 expressing SH-SY5Y neuronal and HEK293 (no expression of TRPM2) cell lines. The SH-SY5Y and HEK293 cells were divided into four groups as control, RSV (50 μM and 24 hours), and HYPX and RSV + HYPX. For induction of HYPX in the cells, CoCl (200 μM and 24 hours) incubation was used. HYPX-induced intracellular Ca responses to TRPM2 activation were increased in the SH-SY5Y cells but not in the HEK293 cells from coming HO and ADPR. RSV treatment improved intracellular Ca responses, mitochondrial function, suppressed the generation of cytokine (IL-1β and TNF-α), cytosolic and mitochondrial ROS in the SH-SY5Y cells. Intracellular free Zn, apoptosis, cell death, PARP-1, TRPM2 expression, caspase -3 and -9 levels are increased through activating TRPM2 in the SH-SY5Y cells exposed to the HYPX. However, the values were decreased in the cells by RSV and TRPM2 blockers (ACA and 2-APB). In SH-SY5Y neuronal cells exposed to HYPX conditions, the neuroprotective effects of RSV were shown to be exerted via modulation of oxidative stress, inflammation, apoptosis and death through modulation of TRPM2 channel. RSV could be used as an effective agent in the treatment of neurodegeneration exposure to HYPX.

摘要

缺氧(HYPX)诱导的过载钙内流导致几种神经元中线粒体氧化应激、炎症和细胞凋亡增加。钙通透性 TRPM2 通道被 ADP-核糖(ADPR)和活性氧(ROS)门控,尽管其在 HYPX 暴露的神经元中的活性被白藜芦醇(RSV)调节。本研究旨在评估 RSV 治疗是否可以调节 HYPX 对表达 TRPM2 的 SH-SY5Y 神经元和 HEK293(无 TRPM2 表达)细胞系的影响。将 SH-SY5Y 和 HEK293 细胞分为对照组、RSV(50 μM 和 24 小时)组和 HYPX 和 RSV+HYPX 组。为了在细胞中诱导 HYPX,使用 CoCl(200 μM 和 24 小时)孵育。在 SH-SY5Y 细胞中,HYPX 诱导的 TRPM2 激活的细胞内 Ca 反应增加,但在 HEK293 细胞中没有增加。RSV 治疗改善了细胞内 Ca 反应、线粒体功能,抑制了 SH-SY5Y 细胞中细胞因子(IL-1β和 TNF-α)、细胞质和线粒体 ROS 的产生。在暴露于 HYPX 的 SH-SY5Y 细胞中,通过激活 TRPM2,细胞内游离 Zn、细胞凋亡、细胞死亡、PARP-1、TRPM2 表达、caspase-3 和 -9 水平增加。然而,在细胞中,通过 RSV 和 TRPM2 阻滞剂(ACA 和 2-APB),这些值降低。在暴露于 HYPX 条件下的 SH-SY5Y 神经元细胞中,RSV 的神经保护作用通过调节 TRPM2 通道来调节氧化应激、炎症、细胞凋亡和死亡来发挥作用。RSV 可作为治疗 HYPX 暴露引起的神经退行性变的有效药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c609/7160154/fe1b825f5152/41598_2020_63577_Fig1_HTML.jpg

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