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Uptake, efficacy, and systemic distribution of naked, inhaled short interfering RNA (siRNA) and locked nucleic acid (LNA) antisense.

机译:裸露,吸入的短干扰RNA(siRNA)和锁定核酸(LNA)反义物的摄取,功效和全身分布。

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摘要

Antisense oligonucleotides (ASOs) and small interfering RNA (siRNA) promise specific correction of disease-causing gene expression. Therapeutic implementation, however, has been forestalled by poor delivery to the appropriate tissue, cell type, and subcellular compartment. Topical administration is considered to circumvent these issues. The availability of inhalation devices and unmet medical need in lung disease has focused efforts in this tissue. We report the development of a novel cell sorting method for quantitative, cell type-specific analysis of siRNA, and locked nucleic acid (LNA) ASO uptake and efficacy after intratracheal (i.t.) administration in mice. Through fluorescent dye labeling, we compare the utility of this approach to whole animal and whole tissue analysis, and examine the extent of tissue distribution. We detail rapid systemic access and renal clearance for both therapeutic classes and lack of efficacy at the protein level in lung macrophages, epithelia, or other cell types. We nevertheless observe efficient redirection of i.t. administered phosphorothioate (PS) LNA ASO to the liver and kidney leading to targeted gene knockdown. These data suggest delivery remains a key obstacle to topically administered, naked oligonucleotide efficacy in the lung and introduce inhalation as a potentially viable alternative to injection for antisense administration to the liver and kidneys.
机译:反义寡核苷酸(ASO)和小干扰RNA(siRNA)有望特异性纠正引起疾病的基因表达。然而,由于对适当的组织,细胞类型和亚细胞区室的递送不佳,阻止了治疗性实施。人们认为局部用药可以避免这些问题。肺部疾病中吸入装置的可用性和未满足的医疗需求已集中在该组织上。我们报告了一种新型的细胞分选方法的发展,用于定量,特定细胞类型的siRNA分析以及在小鼠气管内(i.t.)给药后锁定核酸(LNA)ASO的摄取和功效。通过荧光染料标记,我们比较了该方法在整个动物和整个组织分析中的效用,并检查了组织分布的程度。我们详细介绍了两种治疗类别的快速全身通路和肾清除率,以及在肺巨噬细胞,上皮细胞或其他细胞类型的蛋白质水平上缺乏功效。不过,我们观察到了i.t.的有效重定向给肝脏和肾脏施用硫代磷酸酯(PS)LNA ASO,导致靶向基因敲低。这些数据表明,递送仍然是局部给药在肺中裸露的寡核苷酸功效的主要障碍,并引入了吸入作为对肝和肾脏进行反义注射的潜在可行替代方法。

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