Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 5998531, Japan.
Bioconjug Chem. 2021 Mar 17;32(3):563-571. doi: 10.1021/acs.bioconjchem.1c00035. Epub 2021 Mar 4.
RNA interference (RNAi) using siRNA has gained much attention for use in therapies for cancer and genetic disorders. To establish RNAi-based therapeutics, the development of efficient siRNA nanocarriers is desired. Earlier, we developed polyamidoamine dendron-bearing lipids able to form complexes with nucleic acids as gene vectors. Especially, dendron lipids with unsaturated alkyl chains (DL-G1-U2) induced efficient endosomal escape by membrane fusion, leading to efficient transfection . For this study, dendron lipids having oleyl/linoleyl groups (DL-G1-U3) were designed to increase membrane fusogenic activity further. Indeed, DL-G1-U3/siRNA complexes achieved higher membrane fusogenic activity and knockdown of the target gene more efficiently than conventional DL-G1-U2/siRNA complexes did. A hydrophilic polymer, hyperbranched polyglycidol lauryl ester (HPG-Lau), was modified further on the surface of DL-G1-U3/siRNA complexes to provide colloidal stability. Surface modification of HPG-Lau increased the colloidal stability in a physiological condition more than complexes without HPG-Lau. Importantly, HPG-Lau-coated DL/siRNA complexes showed identical RNAi effects to those of parental DL/siRNA complexes, whereas the RNAi activity of poly(ethylene glycol)-bearing lipid (PEG-PE)-modified DL/siRNA complexes was hindered completely. Introduction of unsaturated bonds into dendron lipids and selection of suitable hydrophilic polymers for nanocarrier modification are important for obtaining efficient siRNA vectors toward siRNA delivery.
RNA 干扰 (RNAi) 使用 siRNA 已引起人们对癌症和遗传疾病治疗的关注。为了建立基于 RNAi 的治疗方法,希望开发有效的 siRNA 纳米载体。早些时候,我们开发了带有聚酰胺胺树枝状大分子的脂质,能够与核酸形成复合物作为基因载体。特别是,具有不饱和烷基链的树枝状大分子脂质(DL-G1-U2)通过膜融合诱导有效的内体逃逸,从而导致有效的转染[1]。在这项研究中,设计了具有油酰基/亚油酰基的树枝状大分子脂质(DL-G1-U3)以进一步提高膜融合活性。事实上,与传统的 DL-G1-U2/siRNA 复合物相比,DL-G1-U3/siRNA 复合物具有更高的膜融合活性和更有效地敲低靶基因[2]。亲水性聚合物,超支化聚缩水甘油月桂酸酯(HPG-Lau)进一步修饰在 DL-G1-U3/siRNA 复合物的表面上,以提供胶体稳定性。HPG-Lau 的表面修饰在生理条件下比没有 HPG-Lau 的复合物提供更高的胶体稳定性。重要的是,HPG-Lau 涂层的 DL/siRNA 复合物表现出与亲本 DL/siRNA 复合物相同的 RNAi 效应,而具有聚乙二醇(PEG)的脂质(PEG-PE)修饰的 DL/siRNA 复合物的 RNAi 活性完全受到阻碍[3]。将不饱和键引入树枝状大分子脂质中,并选择合适的亲水性聚合物用于纳米载体修饰,对于获得有效的 siRNA 载体以实现 siRNA 递释非常重要[4]。
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