Key Laboratory of Analytical Chemistry for Life Science (Ministry of Education of China), Department of Chemistry, Nanjing University, Nanjing 210093, PR China.
Biomaterials. 2011 May;32(15):3875-82. doi: 10.1016/j.biomaterials.2011.02.001. Epub 2011 Feb 26.
A simple nanocarrier of polyethylenimine-grafted graphene nanoribbon (PEI-g-GNR) was proposed as an effective gene vector. The GNR was formed by longitudinally unzipping multiwalled carbon nanotubes (MWCNTs), and treated with strong acids and sonication to obtain surface carboxylic acid groups for graft of PEI via electrostatic assembly. The PEI-g-GNR appeared to protect locked nucleic acid modified molecular beacon (LNA-m-MB) probes from nuclease digestion or single-strand binding protein interaction, thus could be used as a nanocarrier of the probes for more efficient transfection of cells than PEI or PEI-g-MWCNTs due to the large surface area of the GNR and high charge density of PEI. The cytotoxicity and apoptosis induced by the PEI-g-GNR were negligible under optimal transfection conditions. Combining with the remarkable affinity and specificity of LNA to microRNA (miRNA), a delivery system by the LNA-m-MB/PEI-g-GNR was proposed for effectively transferring LNA-m-MB into the cells to recognize the target miRNA. Using HeLa cells as model, a method for detection of miRNA in single cell was developed. These results suggested that PEI-g-GNR would be a promising nonviral vector for in situ detection of gene in cytoplasm and gene therapy in clinical application.
提出了一种简单的聚乙二亚胺接枝石墨烯纳米带(PEI-g-GNR)纳米载体作为有效的基因载体。GNR 是通过纵向解缠多壁碳纳米管(MWCNTs)形成的,并经过强酸处理和超声处理,获得表面羧酸基团,通过静电组装接枝 PEI。PEI-g-GNR 似乎可以保护锁核酸修饰的分子信标(LNA-m-MB)探针免受核酸酶消化或单链结合蛋白的相互作用,因此可以用作探针的纳米载体,由于 GNR 的大表面积和 PEI 的高电荷密度,比 PEI 或 PEI-g-MWCNTs 更有效地转染细胞。在最佳转染条件下,PEI-g-GNR 的细胞毒性和细胞凋亡可忽略不计。结合 LNA 对 microRNA(miRNA)的显著亲和力和特异性,提出了一种 LNA-m-MB/PEI-g-GNR 递药系统,用于有效地将 LNA-m-MB 转染到细胞中以识别靶 miRNA。以 HeLa 细胞为模型,开发了一种用于单细胞中 miRNA 检测的方法。这些结果表明,PEI-g-GNR 将是一种有前途的非病毒载体,可用于细胞质中基因的原位检测和临床应用中的基因治疗。