Laboratoire de physicochimie, Pharmacotechnie et biopharmacie, UMR CNRS 8612, Université Paris Sud 11 , Faculté de pharmacie, 5 rue J. B. Clément, 92296 Châtenay-Malabry, France.
Bioconjug Chem. 2012 Jun 20;23(6):1091-104. doi: 10.1021/bc200422w. Epub 2012 Mar 15.
Oligonucleotides, including antisense oligonucleotides and siRNA, are promising therapeutic agents against a variety of diseases. Effective delivery of these molecules is critical in view of their clinical application. Therefore, cation-based nanoplexes have been developed to improve the stability as well as the intracellular penetration of these short fragments of nucleic acids. However, this approach is clearly limited by the strong interaction with proteins after administration and by the inherent toxicity of these positively charged transfection materials. Neutral lipid-oligonucleotide conjugates have become a subject of considerable interest to improve the safe delivery of oligonucleotides. These molecules have been chemically conjugated to hydrophobic moieties such as cholesterol, squalene, or fatty acids to enhance their pharmacokinetic behavior and trans-membrane delivery. The present review gives an account of the main synthetic methods available to conjugate lipids to oligonucleotides and will discuss the pharmacological efficacy of this approach.
寡核苷酸,包括反义寡核苷酸和 siRNA,是针对多种疾病的有前途的治疗剂。鉴于它们的临床应用,这些分子的有效递送至关重要。因此,已经开发了基于阳离子的纳米复合物,以提高这些短片段核酸的稳定性和细胞内穿透性。然而,这种方法显然受到给药后与蛋白质的强烈相互作用以及这些带正电荷转染材料固有的毒性的限制。中性脂质-寡核苷酸缀合物已成为改善寡核苷酸安全递送的研究热点。这些分子已被化学缀合到疏水性部分,如胆固醇、角鲨烯或脂肪酸,以增强它们的药代动力学行为和跨膜递送。本综述介绍了将脂质与寡核苷酸缀合的主要合成方法,并将讨论这种方法的药理学功效。