Department of Pharmaceutical Sciences, College of Pharmacy, Nursing, and Allied Sciences, North Dakota State University , Fargo, North Dakota 58105, United States.
Biomacromolecules. 2013 Nov 11;14(11):4071-81. doi: 10.1021/bm401204n. Epub 2013 Oct 15.
The major goal of this study is to design, synthesize, and evaluate linoleic acid and penetratin dual-functionalized chitosan (CS-Lin-Pen) as a nonviral gene carrier. The amphiphilic CS-Lin-Pen self-assembles to form cationic micelles in an aqueous environment. These polymeric micelles exhibited excellent hemocompatibility and cell viability, as evaluated by in vitro hemolysis and MTT assay, respectively. When CS-Lin-Pen micelles were added to plasmid DNA (pDNA) solution, the electrostatic interaction between the cationic micelles and anionic pDNA led to the formation of stable CS-Lin-Pen/pDNA polyplexes with ~100 nm in size. The resultant polyplexes demonstrated ~5-fold higher cellular uptake as compared to unmodified chitosan. Furthermore, CS-Lin-Pen micelles showed efficient protection of pDNA from DNase I attack and exhibited ~34-40-fold higher transfection in comparison with unmodified chitosan in HEK 293, CHO, and HeLa cells. These findings illustrate that the CS-Lin-Pen micelles could be exploited as a potential nonviral vector for efficient gene therapy.
本研究的主要目标是设计、合成并评估亚油酸和穿透肽双重功能化壳聚糖(CS-Lin-Pen)作为非病毒基因载体。两亲性 CS-Lin-Pen 在水相环境中自组装形成阳离子胶束。通过体外溶血和 MTT 测定分别评估其血液相容性和细胞活力,这些聚合物胶束表现出优异的血液相容性和细胞活力。当 CS-Lin-Pen 胶束加入质粒 DNA(pDNA)溶液中时,阳离子胶束与带负电荷的 pDNA 之间的静电相互作用导致形成稳定的 CS-Lin-Pen/pDNA 复合聚合物,其粒径约为 100nm。与未修饰的壳聚糖相比,所得的复合聚合物的细胞摄取率提高了约 5 倍。此外,CS-Lin-Pen 胶束对 pDNA 具有高效的保护作用,与未经修饰的壳聚糖相比,在 HEK293、CHO 和 HeLa 细胞中显示出约 34-40 倍的更高转染效率。这些发现表明 CS-Lin-Pen 胶束可用作高效基因治疗的潜在非病毒载体。