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设计的环糊精工具在基因递送中的应用前景

Interest of designed cyclodextrin-tools in gene delivery.

作者信息

Duval R-E, Clarot I, Dumarcay-Charbonnier F, Fontanay S, Marsura A

机构信息

Laboratoire structure et réactivité des systèmes moléculaires, complexes UMR CNRS 7565, université de Lorraine, BP 70239, 54506 Vandœuvre-les-Nancy cedex, France.

出版信息

Ann Pharm Fr. 2012 Nov;70(6):360-9. doi: 10.1016/j.pharma.2012.09.005. Epub 2012 Oct 24.

Abstract

Cyclodextrins (CyDs) currently displays even today the image of a natural macrocyclic compound largely dominant in the formation of inclusion complexes with small hydrophobic molecules. During the past 10years, advances in this field allowed to achieve more and more sophisticated CyDs derivatives opening a simple access in scale-up quantities to original and better CyD-based gene delivery systems. In addition, possibility to combine covalent and supramolecular approaches offers new venues for the design of tailor-made CyD-based nanovehicles to improve their transfection ability and gene transfer in cells. In this account, we describe our recent progress in the construction of a novel CyD-based G0 (generation number) core dendrimer, scalable to CyD oligomers by a strategy using protonable guanidine tethers and whose concept can be generalized for the assembly of CyD pre-coated dendrimers. The synthetic strategy based on an original Staudinger-Aza-Wittig tandem coupling reaction. We present an outline of the different analytical strategies to characterize CyD-ODN (cyclodextrin-oligodeoxynucleotide) complexes. Among them, Capillary electrophoresis (CE) was used to perfectly characterize our CyD-siRNA and CyD-DNA complexes and shown to be a very attractive method with advantages of low sample consumption, rapid analysis speed, and high efficiency that make this technology a major tool for association constant measurement. Finally, we present the different biological methods that can be used, in vitro, to study gene delivery, and more precisely ones we have performed to evaluate the capability of our original model bis-guanidinium-tetrakis-β-cyclodextrin dendrimeric tetrapod, to deliver efficiently DNA or siRNA in eukaryotic cells.

摘要

环糊精(CyDs)即便在如今,依然展现出一种天然大环化合物的形象,在与小的疏水分子形成包合物方面占据主导地位。在过去十年中,该领域的进展使得越来越复杂的环糊精衍生物得以实现,为大规模获取基于环糊精的原始且更好的基因递送系统提供了便捷途径。此外,将共价和超分子方法相结合的可能性为设计定制的基于环糊精的纳米载体开辟了新途径,以提高其在细胞中的转染能力和基因转移效率。在本报告中,我们描述了我们在构建一种新型基于环糊精的G0(代数)核心树枝状大分子方面的最新进展,该树枝状大分子可通过使用可质子化胍连接体的策略扩展为环糊精低聚物,其概念可推广用于环糊精预包覆树枝状大分子的组装。合成策略基于一种原始的施陶丁格 - 氮杂 - 维蒂希串联偶联反应。我们概述了表征环糊精 - 寡脱氧核苷酸(CyD - ODN)复合物的不同分析策略。其中,毛细管电泳(CE)被用于完美地表征我们的环糊精 - siRNA和环糊精 - DNA复合物,并显示出是一种极具吸引力的方法,具有样品消耗低、分析速度快和效率高的优点,使该技术成为测定缔合常数的主要工具。最后,我们介绍了可在体外用于研究基因递送的不同生物学方法,更确切地说是我们为评估我们原始的双胍基 - 四 - β - 环糊精树枝状四足体模型在真核细胞中有效递送DNA或siRNA的能力而进行的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/014b/7094360/4922f6a1647d/gr1.jpg

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