Technical Chemistry I and Center for Nanointegration Duisburg-Essen (CENIDE), Universitaetsstr. 7, 45141 Essen, Germany.
Analyst. 2017 May 30;142(11):2020-2028. doi: 10.1039/c6an02461k.
Gold nanoparticles (AuNPs) are widely used in biomedical applications for drug targeting and bioimaging. This often neccesitates their functionalization with biomolecules carrying a defined biological function, yielding gold nanoparticle bioconjugates. The utilization of triplex-forming oligonucleotides (TFOs) as ligands gives access to nanoconjugates as tools for specific DNA-related nanotargeting via triplex hybridization. Since triplex hybridization with nanobioconjugates has to date not been shown on biologically relevant samples, sex-specific sperm marking may be an appropriate model system to demonstrate the opportunities of this targeting method in vitro. In this study, we focused on specific labeling of repetitive target sites enriched on the bovine Y-chromosome using triplex forming oligonucleotides. First, the functionality of a specific locked nucleic acid (LNA) sequence was confirmed on bovine free DNA and on demembranated sperm heads. Thereafter, the influence of AuNPs on triplex hybridization was spectrophotometrically analyzed employing synthetic dsDNA, genomic DNA and demembranated sperm heads. Results from the SPR-peak shift indicate that TFO-AuNP hybridize to bovine gDNA in a qualitative and significant manner. These results confirm successful triplex hybridization on biologically relevant target sites as well as the establishment of a method to use gold nanoparticles as a suitable tool for sex-selective hybridization.
金纳米颗粒(AuNPs)广泛应用于药物靶向和生物成像等生物医学领域。为了实现这些应用,通常需要将其功能化,使其与具有特定生物功能的生物分子结合,形成金纳米颗粒生物缀合物。使用三链体形成寡核苷酸(TFOs)作为配体,可以获得纳米缀合物,作为通过三链体杂交进行特定与 DNA 相关的纳米靶向的工具。由于迄今为止尚未在具有生物学相关性的样本上显示出与纳米缀合物的三链体杂交,因此性别特异性精子标记可能是一个合适的模型系统,可以在体外证明这种靶向方法的应用前景。在本研究中,我们专注于使用三链体形成寡核苷酸特异性标记富含于牛 Y 染色体上的重复靶位。首先,在牛游离 DNA 和去膜精子头部上确认了特定锁核酸(LNA)序列的功能。此后,通过使用合成 dsDNA、基因组 DNA 和去膜精子头部的分光光度法分析,研究了 AuNPs 对三链体杂交的影响。SPR 峰位移的结果表明,TFO-AuNP 以定性和显著的方式与牛 gDNA 杂交。这些结果证实了在具有生物学相关性的靶位上成功进行了三链体杂交,并且建立了一种使用金纳米颗粒作为性别选择性杂交的合适工具的方法。