Jeong Eun-Ju, Lee Jangwook, Kim Hyun-Seung, Lee Kuen-Yong
Department of Bioengineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul 04763, Korea.
Supernova Bio, 67 Seobinggo-ro, Yongsan-gu, Seoul 04385, Korea.
Polymers (Basel). 2021 Dec 1;13(23):4219. doi: 10.3390/polym13234219.
Chitosan and its derivatives have been extensively utilized in gene delivery applications because of their low toxicity and positively charged characteristics. However, their low solubility under physiological conditions often limits their application. Glycol chitosan (GC) is a derivative of chitosan that exhibits excellent solubility in physiological buffer solutions. However, it lacks the positive characteristics of a gene carrier. Thus, we hypothesized that the introduction of oligoarginine peptide to GC could improve the formation of complexes with siRNA, resulting in enhanced uptake by cells and increased transfection efficiency in vitro. A peptide with nine arginine residues and 10 glycine units (RG) was successfully conjugated to GC, which was confirmed by infrared spectroscopy, H NMR spectroscopy, and elemental analysis. The physicochemical characteristics of RG-GC/siRNA complexes were also investigated. The size and surface charge of the RG-GC/siRNA nanoparticles depended on the amount of RG coupled to the GC. In addition, the RG-GC/siRNA nanoparticles showed improved uptake in HeLa cells and enhanced in vitro transfection efficiency while maintaining low cytotoxicity determined by the MTT assay. Oligoarginine-modified glycol chitosan may be useful as a potential gene carrier in many therapeutic applications.
壳聚糖及其衍生物因其低毒性和带正电荷的特性,已被广泛应用于基因递送领域。然而,它们在生理条件下的低溶解度常常限制了其应用。乙二醇壳聚糖(GC)是壳聚糖的一种衍生物,在生理缓冲溶液中具有优异的溶解性。然而,它缺乏基因载体的正电荷特性。因此,我们推测将寡聚精氨酸肽引入GC可以改善与siRNA形成复合物的能力,从而增强细胞摄取并提高体外转染效率。一种含有九个精氨酸残基和十个甘氨酸单元的肽(RG)成功地与GC偶联,通过红外光谱、核磁共振氢谱和元素分析得到证实。还研究了RG-GC/siRNA复合物的物理化学特性。RG-GC/siRNA纳米颗粒的大小和表面电荷取决于与GC偶联的RG的量。此外,RG-GC/siRNA纳米颗粒在HeLa细胞中显示出更好的摄取能力和增强的体外转染效率,同时通过MTT法测定保持低细胞毒性。寡聚精氨酸修饰的乙二醇壳聚糖在许多治疗应用中可能作为一种潜在的基因载体。