Key Laboratory of Green Chemistry and Technology (Ministry of Education), College of Chemistry, Sichuan University, Chengdu 610064, People's Republic of China.
Department of Chemistry, University of Virginia, McCormick Road, Charlottesville, Virginia 22904, United States.
ACS Appl Bio Mater. 2021 Jul 19;4(7):5717-5726. doi: 10.1021/acsabm.1c00484. Epub 2021 Jun 25.
Nonviral gene vectors with stimulus responsiveness and self-reporting properties have broad application prospects in gene therapy. Herein, we developed a nanosized reduction-responsive cationic liposomal vector formed from DNS(Zn), in which a naphthalimide-sulfonamide group was used as the glutathione (GSH)-responsive group to generate a blue fluorescence signal at 458 nm. Macrocyclic polyamine (cyclen) was used as a cationic headgroup to facilitate Zn(II) coordination, which may reduce the cytotoxicity and improve transfection efficiency. The Zn-free and nonresponsive analogues were used for comparison. Fluorescent assays revealed that the GSH response of DNS(Zn) could increase the blue fluorescence signal and improve the DNA release in cells. The title material also showed higher positive ζ-potential than its nonresponsive analogue, resulting in stronger DNA binding ability and better cellular uptake. These advantages made DNS(Zn) a good candidate for nonviral gene delivery, and the transfection efficiency in HeLa cells was distinctly higher than that of its analogue and the commercially available transfection reagent. Besides plasmid DNA, DNS(Zn) could also deliver small interfering RNA (siRNA) with good gene silencing efficiency, extending the application of the liposomes. These results suggest that DNS(Zn) can serve as a highly efficient nucleic acid delivery vector with reduction-responsive fluorescence self-reporting ability in tumor cells.
具有刺激响应和自我报告特性的非病毒基因载体在基因治疗中有广泛的应用前景。在此,我们开发了一种由 DNS(Zn) 形成的纳米尺寸还原响应性阳离子脂质体载体,其中萘酰亚胺-磺酰胺基团用作谷胱甘肽 (GSH) 响应基团,在 458nm 处产生蓝色荧光信号。大环多胺(环辛烷)用作阳离子头基以促进 Zn(II) 配位,这可能降低细胞毒性并提高转染效率。使用无锌和无响应的类似物进行比较。荧光测定表明,DNS(Zn) 的 GSH 响应可以增加蓝色荧光信号并改善细胞内的 DNA 释放。该材料还表现出比其无响应类似物更高的正 ζ-电位,从而具有更强的 DNA 结合能力和更好的细胞摄取能力。这些优势使 DNS(Zn) 成为非病毒基因传递的良好候选物,其在 HeLa 细胞中的转染效率明显高于其类似物和市售转染试剂。除了质粒 DNA,DNS(Zn) 还可以递送具有良好基因沉默效率的小干扰 RNA (siRNA),从而扩展了脂质体的应用。这些结果表明,DNS(Zn) 可以作为一种具有还原响应性荧光自我报告能力的高效核酸递送载体,在肿瘤细胞中发挥作用。