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通过硫内酯开环一锅法平行合成脂质库并进行基因传递筛选。

One-Pot Parallel Synthesis of Lipid Library via Thiolactone Ring Opening and Screening for Gene Delivery.

机构信息

Institute of Toxicology and Genetics , Karlsruhe Institute of Technology , Hermann-von-Helmholtz-Platz 1 , 76344 Eggenstein-Leopoldshafen , Baden Württemberg , Germany.

出版信息

Bioconjug Chem. 2018 Apr 18;29(4):992-999. doi: 10.1021/acs.bioconjchem.8b00007. Epub 2018 Mar 20.

Abstract

Efficient delivery of nucleic acids into cells is of great interest in the field of cell biology and gene therapy. Despite a lot of research, transfection efficiency and structural diversity of gene-delivery vectors are still limited. A better understanding of the structure-function relationship of gene delivery vectors is also essential for the design of novel and intelligent delivery vectors, efficient in "difficult-to-transfect" cells and in vivo clinical applications. Most of the existing strategies for the synthesis of gene-delivery vectors require multiple steps and lengthy procedures. Here, we demonstrate a facile, three-component one-pot synthesis of a combinatorial library of 288 structurally diverse lipid-like molecules termed "lipidoids" via a thiolactone ring opening reaction. This strategy introduces the possibility to synthesize lipidoids with hydrophobic tails containing both unsaturated bonds and reducible disulfide groups. The whole synthesis and purification are convenient, extremely fast, and can be accomplished within a few hours. Screening of the produced lipidoids using HEK293T cells without addition of helper lipids resulted in identification of highly stable liposomes demonstrating ∼95% transfection efficiency with low toxicity.

摘要

将核酸有效地递送到细胞中在细胞生物学和基因治疗领域具有重要意义。尽管已经进行了大量的研究,但转染效率和基因传递载体的结构多样性仍然有限。更好地了解基因传递载体的结构-功能关系对于设计新型智能传递载体也至关重要,这些载体在“难转染”的细胞和体内临床应用中具有高效性。大多数现有的基因传递载体的合成策略需要多个步骤和冗长的程序。在这里,我们通过硫内酯开环反应展示了一种简便的、三组分一锅法合成 288 种结构多样的类脂分子的组合文库,称为“脂质体”。这种策略引入了合成具有不饱和键和可还原二硫键的疏水尾巴的脂质体的可能性。整个合成和纯化过程方便、快速,可在数小时内完成。在没有添加辅助脂质的情况下,用 HEK293T 细胞对所产生的脂质体进行筛选,结果鉴定出高度稳定的脂质体,其转染效率约为 95%,毒性低。

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