Laboratory of Polymer Materials, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, China.
Biomaterials. 2011 May;32(13):3507-19. doi: 10.1016/j.biomaterials.2011.01.055. Epub 2011 Feb 16.
Stimuli-responsive biomaterials derived from natural products toward efficient drug/gene delivery have been attracting increasing attention in the past decade. In this work, we first designed and prepared a new series of cholesterol-disulfide lipids, namely CHOSS-N, CHOSS-N+, CHOSS-Lys and CHOSS-4N bearing cholesterol and a variety of headgroups via disulfide and carbonate bond linkages, and their molecular structures were characterized by NMR and ESI-MS. Furthermore, plasmid DNA binding affinity for these new CHOSS lipids was separately examined by ethidium bromide displacement and agarose-gel retardant assay. Average diameter sizes and surface potentials of the CHOSS/pDNA lipoplex particles prepared under various N/P charge ratios were analyzed by dynamic laser light scattering (DLS). Under 10 mm dithiothreitol (DTT), stability and disassembly of the CHOSS/pDNA lipoplex nanoparticles were investigated by agarose-gel retardant assay and atomic force microscopy (AFM). Employing a COS-7 cell line, cell viability was examined for the prepared CHOSS lipids and their pDNA lipoplexes with branched PEI-25k as the reference. Finally, COS-7 cell gene transfection efficacies with these CHOSS lipids as potential delivery vectors were investigated by luciferase and EGFP transfection assay in the absence and presence of serum, and intracellular uptake capability, trafficking and cellular localization of Cy3-labeled pEGFP-N1 DNA were studied with a flow cytometer and fluorescent microscopy with Lipofectamine™ 2000 as the control. The results demonstrated low cytotoxicity, strong pDNA binding affinity and high transgenetic efficacy for new prepared CHOSS lipids, and particularly high intracellular uptake capability and specific cellular localization of pDNA at the periphery of cell nuclei were for the first time interestingly observed for the CHOSS lipid delivery carriers. In general, these may pave a new way to utilize cholesterol, amino acids and other functional natural products to prepare efficient gene/drug delivery carriers with simple structure and low cytotoxicity.
基于天然产物的刺激响应型生物材料在高效药物/基因递送上引起了越来越多的关注。在这项工作中,我们首先设计并制备了一系列新型胆固醇二硫键脂质,即 CHOSS-N、CHOSS-N+、CHOSS-Lys 和 CHOSS-4N,它们通过二硫键和碳酸酯键连接,带有胆固醇和各种头基。这些新的 CHOSS 脂质的分子结构通过 NMR 和 ESI-MS 进行了表征。此外,通过溴化乙锭置换和琼脂糖凝胶阻滞实验分别考察了这些新的 CHOSS 脂质对质粒 DNA 的结合亲和力。通过动态激光光散射(DLS)分析了在不同 N/P 电荷比下制备的 CHOSS/pDNA 脂质体颗粒的平均粒径和表面电位。在 10mM 二硫苏糖醇(DTT)下,通过琼脂糖凝胶阻滞实验和原子力显微镜(AFM)研究了 CHOSS/pDNA 脂质体纳米粒子的稳定性和组装。采用 COS-7 细胞系,以支化 PEI-25k 为参比,考察了所制备的 CHOSS 脂质及其 pDNA 脂质体的细胞活力。最后,在有无血清的情况下,通过荧光素酶和 EGFP 转染实验研究了这些 CHOSS 脂质作为潜在递送载体的 COS-7 细胞基因转染效率,并通过流式细胞仪和荧光显微镜研究了 Cy3 标记的 pEGFP-N1 DNA 的细胞内摄取能力、转运和细胞内定位,以 Lipofectamine™ 2000 作为对照。结果表明,新型 CHOSS 脂质具有低细胞毒性、强 pDNA 结合亲和力和高转染效率,特别是首次观察到 CHOSS 脂质递送载体具有高细胞内摄取能力和特定的细胞内定位在细胞核边缘。总的来说,这为利用胆固醇、氨基酸和其他功能天然产物制备具有简单结构和低细胞毒性的高效基因/药物递送载体开辟了一条新途径。