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用于反义寡核苷酸递送以增强细胞摄取的β-(1→3)-D-葡聚糖裂褶菌多糖的半乳糖-聚乙二醇双重偶联物

Galactose-PEG dual conjugation of beta-(1-->3)-D-glucan schizophyllan for antisense oligonucleotides delivery to enhance the cellular uptake.

作者信息

Karinaga Ryouji, Anada Takahisa, Minari Jusaku, Mizu Masami, Koumoto Kazuya, Fukuda Junji, Nakazawa Kohji, Hasegawa Teruaki, Numata Munenori, Shinkai Seiji, Sakurai Kazuo

机构信息

Department of Chemical Process and Environments, The University of Kitakyushu, 1-1, Hibikino, Wakamatu-ku, Kitakyushu, Fukuoka 808-0135, Japan.

出版信息

Biomaterials. 2006 Mar;27(8):1626-35. doi: 10.1016/j.biomaterials.2005.08.023. Epub 2005 Sep 19.

Abstract

Antisense oligonucleotides (AS ODNs) are applied to silence a particular gene, and this approach is one of the potential gene therapies. However, naked oligonucleotides are easy to be degraded or absorbed in biological condition. Therefore, we need a carrier to deliver AS ODNs. This paper presents galactose moieties that were conjugated to the side chain of SPG to enhance cellular ingestion through endocytosis mediated by asialoglycoprotein receptor specifically located on parenchymal liver cells. We introduced galactose with two types of chemical bonds; amide and amine, and the amine connection showed lower ingestion and more toxicity than the amide one. Since PEG was known to induce endocytosis escape, we combined PEG and galactose aiming to provide both cellular up-take and subsequent endocytosis escape. We designed lactose or galactose moieties to attach to the end of the PEG chain that connects to the SPG side chain. When the PEG had the molecular weight of 5000-6000, the antisense effect reached the maximum. We believe that this new type of galactose and PEG dual conjugation broaden the horizon in antisense delivery.

摘要

反义寡核苷酸(AS ODNs)被用于使特定基因沉默,这种方法是潜在的基因治疗手段之一。然而,裸寡核苷酸在生物学条件下容易被降解或吸收。因此,我们需要一种载体来递送AS ODNs。本文介绍了与SPG侧链共轭的半乳糖部分,以通过特异性位于肝实质细胞上的去唾液酸糖蛋白受体介导的内吞作用增强细胞摄取。我们引入了具有两种化学键的半乳糖;酰胺键和胺键,并且胺键连接显示出比酰胺键连接更低的摄取率和更高的毒性。由于已知聚乙二醇(PEG)会诱导内吞逃逸,我们将PEG和半乳糖结合起来,旨在实现细胞摄取和随后的内吞逃逸。我们设计乳糖或半乳糖部分连接到连接SPG侧链的PEG链末端。当PEG的分子量为5000 - 6000时,反义效果达到最大值。我们相信这种新型的半乳糖和PEG双重共轭拓宽了反义递送的视野。

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