Department of Systems Medicine, University of Rome Tor Vergata , Via Montpellier 1, 00133, Rome, Italy.
Department of Biology, Interuniversity Consortium, National Institute Biostructure and Biosystem (INBB), University of Rome Tor Vergata , Via della Ricerca Scientifica 1, 00133, Rome, Italy.
ACS Nano. 2016 Jun 28;10(6):5971-9. doi: 10.1021/acsnano.6b01402. Epub 2016 May 26.
DNA offers excellent programming properties for the generation of nanometer-scaled polyhedral structures with a broad variety of potential applications. Translation to biomedical applications requires improving stability in biological fluids, efficient and selective cell binding, and/or internalization of the assembled DNA nanostructures. Here, we report an investigation on the selective mechanism of cellular uptake of pristine DNA nanocages in cells expressing the receptor "oxidized low-density lipoprotein receptor-1" (LOX-1), a scavenger receptor associated with cardiovascular diseases and, more recently, identified as a tumor marker. For this purpose a truncated octahedral DNA nanocage functionalized with a single biotin molecule, which allows DNA cage detection through the biotin-streptavidin assays, was constructed. The results indicate that DNA nanocages are stable in biological fluids, including human serum, and are selectively bound and very efficiently internalized in vesicles only in LOX-1-expressing cells. The amount of internalized cages is 30 times higher in LOX-1-expressing cells than in normal fibroblasts, indicating that the receptor-mediated uptake of pristine DNA nanocages can be pursued for a selective cellular internalization. These results open the route for a therapeutic use of pristine DNA cages targeting LOX-1-overexpressing tumor cells.
DNA 为生成具有广泛潜在应用的纳米级多面体结构提供了极佳的编程属性。将其转化为生物医学应用需要提高在生物流体中的稳定性、高效且选择性地结合细胞,以及/或者实现组装的 DNA 纳米结构的内化。在这里,我们报告了对表达受体“氧化型低密度脂蛋白受体-1”(LOX-1)的细胞中原始 DNA 纳米笼的细胞摄取的选择性机制的研究,LOX-1 是一种与心血管疾病相关的清道夫受体,最近被确定为肿瘤标志物。为此,构建了一个功能化有单个生物素分子的截短八面体 DNA 纳米笼,通过生物素-链霉亲和素测定可以检测到 DNA 笼。结果表明,DNA 纳米笼在包括人血清在内的生物流体中稳定,并且仅在表达 LOX-1 的细胞中以囊泡的形式被选择性结合并非常有效地内化。在表达 LOX-1 的细胞中内化的笼子数量比正常成纤维细胞高 30 倍,这表明可以通过受体介导的摄取来实现原始 DNA 纳米笼的选择性细胞内化。这些结果为针对 LOX-1 过表达肿瘤细胞的原始 DNA 笼的治疗用途开辟了道路。