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脑活素对前脑缺血再灌注损伤动物模型的影响:KEAP1/Nrf2/抗氧化信号通路激活的新见解。

The Effect of Cerebrolysin in an Animal Model of Forebrain Ischemic-Reperfusion Injury: New Insights into the Activation of the Keap1/Nrf2/Antioxidant Signaling Pathway.

机构信息

Department of Physiology, Faculty of Veterinary Medicine, Mansoura University, Mansoura 35516, Egypt.

Department of Biochemistry, Physiology, and Pharmacology, Faculty of Veterinary Medicine, King Salman International University, El Tor 46612, Egypt.

出版信息

Int J Mol Sci. 2023 Jul 28;24(15):12080. doi: 10.3390/ijms241512080.

Abstract

Forebrain ischemia-reperfusion (IR) injury causes neurological impairments due to decreased cerebral autoregulation, hypoperfusion, and edema in the hours to days following the restoration of spontaneous circulation. This study aimed to examine the protective and/or therapeutic effects of cerebrolysin (CBL) in managing forebrain IR injury and any probable underlying mechanisms. To study the contribution of reperfusion to forebrain injury, we developed a transient dual carotid artery ligation (tDCAL/IR) mouse model. Five equal groups of six BLC57 mice were created: Group 1: control group (no surgery was performed); Group 2: sham surgery (surgery was performed without IR); Group 3: tDCAL/IR (surgery with IR via permanently ligating the left CA and temporarily closing the right CA for 30 min, followed by reperfusion for 72 h); Group 4: CBL + tDCAL/IR (CBL was given intravenously at a 60 mg/kg BW dose 30 min before IR); and Group 5: tDCAL/IR + CBL (CBL was administered i.v. at 60 mg/kg BW three hours after IR). At 72 h following IR, the mice were euthanized. CBL administration 3 h after IR improved neurological functional recovery, enhanced anti-inflammatory and antioxidant activities, alleviated apoptotic neuronal death, and inhibited reactive microglial and astrocyte activation, resulting in neuroprotection after IR injury in the tDCAL/IR + CBL mice group as compared to the other groups. Furthermore, CBL reduced the TLRs/NF-kB/cytokines while activating the Keap1/Nrf2/antioxidant signaling pathway. These results indicate that CBL may improve neurologic function in mice following IR.

摘要

前脑缺血再灌注 (IR) 损伤会导致神经功能障碍,这是由于在自发循环恢复后的数小时到数天内,脑自动调节、灌注减少和水肿。本研究旨在研究脑活素 (CBL) 在管理前脑 IR 损伤中的保护和/或治疗作用,以及任何可能的潜在机制。为了研究再灌注对前脑损伤的贡献,我们开发了一种短暂性双颈总动脉结扎 (tDCAL/IR) 小鼠模型。将 5 组各 6 只 BLC57 小鼠分为 5 组:第 1 组:对照组(未进行手术);第 2 组:假手术组(手术但未发生 IR,即永久性结扎左侧颈总动脉,同时短暂关闭右侧颈总动脉 30 分钟,然后再灌注 72 小时);第 3 组:tDCAL/IR 组(手术并发生 IR,即永久性结扎左侧颈总动脉,同时短暂关闭右侧颈总动脉 30 分钟,然后再灌注 72 小时);第 4 组:CBL+tDCAL/IR 组(IR 前 30 分钟静脉给予 CBL 60mg/kg BW 剂量);第 5 组:tDCAL/IR+CBL 组(IR 后 3 小时静脉给予 CBL 60mg/kg BW 剂量)。IR 后 72 小时处死小鼠。与其他组相比,IR 后 3 小时给予 CBL 可改善神经功能恢复,增强抗炎和抗氧化活性,减轻神经元凋亡,抑制反应性小胶质细胞和星形胶质细胞激活,从而在 tDCAL/IR+CBL 组中发挥神经保护作用。此外,CBL 降低了 TLRs/NF-kB/细胞因子,同时激活了 Keap1/Nrf2/抗氧化信号通路。这些结果表明,CBL 可能改善 IR 后小鼠的神经功能。

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