Institute of Polymer Science and Engineering, National Taiwan University, Taipei, Taiwan.
Biomaterials. 2011 Jul;32(19):4471-80. doi: 10.1016/j.biomaterials.2011.02.060. Epub 2011 Mar 26.
We previously reported the preparation and characterization of ternary nanoparticles with the negative surface charge, which comprises histidine-conjugated polyallylamine (PAA-HIS)/DNA core complex and a single-stranded oligonucleotide outer layer, to transfect various cell lines. As a continued effort, here the investigations on the endocytotic mechanisms involved in the uptake of the oligonucleotide-coated PAA-HIS/DNA complexes are reported. Interestingly, these complexes showed enhanced transfection efficiency only when deoxyadenosine-containing oligonucleotides were deposited on the PAA-HIS/DNA complex surface. The addition of uncomplexed oligonucleotide, free adenosine and adenosine receptor antagonist significantly inhibited the transfection efficiency of oligonucleotide-coated PAA-HIS/DNA complexes. These results indicated that the oligonucleotide-coated PAA-HIS/DNA complexes could specifically recognize adenosine receptors on the cell surface and were taken up by adenosine receptor-mediated process. Uptake and transfection experiments with various endocytic inhibitors suggested that, after receptor/ligand binding, oligonucleotide-coated PAA-HIS/DNA/complexes were mainly internalized via caveolae-mediated pathway to result in effective intracellular processing for gene expression. In conclusion, both adenosine receptor and caveolae-mediated endocytosis play important roles in oligonucleotide-mediated gene transfer.
我们之前报道了具有负表面电荷的三元纳米粒子的制备和表征,该纳米粒子由组氨酸缀合的聚烯丙胺(PAA-HIS)/DNA 核复合物和单链寡核苷酸外层组成,用于转染各种细胞系。作为持续的努力,这里报道了对涉及寡核苷酸包覆的 PAA-HIS/DNA 复合物摄取的内吞机制的研究。有趣的是,只有当脱氧腺苷寡核苷酸沉积在 PAA-HIS/DNA 复合物表面时,这些复合物才显示出增强的转染效率。未复合的寡核苷酸、游离的腺苷和腺苷受体拮抗剂的添加显著抑制了寡核苷酸包覆的 PAA-HIS/DNA 复合物的转染效率。这些结果表明,寡核苷酸包覆的 PAA-HIS/DNA 复合物可以特异性识别细胞表面上的腺苷受体,并通过腺苷受体介导的过程被摄取。用各种内吞抑制剂进行的摄取和转染实验表明,在受体/配体结合后,寡核苷酸包覆的 PAA-HIS/DNA 复合物主要通过小窝蛋白介导的途径被内化,从而导致有效的细胞内基因表达处理。总之,腺苷受体和小窝蛋白介导的内吞作用在寡核苷酸介导的基因转移中都起着重要作用。