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A peptide-based small interfering RNA delivery system as an RNA interference approach for neurodegenerative disorders.

机译:基于肽的小干扰RNA递送系统,作为神经退行性疾病的RNA干扰方法。

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摘要

Neurodegenerative disorders (NDDs) have become a major global health burden. Despite persistent advances in understanding the neurodegeneration process, pathogenesis has not been fully clarified and no cures are yet available. As a therapeutic approach for NDDs, RNA interference (RNAi) can be a potent mode of treatment because it can specifically downregulate target genes that are directly or indirectly associated with the onset and progression of neurodegeneration. For example, Keap1, a negative regulator of the antioxidant responsive element (ARE) can be targeted for gene downregulation in order to enhance the endogenous antioxidant capacity and protect brain cells against extensive oxidative stress, a pathological hallmark observed in many NDDs. However, small interfering RNAs (siRNAs) bear limiting factors, including instability in the bloodstream and limited capacity to cross the blood-brain barrier (BBB) mainly due to their bulky size and negatively charged backbone. Thus, there is need for an adequate carrier that can protectively load and deliver bioactive siRNAs to brain cells. In this dissertation we detail the evaluation of a peptide-based siRNA carrier for neurotargeted siRNA delivery and the assessment of Keap1 RNAi therapeutic potential in brain cells. First, we have designed a myristoylated cell-penetrating peptide equipped with a transferrin receptor targeting sequence (myr-TP-Tf) and examined its physicochemical properties and biological functions. The myr-TP-Tf was shown to stably encapsulate siRNAs and deliver them to brain cells, leading to functional silencing of the target gene. Myr-TP-Tf also transported the siRNAs across a brain endothelial cell monolayer in a transwell system. Second, we have assessed the therapeutic potential of Keap1 RNAi against beta amyloid peptide-induced oxidative stress in a human glioma cell culture. It was found that the Keap1 siRNA-peptide complex-pretreated group had better tolerance to the cytotoxicity from the beta amyloid; and displayed lower levels of oxidative stress and autophagic activity compared to the control groups, demonstrating the neuroprotective effect of Keap1 RNAi. Third, we examined the brain-targeting and functional target gene silencing abilities of the siRNA-peptide carrier complex in vivo. Although the direct local injection exerted a greater performance, the systemic administration also delivered a measurable amount of siRNA to the brain, which led to a significant knockdown of the target gene. In summary, results demonstrate that this peptide-based siRNA carrier system can be a promising strategy for neurotargeted siRNA delivery both in vitro and in vivo..
机译:神经退行性疾病(NDD)已成为全球主要的健康负担。尽管在理解神经变性过程方面取得了持续的进步,但发病机理尚未完全阐明,并且尚无治愈方法。作为NDD的一种治疗方法,RNA干扰(RNAi)可能是一种有效的治疗方式,因为它可以特异性下调与神经变性的发生和发展直接或间接相关的靶基因。例如,Keap1是抗氧化剂响应元件(ARE)的负调节剂,可以针对基因下调,以增强内源性抗氧化剂能力并保护脑细胞免受广泛的氧化应激,这是在许多NDD中观察到的病理学特征。但是,小的干扰RNA(siRNA)具有局限性因素,包括血液中的不稳定以及穿过血脑屏障(BBB)的能力有限,这主要是由于它们的体积大且骨架带负电荷。因此,需要一种能够保护性装载生物活性siRNA并将其递送至脑细胞的适当载体。在本文中,我们详细介绍了基于肽的siRNA载体对神经靶向siRNA传递的评估以及Keap1 RNAi在脑细胞中的治疗潜力。首先,我们设计了一种具有转铁蛋白受体靶向序列(myr-TP-Tf)的肉豆蔻酰化细胞穿透肽,并研究了其理化性质和生物学功能。证明了myr-TP-Tf可稳定地包裹siRNA并将其递送至脑细胞,从而导致靶基因的功能沉默。 Myr-TP-Tf还在跨孔系统中跨大脑内皮细胞单层转运siRNA。第二,我们评估了Keap1 RNAi在人类神经胶质瘤细胞培养物中对抗β淀粉样肽诱导的氧化应激的治疗潜力。发现Keap1 siRNA-肽复合物预处理组对β淀粉样蛋白具有更好的耐受性。与对照组相比,其氧化应激和自噬活性较低,证明了Keap1 RNAi的神经保护作用。第三,我们研究了体内siRNA-肽载体复合物的脑靶向和功能靶基因沉默能力。尽管直接局部注射发挥了更大的作用,但全身给药还向大脑递送了可测量量的siRNA,这导致靶基因的显着敲低。总而言之,结果表明,这种基于肽的siRNA载体系统可以成为有希望的体外和体内神经靶向siRNA递送策略。

著录项

  • 作者

    Youn, Pilju.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Pharmaceutical sciences.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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