首页> 外文期刊>Scientific reports. >Selenium nanoparticles for targeted stroke therapy through modulation of inflammatory and metabolic signaling
【24h】

Selenium nanoparticles for targeted stroke therapy through modulation of inflammatory and metabolic signaling

机译:硒纳米颗粒,可通过调节炎症和代谢信号来靶向中风治疗

获取原文
       

摘要

Ischemic cerebral stroke is a major cause of death and morbidity. Currently, no neuroprotective agents have been shown to impact the clinical outcomes in cerebral stroke cases. Here, we report therapeutic effects of Se nanoparticles on ischemic stroke in a murine model. Anti-transferrin receptor monoclonal antibody (OX26)-PEGylated Se nanoparticles (OX26-PEG-Se NPs) were designed and synthesized and their neuroprotective effects were measured using in vitro and in vivo approaches. We demonstrate that administration of the biodegradable nanoparticles leads to resolution of brain edema, protection of axons in hippocampus region, and myelination of hippocampal area after cerebral ischemic stroke. Our nanoparticle design ensures efficient targeting and minimal side effects. Hematological and biochemical analyses revealed no undesired NP-induced changes. To gain mechanistic insights into the therapeutic effects of these particles, we characterized the changes to the relevant inflammatory and metabolic signaling pathways. We assessed metabolic regulator mTOR and related signaling pathways such as hippo, Ubiquitin-proteasome system (ERK5), Tsc1/Tsc2 complex, FoxO1, wnt/β-catenine signaling pathway. Moreover, we examined the activity of jak2/stat3 signaling pathways and Adamts1, which are critically involved in inflammation. Together, our study provides a promising treatment strategy for cerebral stroke based on Se NP induced suppression of excessive inflammation and oxidative metabolism.
机译:缺血性脑中风是死亡和发病的主要原因。目前,尚无神经保护剂可影响脑卒中患者的临床结局。在这里,我们报告了硒纳米颗粒对鼠模型缺血性中风的治疗作用。设计并合成了抗运铁蛋白受体单克隆抗体(OX26)-PEG化的Se纳米颗粒(OX26-PEG-Se NPs),并使用体内和体外方法测量了它们的神经保护作用。我们证明了可生物降解的纳米粒子的管理导致脑水肿的解决,海马区轴突的保护和脑缺血性中风后海马区的髓鞘形成。我们的纳米颗粒设计确保有效的靶向性和最小的副作用。血液学和生化分析未发现不良的NP诱导变化。为了获得对这些颗粒的治疗作用的机械见解,我们表征了相关炎症和代谢信号通路的变化。我们评估了代谢调节因子mTOR和相关的信号通路,例如河马,泛素-蛋白酶体系统(ERK5),Tsc1 / Tsc2复合体,FoxO1,wnt /β-catenine信号通路。此外,我们检查了jak2 / stat3信号通路和Adamts1的活动,这些活动与炎症至关重要。总之,我们的研究基于Se NP诱导的过度炎症和氧化代谢的抑制提供了一种有前途的脑卒中治疗策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号