Epanchintseva Anna V, Gorbunova Ekaterina A, Ryabchikova Elena I, Pyshnaya Inna A, Pyshnyi Dmitrii V
Institute of Chemical Biology and Fundamental Medicine, SB RAS, Lavrentiev ave. 8, 630090 Novosibirsk, Russia.
Nanomaterials (Basel). 2021 Apr 29;11(5):1178. doi: 10.3390/nano11051178.
Fluorophore (FD) labeling is widely used for detection and quantification of various compounds bound to nanocarriers. The systems, composed of gold nanoparticles (GNPs) and oligonucleotides (ONs) labeled with FDs, have wide applications. Our work was aimed at a systemic study of how FD structure (in composition of ON-FDs) influenced the efficiency of their non-covalent associates' formation with GNPs (ON-FD/GNPs). We examined ONs of different length and nucleotide composition, and corresponding ON-FDs (FDs from a series of xanthene, polymethine dyes; dyes based on polycyclic aromatic hydrocarbons). Methods: fluorometry, dynamic light scattering, high performance liquid chromatography, gel electrophoresis, molecular modeling and methods of thermodynamic and statistical analysis. We observed significant, differing several times, changes in surface density and Langmuir constant values of ON-FDs vs. ONs, evidence for the critical significance of FD nature for binding of ON-FDs with GNPs. Surface density of ON-FD/GNPs; hydrophobicity and total charge of ON or ON-FD; and charge and surface area of FDs were revealed as key factors determining affinity (Langmuir constant) of ON or ON-FDs for GNPs. These factors compose a specific set, which makes possible the highly reliable prediction of efficiency of ONs and ON-FDs binding with GNPs. The principal possibility of creating an algorithm for predictive calculation of efficiency of ONs and GNPs interaction was demonstrated. We proposed a hypothetical model that described the mechanism of contact interaction between negatively charged nano-objects, such as citrate-stabilized GNPs, and ONs or ON-FDs.
荧光团(FD)标记广泛用于检测和定量与纳米载体结合的各种化合物。由金纳米颗粒(GNP)和用FD标记的寡核苷酸(ON)组成的系统具有广泛的应用。我们的工作旨在系统研究FD结构(在ON-FD组成中)如何影响其与GNP(ON-FD/GNP)形成非共价缔合物的效率。我们研究了不同长度和核苷酸组成的ON,以及相应的ON-FD(来自一系列呫吨、聚甲炔染料的FD;基于多环芳烃的染料)。方法:荧光测定法、动态光散射、高效液相色谱、凝胶电泳、分子建模以及热力学和统计分析方法。我们观察到ON-FD与ON相比,表面密度和朗缪尔常数的值有显著变化,相差数倍,这证明了FD性质对于ON-FD与GNP结合的关键意义。ON-FD/GNP的表面密度;ON或ON-FD的疏水性和总电荷;以及FD的电荷和表面积被揭示为决定ON或ON-FD与GNP亲和力(朗缪尔常数)的关键因素。这些因素构成了一个特定的集合,使得能够高度可靠地预测ON和ON-FD与GNP结合的效率。证明了创建一种用于预测计算ON与GNP相互作用效率的算法的主要可能性。我们提出了一个假设模型,该模型描述了带负电荷的纳米物体(如柠檬酸盐稳定的GNP)与ON或ON-FD之间的接触相互作用机制。