首页> 外文期刊>Circulation: An Official Journal of the American Heart Association >Extracellular Vesicle-Mediated Delivery of Circular RNA SCMH1 Promotes Functional Recovery in Rodent and Nonhuman Primate Ischemic Stroke Models
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Extracellular Vesicle-Mediated Delivery of Circular RNA SCMH1 Promotes Functional Recovery in Rodent and Nonhuman Primate Ischemic Stroke Models

机译:细胞外囊泡介导的圆形RNA SCMH1的递送促进啮齿动物和非人类灵长类动物缺血性卒中模型中的功能恢复

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摘要

Background: Stroke is a leading cause of adult disability that can severely compromise the quality of life of patients, yet no effective medication currently exists to accelerate rehabilitation. A variety of circular RNA (circRNA) molecules are known to function in ischemic brain injury. Lentivirus-based expression systems have been widely used in basic studies of circRNAs, but safety issues with such delivery systems have limited exploration of the potential therapeutic roles for circRNAs. Methods: Circular RNA SCMH1 (circSCMH1) was screened from the plasma of patients with acute ischemic stroke by using circRNA microarrays. Engineered rabies virus glycoprotein-circSCMH1-extracellular vesicles were generated to selectively deliver circSCMH1 to the brain. Nissl staining was used to examine infarct size. Behavioral tasks were performed to evaluate motor functions in both rodent and nonhuman primate ischemic stroke models. Golgi staining and immunostaining were used to examine neuroplasticity and glial activation. Proteomic assays and RNA-sequencing data combined with transcriptional profiling were used to identify downstream targets of circSCMH1. Results: CircSCMH1 levels were significantly decreased in the plasma of patients with acute ischemic stroke, offering significant power in predicting stroke outcomes. The decreased levels of circSCMH1 were further confirmed in the plasma and peri-infarct cortex of photothrombotic stroke mice. Beyond demonstrating proof-of-concept for an RNA drug delivery technology, we observed that circSCMH1 treatment improved functional recovery after stroke in both mice and monkeys, and we discovered that circSCMH1 enhanced the neuronal plasticity and inhibited glial activation and peripheral immune cell infiltration. CircSCMH1 binds mechanistically to the transcription factor MeCP2 (methyl-CpG binding protein 2), thereby releasing repression of MeCP2 target gene transcription. Conclusions: Rabies virus glycoprotein-circSCMH1-extracellular vesicles afford protection by promoting functional recovery in the rodent and the nonhuman primate ischemic stroke models. Our study presents a potentially widely applicable nucleotide drug delivery technology and demonstrates the basic mechanism of how circRNAs can be therapeutically exploited to improve poststroke outcomes.
机译:背景:中风是成人残疾的主要原因,可以严重损害患者的生活质量,目前没有有效的药物治疗以加速康复。已知各种圆形RNA(CircrNA)分子在缺血性脑损伤中起作用。基于Lentivirus的表达系统已被广泛应用于CircRNA的基础研究,但这种递送系统的安全问题有限地探索Circrnas的潜在治疗作用。方法:通过使用CircRNA微阵列从急性缺血性卒中患者的血浆中筛选圆形RNA SCMH1(CircSCMH1)。生成工程狂犬病病毒糖蛋白-CORMSCMH1-细胞外囊,选择性地将CircSCMH1递送至大脑。 NISSL染色用于检查梗塞大小。进行行为任务以评估啮齿动物和非人类灵长类动物缺血性卒中模型中的电机功能。 Golgi染色和免疫染色用于检查神经塑性和神经胶质激活。结合转录分析的蛋白质组学测定和RNA测序数据用于鉴定CircScmH1的下游靶标。结果:急性缺血性卒中患者的血浆中,CircscMH1水平显着降低,在预测中风结果方面提供显着的力量。在血浆和Peri-Infarct皮层中进一步证实了CircScmH1水平降低。除了展示RNA药物递送技术的概念证据之外,我们观察到CircScmH1治疗在小鼠和猴子中卒中后的功能性恢复,我们发现CircScmH1增强了神经元可塑性并抑制胶质激活和外周免疫细胞浸润。 CircSCMH1机械地与转录因子MECP2(甲基-CPG结合蛋白2)结合,从而释放抑制MECP2靶基因转录。结论:Rabies病毒糖蛋白-CircScmH1-细胞外囊泡通过促进啮齿动物和非人类灵长类动物缺血性卒中模型的功能恢复提供保护。我们的研究呈现了潜在广泛适用的核苷酸药物递送技术,并证明了如何能够治疗循环剥削以改善失败的基本机制。

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  • 作者单位

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Kunming Med Univ Dept Neurosurg Affiliat Hosp 1 Kunming Yunnan Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Inst Neuropsychiat Dept Neurol Affiliated ZhongDa Hosp Nanjing Peoples R China;

    Jiangsu Prov Hosp Emergency Dept Nanjing Peoples R China;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Automat Engn Nanjing Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Automat Engn Nanjing Peoples R China;

    Loma Linda Univ Sch Med Dept Physiol Loma Linda CA 92350 USA;

    Nanjing Med Univ Jiangsu Key Lab Neurodegenerat Dept Pharmacol Nanjing Peoples R China;

    Chinese Acad Sci Kunming Inst Zool Natl Res Facil Phenotyp &

    Genet Anal Model Anim P Kunming;

    Southeast Univ Dept Pharmacol Med Sch Nanjing 210009 Jiangsu Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心脏、血管(循环系)疾病;
  • 关键词

    circular RNA; extracellular vesicles; MeCP2 protein; neuronal plasticity; primate; stroke;

    机译:圆形RNA;细胞外囊;MECP2蛋白质;神经元塑性;灵长类动物;中风;

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