Department of Polymer Science & Engineering, School of Chemistry & Chemical Engineering , Nanjing University , Nanjing 210023 , P. R. China.
College of Life Science and Chemistry, Jiangsu Key Laboratory of Biological Functional Molecules , Jiangsu Second Normal University , Nanjing 210013 , P. R. China.
ACS Appl Mater Interfaces. 2019 May 1;11(17):15222-15232. doi: 10.1021/acsami.8b22505. Epub 2019 Apr 17.
A gene delivery system using spiropyran as a photoswitchable photosensitizer for the controlled photochemical internalization effect was developed by engineering the outer coating of a polyethylenimine/DNA complex with a small amount of spiropyran-containing cationic copolymers. The successful binding of cationic polymers by the polyethylenimine coating was detected by the distance-sensitive fluorescence resonance energy-transfer technique that evidenced the occurrence of energy transfer between fluorescein-labeled cationic copolymers and polyethylenimine-condensed rhodamine-labeled DNA. The ternary polyplexes feature reversible controllability of singlet oxygen generation based on the dual effect of spiropyrans in photochromism and aggregation-induced enhanced photosensitization, allowing significant light-induced amplification of bPEI-mediated in vitro transgene efficiency (from original 15% to final 91%) at a low DNA dose, with the integrity of supercoiled DNA structure unaffected. The use of spiropyran without the need of other photosensitizers circumvents the issue of uncontrolled long-lasting photocytotoxicity in gene delivery.
采用螺吡喃作为光致开关型光敏剂的基因传递系统,通过工程化修饰聚乙烯亚胺/DNA 复合物的外层包覆少量含有螺吡喃的阳离子共聚物,实现了对光化学内吞效应的控制。距离敏感的荧光共振能量转移技术检测到阳离子聚合物与聚乙烯亚胺的成功结合,证明了荧光素标记的阳离子共聚物与聚乙烯亚胺缩合的罗丹明标记 DNA 之间发生了能量转移。三元聚电解质复合物具有基于螺吡喃光致变色和聚集诱导增强光敏化的双重效应的单线态氧生成的可逆可控性,允许在低 DNA 剂量下显着提高 bPEI 介导的体外转基因效率(从原始的 15%提高到最终的 91%),超螺旋 DNA 结构的完整性不受影响。使用螺吡喃而无需使用其他光敏剂,可以避免基因传递中不可控的长期光细胞毒性问题。