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经小鼠后肢缺血预处理获得的血浆通过激活 nrf2a 和下调 duox 来保护斑马鱼模型免受氧化应激。

Plasma obtained following murine hindlimb ischemic conditioning protects against oxidative stress in zebrafish models through activation of nrf2a and downregulation of duox.

机构信息

Zebrafish Centre for Advanced Drug Discovery, The Keenan Research Centre for Biomedical Science Toronto, Li Ka Shing Knowledge Institute, St. Michael's Hospital, Ontario, Canada.

Department of Medicine & Institute of Medical Science, University of Toronto, Toronto, Ontario, Canada.

出版信息

PLoS One. 2021 Nov 24;16(11):e0260442. doi: 10.1371/journal.pone.0260442. eCollection 2021.

Abstract

Ischemia/reperfusion of organ systems in trauma patients with resuscitated hemorrhagic shock (HSR) contributes to tissue injury and organ dysfunction. Previous studies using a murine model of HSR showed that remote ischemic preconditioning (RIC) protected against organ injury and that the plasma was able to prevent neutrophil migration in a zebrafish tailfin-cut inflammation model. In this study, we hypothesized that RIC plasma inhibits neutrophil function through a decrease in reactive oxygen species (ROS) production via the upregulation of the transcription factor Nrf2 and downstream antioxidative genes. Plasma from mice subjected to RIC (4 cycles of 5-min hindlimb ischemia/reperfusion) was microinjected into zebrafish. The results show that RIC plasma caused a reduction of ROS generation in response to tail injury. In addition, RIC plasma protected the fish larvae in the survival studies when exposed to either H2O2 or LPS. Oxidative stress PCR Array showed that RIC plasma treatment led to upregulation of antioxidative related genes including hsp70, hmox1a, nqo1 as well as downregulation of duox, the producer of H2O2. To explore the role of nrf2 in RIC, RIC plasma from Nrf2 KO mice were injected to the zebrafish and showed no inhibitory effect on neutrophil migration. Moreover, knockdown of nrf2a attenuated the anti-inflammatory and protective effect of RIC plasma. The downregulation of duox and upregulation of hmox1a were confirmed to require the activation of nrf2a. Therefore, we show that the protective effect of RIC may be related to the elaboration of humoral factors which counter injury-induced ROS generation in a nrf2-dependent fashion.

摘要

创伤合并复苏后失血性休克(HSR)患者的器官系统缺血/再灌注会导致组织损伤和器官功能障碍。先前使用 HSR 小鼠模型的研究表明,远程缺血预处理(RIC)可保护器官免受损伤,并且血浆能够在斑马鱼尾鳍切割炎症模型中阻止中性粒细胞迁移。在这项研究中,我们假设 RIC 血浆通过上调转录因子 Nrf2 及其下游抗氧化基因来减少活性氧(ROS)的产生,从而抑制中性粒细胞功能。将接受 RIC(4 个循环的 5 分钟后肢缺血/再灌注)的小鼠的血浆微量注射到斑马鱼中。结果表明,RIC 血浆可减少对尾部损伤的 ROS 生成。此外,RIC 血浆在暴露于 H2O2 或 LPS 时保护了生存研究中的鱼幼虫。氧化应激 PCR 阵列显示,RIC 血浆处理导致抗氧化相关基因的上调,包括 hsp70、hmox1a、nqo1 以及 duox(H2O2 的产生者)的下调。为了探索 Nrf2 在 RIC 中的作用,将 Nrf2 KO 小鼠的 RIC 血浆注射到斑马鱼中,发现其对中性粒细胞迁移没有抑制作用。此外,nrf2a 的敲低减弱了 RIC 血浆的抗炎和保护作用。证实了 duox 的下调和 hmox1a 的上调需要 nrf2a 的激活。因此,我们表明 RIC 的保护作用可能与体液因子的产生有关,这些因子以 nrf2 依赖的方式对抗损伤诱导的 ROS 生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fcd/8612579/d7eb35a849a1/pone.0260442.g001.jpg

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