College of Pharmacy, Shaanxi University of Chinese Medicine, Xianyang 712046, People's Republic of China.
Department of Pharmaceutics, School of Pharmacy, Fourth Military Medical University, and Key Laboratory of Pharmacology of the State Administration of Traditional Chinese Medicine, Xi'an 710032, People's Republic of China.
Nanotechnology. 2024 Jul 25;35(41). doi: 10.1088/1361-6528/ad6326.
The rise of gene therapy has solved many diseases that cannot be effectively treated by conventional methods. Gene vectors is very important to protect and deliver the therapeutic genes to the target site. Polyethyleneimine (PEI) modified with mannitol could enhance the gene transfection efficiency reported by our group previously. In order to further control and improve the effective gene release to action site, disulfide bonds were introduced into mannitol-modified PEI to construct new non-viral gene vectors PeiSM. The degrees of mannitol linking with disulfide bonds were screened. Among them, moderate mannitol-modified PEI with disulfide bonds showed the best transfection efficiency, and significantly enhanced long-term systemic transgene expression for 72 heven at a single dose administration, and could promote caveolae-mediated uptake through up-regulating the phosphorylation of caveolin-1 and increase the loaded gene release from the nanocomplexes in high glutathione intracellular environment. This functionalized gene delivery system can be used as an potential and safe non-viral nanovector for further gene therapy.
基因治疗的兴起解决了许多传统方法无法有效治疗的疾病。基因载体对于保护和将治疗基因递送到靶位非常重要。我们小组之前报道的甘露糖醇修饰的聚乙烯亚胺(PEI)可以提高基因转染效率。为了进一步控制和改善有效基因释放到作用部位,将二硫键引入到甘露糖醇修饰的 PEI 中,构建新的非病毒基因载体 PeiSM。筛选了甘露糖醇与二硫键连接的程度。其中,具有适度二硫键的甘露糖醇修饰的 PEI 显示出最佳的转染效率,并且在单次给药时可显著增强长达 72 小时的长期系统转基因表达,并且可以通过上调 caveolin-1 的磷酸化来促进 caveolae 介导的摄取,并增加在高谷胱甘肽细胞内环境下从纳米复合物中释放的负载基因。这种功能化基因传递系统可用作进一步基因治疗的有潜力且安全的非病毒纳米载体。