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用于药代动力学调节的脂肪酸修饰的缺口嵌合体反义寡核苷酸和血清白蛋白构建体

Fatty Acid-Modified Gapmer Antisense Oligonucleotide and Serum Albumin Constructs for Pharmacokinetic Modulation.

作者信息

Hvam Michael Lykke, Cai Yunpeng, Dagnæs-Hansen Frederik, Nielsen Jesper Sejrup, Wengel Jesper, Kjems Jørgen, Howard Kenneth A

机构信息

The Interdisciplinary Nanoscience Center (iNANO), Department of Molecular Biology and Genetics, Aarhus University, 8000 Aarhus C, Denmark.

Department of Biomedicine, Aarhus University, 8000 Aarhus C, Denmark.

出版信息

Mol Ther. 2017 Jul 5;25(7):1710-1717. doi: 10.1016/j.ymthe.2017.05.009. Epub 2017 Jun 20.

Abstract

Delivery technologies are required for realizing the clinical potential of molecular medicines. This work presents an alternative technology to preformulated delivery systems by harnessing the natural transport properties of serum albumin using endogenous binding of gapmer antisense oligonucleotides (ASOs)/albumin constructs. We show by an electrophoretic mobility assay that fatty acid-modified gapmer and human serum albumin (HSA) can self-assemble into constructs that offer favorable pharmacokinetics. The interaction was dependent on fatty acid type (either palmitic or myristic acid), number, and position within the gapmer ASO sequence, as well as phosphorothioate (PS) backbone modifications. Binding correlated with increased blood circulation in mice (t increased from 23 to 49 min for phosphodiester [PO] gapmer ASOs and from 28 to 66 min for PS gapmer ASOs with 2× palmitic acid modification). Furthermore, a shift toward a broader biodistribution was detected for PS compared with PO gapmer ASOs. Inclusion of 2× palmitoyl to the ASOs shifted the biodistribution to resemble that of natural albumin. This work, therefore, presents a novel strategy based on the proposed endogenous assembly of gapmer ASOs/albumin constructs for increased circulatory half-life and modulation of the biodistribution of gapmer ASOs that offers tunable pharmacokinetics based on the gapmer modification design.

摘要

实现分子药物的临床潜力需要递送技术。这项工作通过利用血清白蛋白的天然转运特性,利用缺口mer反义寡核苷酸(ASOs)/白蛋白构建体的内源性结合,提出了一种替代预配制递送系统的技术。我们通过电泳迁移率测定表明,脂肪酸修饰的缺口mer和人血清白蛋白(HSA)可以自组装成具有良好药代动力学的构建体。这种相互作用取决于脂肪酸类型(棕榈酸或肉豆蔻酸)、数量以及在缺口mer ASO序列中的位置,以及硫代磷酸酯(PS)主链修饰。结合与小鼠血液循环增加相关(磷酸二酯[PO]缺口mer ASOs的t从23分钟增加到49分钟,2×棕榈酸修饰的PS缺口mer ASOs的t从28分钟增加到66分钟)。此外,与PO缺口mer ASOs相比,检测到PS的生物分布向更广泛的方向转变。在ASOs中加入2×棕榈酰基会使生物分布发生变化,类似于天然白蛋白。因此,这项工作提出了一种基于缺口mer ASOs/白蛋白构建体的内源性组装的新策略,用于延长循环半衰期和调节缺口mer ASOs的生物分布,该策略基于缺口mer修饰设计提供了可调节的药代动力学。

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