Kontturi Leena-Stiina, van den Dikkenberg Joep, Urtti Arto, Hennink Wim E, Mastrobattista Enrico
Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences (UIPS), Utrecht University, 3584 CG Utrecht, The Netherlands.
Drug Research Program, Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, 00790 Helsinki, Finland.
Pharmaceutics. 2019 Feb 21;11(2):90. doi: 10.3390/pharmaceutics11020090.
The major challenge in the therapeutic applicability of oligonucleotide-based drugs is the development of efficient and safe delivery systems. The carriers should be non-toxic and stable in vivo, but interact with the target cells and release the loaded oligonucleotides intracellularly. We approached this challenge by developing a light-triggered liposomal delivery system for oligonucleotides based on a non-cationic and thermosensitive liposome with indocyanine green (ICG) as photosensitizer. The liposomes had efficient release properties, as 90% of the encapsulated oligonucleotides were released after 1-minute light exposure. Cell studies using an enhanced green fluorescent protein (EGFP)-based splicing assay with HeLa cells showed light-activated transfection with up to 70%⁻80% efficacy. Moreover, free ICG and oligonucleotides in solution transfected cells upon light induction with similar efficacy as the liposomal system. The light-triggered delivery induced moderate cytotoxicity (25%⁻35% reduction in cell viability) 1⁻2 days after transfection, but the cell growth returned to control levels in 4 days. In conclusion, the ICG-based light-triggered delivery is a promising method for oligonucleotides, and it can be used as a platform for further optimization and development.
基于寡核苷酸的药物在治疗应用中的主要挑战是开发高效且安全的递送系统。载体应在体内无毒且稳定,但要与靶细胞相互作用并在细胞内释放负载的寡核苷酸。我们通过开发一种基于非阳离子热敏脂质体并以吲哚菁绿(ICG)作为光敏剂的光触发脂质体递送系统来应对这一挑战。这些脂质体具有高效的释放特性,因为在光照1分钟后,90%的包封寡核苷酸被释放出来。使用基于增强型绿色荧光蛋白(EGFP)的剪接检测法对HeLa细胞进行的细胞研究表明,光激活转染的效率高达70%至80%。此外,溶液中的游离ICG和寡核苷酸在光诱导下转染细胞的效率与脂质体系统相似。光触发递送在转染后1至2天诱导了中度细胞毒性(细胞活力降低25%至35%),但细胞生长在4天后恢复到对照水平。总之,基于ICG的光触发递送是一种有前途的寡核苷酸递送方法,可作为进一步优化和开发的平台。