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首页> 外文期刊>Biomaterials >Nose-to-brain delivery of enveloped RNA - cell permeating peptide nanocomplexes for the treatment of neurodegenerative diseases
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Nose-to-brain delivery of enveloped RNA - cell permeating peptide nanocomplexes for the treatment of neurodegenerative diseases

机译:包膜RNA细胞渗透肽纳米复合物的鼻向脑递送,用于治疗神经变性疾病

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摘要

Direct nose-to-brain (N-to-B) delivery enables the rapid transport of drugs to the brain, while minimizing systemic exposure. The objective of this work was to engineer a nanocarrier intended to enhance N-to-B delivery of RNA and to explore its potential utility for the treatment of neurological disorders. Our approach involved the formation of electrostatically driven nanocomplexes between a hydrophobic derivative of octaarginine (r8), chemically conjugated with lauric acid (C12), and the RNA of interest. Subsequently, these cationic nanocomplexes were enveloped (enveloped nanocomplexes, ENCPs) with different protective polymers, i.e. polyethyleneglycol - polyglutamic acid (PEG-PGA) or hyaluronic acid (HA), intended to enhance their stability and mucodiffusion across the olfactory nasal mucosa. These rationally designed ENCPs were produced in bulk format and also using a microfluidics-based technique. This technique enabled the production of a scalable nano-formulation, exhibiting; (i) a unimodal size distribution with a tunable mean size, (ii) the capacity to highly associate (100%) and protect RNA from degradation, (iii) the ability to preserve its physicochemical properties in biorelevant media and prevent the premature RNA release. Moreover, in vitro cell culture studies showed the capacity of ENCPs to interact and be efficiently taken-up by CHO cells. Finally, in vivo experiments in a mouse model of Alzheimer's disease provided evidence of a statistically significant increase of a potentially therapeutic miRNA mimic in the hippocampus area and its further effect on two mRNA targets, following its intranasal administration. Overall, these findings stress the value of the rational design of nanocarriers towards overcoming the biological barriers associated to N-to-B RNA delivery and reveal their potential value as therapeutic strategies in Alzheimer's disease.
机译:直接鼻向大脑(N-TO-B)递送使得能够快速将药物运输到大脑,同时最大限度地减少系统性暴露。这项工作的目的是工程师旨在增强N-TO-B递送RNA的纳米载体,并探讨其潜在效用用于治疗神经系统疾病。我们的方法涉及在八颌骨(R8)的疏水衍生物之间形成静电驱动的纳米复合,与月桂酸(C12)和感兴趣的RNA化学缀合。随后,将这些阳离子纳米型用用不同的保护聚合物包裹(包膜纳米复合物,Encps),即聚乙二醇 - 聚谷氨酸(PEG-PGA)或透明质酸(HA),用于在嗅觉鼻粘膜上增强它们的稳定性和粘液裂解。这些合理设计的ENCP是以批量格式生产的,也使用基于Microfluidics的技术生产。该技术使得能够产生可扩展的纳米配方,表现出; (i)具有可调谐平均大小的单峰尺寸分布,(ii)高助剂(100%)的能力,保护RNA免于降解,(iii)在生物密切介质中保持其物理化学性质的能力并防止过早的RNA释放能力。此外,体外细胞培养研究表明Encps的能力与CHO细胞有效占用。最后,在阿尔茨海默病的小鼠模型中的体内实验提供了在其鼻内给药之后,在海马面积中模仿潜在治疗miRNA的潜在治疗miRNA的统计上显着增加的证据。总体而言,这些发现应力纳入纳米载波的合理设计的价值克服与N-βRNA递送相关的生物屏障,并揭示其潜在价值作为阿尔茨海默病的治疗策略。

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