School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.
School of Pharmacy and Biomolecular Sciences, Royal College of Surgeons Ireland, 111 St Stephen's Green, Dublin 2, Ireland.
J Control Release. 2021 Feb 10;330:1288-1299. doi: 10.1016/j.jconrel.2020.11.037. Epub 2020 Nov 21.
The design of a non-viral gene delivery system that can release a functional nucleic acid at the intracellular destination site is an exciting but also challenging proposition. The ideal gene delivery vector must be non-toxic, non-immunogenic, overcome extra- and intra-cellular barriers, protect the nucleic acid cargo from degradation with stability over a range of temperatures. A new 15 amino acid linear peptide termed CHAT was designed in this study with the goal of delivering DNA with high efficiency into cells in vitro and tissues in vivo. Rational design involved incorporation of key amino acids including arginine for nucleic acid complexation and cellular uptake, tryptophan to enhance hydrophobic interaction with cell membranes, histidine to facilitate endosomal escape and cysteine for stability and controlled cargo release. Six linear peptides were synthesised with strategic sequences and amino acid substitutions. Data demonstrated that all six peptides complexed pDNA to produce cationic nanoparticles less than 200 nm in diameter, but not all peptides resulted in successful transfection; indicating the influence of peptide design for endosomal escape. Peptide 4, now termed CHAT, was non-cytotoxic, traversed the plasma membrane of breast and prostate cancer cell lines, and elicited reporter-gene expression following intra-tumoural and intravenous delivery in vivo. CHAT presents an exciting new peptide for the delivery of nucleic acid therapeutics.
设计一种能够在细胞内靶位释放功能性核酸的非病毒基因传递系统是一项令人兴奋但也极具挑战性的任务。理想的基因传递载体必须是非毒性、非免疫原性的,能够克服细胞内外的障碍,保护核酸货物免受降解,在一系列温度下保持稳定性。本研究设计了一种新的 15 个氨基酸线性肽 CHAT,旨在高效地将 DNA 递送到体外细胞和体内组织中。合理的设计包括包含精氨酸用于核酸复合和细胞摄取的关键氨基酸、色氨酸增强与细胞膜的疏水相互作用、组氨酸促进内涵体逃逸以及半胱氨酸用于稳定性和受控货物释放。本研究合成了六个具有战略序列和氨基酸取代的线性肽。数据表明,所有六种肽都能将 pDNA 复合成直径小于 200nm 的阳离子纳米颗粒,但并非所有肽都能成功转染;这表明肽设计对内涵体逃逸的影响。肽 4,现在称为 CHAT,无细胞毒性,能够穿透乳腺癌和前列腺癌细胞系的质膜,并在体内肿瘤内和静脉内给药后引发报告基因表达。CHAT 为核酸治疗药物的传递提供了一种令人兴奋的新型肽。