Division of Molecular Pharmaceutics, UNC Eshelman School of Pharmacy, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Expert Opin Drug Deliv. 2011 Apr;8(4):435-49. doi: 10.1517/17425247.2011.561313. Epub 2011 Mar 8.
There is great potential for antisense and siRNA oligonucleotides to become mainstream therapeutic entities thanks to their high specificity and wide therapeutic target space compared with small molecules. Despite this potential, the pharmacological targets within the cells are less accessible to oligonucleotides that are hydrophilic and often charged. Oligonucleotides access their intracellular targets mainly by means of endocytosis, but only a fraction of them reach their targets, as delivery requires functional synergy of cellular uptake and intracellular trafficking.
This review provides an update on the progress of receptor-targeted delivery of oligonucleotides over the last 15 years and summarizes various targeting moieties for oligonucleotide delivery and coupling strategies. To inspire new strategies that can lead to oligonucleotides in the clinic, this review highlights how oligonucleotides successfully reach their intracellular targets by means of receptor-mediated endocytosis.
Understanding the mechanisms of oligonucleotide internalization has led to greater cellular uptake and superior endosomal release through the rational design of receptor-targeted delivery systems. Further improvements will again depend on a better understanding of the intracellular trafficking of oligonucleotides.
与小分子相比,反义寡核苷酸和 siRNA 寡核苷酸具有很高的特异性和广泛的治疗靶标空间,因此有很大的潜力成为主流治疗实体。尽管有这种潜力,但对于亲水性和通常带电荷的寡核苷酸来说,细胞内的药理学靶标较难接触。寡核苷酸主要通过内吞作用来接近其细胞内靶标,但只有一部分能够到达靶标,因为递送需要细胞摄取和细胞内转运的功能协同作用。
本篇综述介绍了过去 15 年来,受体靶向寡核苷酸递送方面的进展,并总结了各种用于寡核苷酸递送的靶向部分和偶联策略。为了激发能使寡核苷酸进入临床的新策略,本综述强调了通过受体介导的内吞作用,寡核苷酸如何成功地到达其细胞内靶标。
了解寡核苷酸内化的机制,通过合理设计受体靶向递送系统,提高了细胞摄取率,并改善了核内体释放。进一步的改进将再次取决于对寡核苷酸细胞内转运的更好理解。