Shiraishi Takehiko, Nielsen Peter E
Department of Cellular and Molecular Medicine, The Panum Institute, Faculty of Health Sciences, University of Copenhagen, Copenhagen, Denmark.
Methods Mol Biol. 2011;751:209-21. doi: 10.1007/978-1-61779-151-2_13.
Unaided cellular uptake of RNA interference agents such as antisense oligonucleotides and siRNA is extremely poor, and in vivo bioavailability is also limited. Thus, effective delivery strategies for such potential drugs are in high demand. Recently, a novel approach using a class of short cationic peptides known as cell-penetrating peptides (CPPs) is attracting wide attention for a variety of biologically active molecules. CPP-mediated delivery is typically based on the covalent conjugation of the (therapeutic) cargo to CPPs, and is particularly relevant for the delivery of noncharged RNA interference agents such as peptide nucleic acids (PNAs) and morpholino oligomers. Although chemical conjugation to a variety of CPPs significantly improves the cellular uptake of PNAs, the bioavailability (and hence antisense activity) of CPP-PNA -conjugates is still highly limited by endocytotic entrapment. We have found, however, that this low -bioavailability can be significantly improved by chemical conjugation to a lipid domain ("Lip," such as a fatty acid), thereby creating "CatLip"-conjugates. The cellular uptake of these conjugates is conveniently evaluated using a sensitive cellular assay system based on a splicing correction of a mutated luciferase gene in HeLa pLuc705 cells by targeting antisense oligonucleotides to a cryptic splice site. Further improvement in the delivery of CatLip-PNA conjugates is achieved by using auxiliary agents/treatments (e.g., chloroquine, calcium ions, or photosensitizers) to induce endosomal disruption.
诸如反义寡核苷酸和小干扰RNA(siRNA)之类的RNA干扰剂的细胞自主摄取能力极差,其体内生物利用度也很有限。因此,对于这类潜在药物,迫切需要有效的递送策略。最近,一种使用一类称为细胞穿透肽(CPP)的短阳离子肽的新方法,正吸引着人们对各种生物活性分子的广泛关注。CPP介导的递送通常基于(治疗性)货物与CPP的共价偶联,并且对于递送诸如肽核酸(PNA)和吗啉代寡聚物等不带电荷的RNA干扰剂特别适用。尽管与多种CPP的化学偶联显著提高了PNA的细胞摄取,但CPP-PNA偶联物的生物利用度(以及反义活性)仍然受到内吞截留的极大限制。然而,我们发现,通过与脂质结构域(“Lip”,如脂肪酸)进行化学偶联,从而产生“CatLip”偶联物,可以显著提高这种低生物利用度。使用基于通过将反义寡核苷酸靶向隐蔽剪接位点来校正HeLa pLuc705细胞中突变荧光素酶基因的剪接的灵敏细胞检测系统,可以方便地评估这些偶联物的细胞摄取情况。通过使用辅助剂/处理方法(例如氯喹、钙离子或光敏剂)诱导内体破坏,可以进一步改善CatLip-PNA偶联物的递送效果。