Della Pelle Giulia, Bozic Tim, Vukomanović Marija, Sersa Gregor, Markelc Bostjan, Kostevšek Nina
Department for Nanostructured Materials, Jožef Stefan Institute 1000 Ljubljana Slovenia
Jožef Stefan International Postgraduate School 1000 Ljubljana Slovenia.
Nanoscale Adv. 2024 Jul 19;6(18):4704-4723. doi: 10.1039/d4na00363b. eCollection 2024 Sep 10.
Small-interfering RNAs (siRNAs) are therapeutic nucleic acids, often delivered cationic polymers, liposomes, or extracellular vesicles, each method with its limitations. Genipin, a natural crosslinker for primary amines, was explored for siRNA delivery scaffolds. Spermine/genipin-based GS5 polymers were synthesized, showing slightly positive potential at neutral pH and intrinsic fluorescence. We then tuned their polymerization adding glycine to the reaction batch, from 1 to 10 molar ratio with genipin, therefore conferring them a "zwitterionic" character. GS5 efficiently internalized into B16F10 murine melanoma cells, and exhibited strong siRNA-complexing ability and they were able to elicit up to 60% of gene knock-down without any toxicity. This highlights GS5's potential as a safe, replicable, and tunable platform for therapeutic nucleic acid delivery, suggesting broader applications. This innovative approach not only sheds light on the intricate genipin reaction mechanism but also underscores the importance of fine-tuning nanoparticle properties for effective siRNA delivery. GS5's success in mitigating cytotoxicity while maintaining delivery efficacy signifies a promising step towards safer and more efficient nucleic acid therapeutics.
小干扰RNA(siRNA)是治疗性核酸,通常通过阳离子聚合物、脂质体或细胞外囊泡递送,每种方法都有其局限性。京尼平是一种用于伯胺的天然交联剂,被用于探索siRNA递送支架。合成了基于精胺/京尼平的GS5聚合物,其在中性pH下显示出轻微的正电位和固有荧光。然后,我们通过在反应批次中添加甘氨酸来调节其聚合反应,甘氨酸与京尼平的摩尔比从1到10,从而赋予它们“两性离子”特性。GS5能够有效地内化到B16F10小鼠黑色素瘤细胞中,并表现出很强的siRNA复合能力,并且它们能够引发高达60%的基因敲低,且没有任何毒性。这突出了GS5作为治疗性核酸递送的安全、可复制和可调节平台的潜力,表明其具有更广泛的应用前景。这种创新方法不仅揭示了复杂的京尼平反应机制,还强调了微调纳米颗粒特性以实现有效siRNA递送 的重要性。GS5在减轻细胞毒性的同时保持递送效果方面的成功,标志着朝着更安全、更有效的核酸治疗迈出了有希望的一步。