He Jiayu, Hu Peng, Wang Mingjie, Qi Guowei, Huang Haoxiang, Zeng Dong, Guan Jintao, Lv Peiwen, Liu Liang
School of Life Science and Technology, Wuhan Polytechnic University, Wuhan 430023, China.
School of Chemical and Environmental Engineering, Wuhan Polytechnic University, Wuhan 430023, China.
Colloids Surf B Biointerfaces. 2025 Jan;245:114221. doi: 10.1016/j.colsurfb.2024.114221. Epub 2024 Sep 10.
Chitosan is widely employed in gene carriers due to its excellent gene loading capacity, ease of modification, and exceptional biodegradability. However, low gene delivery efficiency, high cytotoxicity, and lack of tracer biomimetic properties limit its clinical use. To address these issues, a novel biomimetic tracking gene delivery carrier, RBCm-C50kQT, was constructed by using the design scheme of cell membrane coated carbon quantum dots/chitosan. This carrier improves stability and tracking performance while embedding the cell membrane enhances biosafety. RBCm-C50kQT effectively carries and protects DNA, improving uptake and transfection efficiency with reduced cytotoxicity. It maintains strong fluorescence tracking and shows high uptake efficiencies of 83.62 % and 77.45 % in 293 T and HeLa cells, respectively, with maximum transfection efficiencies of 68.80 % and 45.47 %. This advancement supports gene therapy improvements and paves the way for future clinical applications.
壳聚糖因其出色的基因负载能力、易于修饰以及卓越的生物降解性而被广泛应用于基因载体。然而,低基因递送效率、高细胞毒性以及缺乏示踪仿生特性限制了其临床应用。为了解决这些问题,通过细胞膜包覆碳量子点/壳聚糖的设计方案构建了一种新型的仿生追踪基因递送载体RBCm-C50kQT。该载体在提高稳定性和追踪性能的同时,嵌入细胞膜增强了生物安全性。RBCm-C50kQT能有效携带和保护DNA,提高摄取和转染效率并降低细胞毒性。它保持强烈的荧光追踪能力,在293T和HeLa细胞中的摄取效率分别高达83.62%和77.45%,最大转染效率分别为68.80%和45.47%。这一进展有助于改进基因治疗,并为未来的临床应用铺平道路。