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Hydrophilic Hyperbranched Polymer-Coated siRNA/Polyamidoamine Dendron-Bearing Lipid Complexes Preparation for High Colloidal Stability and Efficient RNAi

机译:亲水性超支化聚合物涂覆的siRNA /聚酰胺胺含有脂质复合物的高胶体稳定性和高效RNAi

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摘要

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 in vitro . 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 in vivo siRNA delivery.
机译:使用siRNA的RNA干扰(RNAi)已经有很多关注癌症和遗传疾病的疗法。为了建立基于RNAI的治疗方法,需要高效的siRNA纳米载体的发展。早些时候,我们开发了能够与核酸形成复合物作为基因载体的复合物的聚酰胺胺树状脂质。特别是,具有不饱和烷基链(DL-G1-U2)的树状脂质通过膜融合诱导有效的内体逸出,导致体外有效转染。对于该研究,设计具有油基/亚诺酰基(DL-G1-U3)的树状脂质以进一步增加膜富丝活性。实际上,DL-G1-U3 / siRNA复合物比常规DL-G1-U2 / siRNA复合物更有效地实现了更高的膜沉念活性和靶基因的敲低。在DL-G1-U3 / siRNA配合物的表面上进一步修饰亲水聚合物,超支化聚缩水醇月桂基酯(HPG-LAU),以提供胶体稳定性。 HPG-LAU的表面改性在没有HPG-LAU的情况下的生理状况的胶体稳定性增加。重要的是,HPG-LAU涂覆的DL / siRNA复合物对亲本DL / siRNA复合物的效果显示出相同的RNAi效应,而HPAI的聚(乙二醇)脂质(PEG-PE) - 制定的DL / siRNA复合物的RNAi活性受到阻碍完全地。将不饱和键入DENDRON脂质和用于纳米载体改性的合适亲水聚合物的选择对于将有效的siRNA载体朝向获得高效的siRNA递送是重要的。

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  • 来源
    《Bioconjugate Chemistry》 |2021年第3期|共9页
  • 作者单位

    Department of Applied Chemistry Graduate School of Engineering Osaka Prefecture University;

    Department of Applied Chemistry Graduate School of Engineering Osaka Prefecture University;

    Department of Applied Chemistry Graduate School of Engineering Osaka Prefecture University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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