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Size-fitting effect for hybridization of DNA/ mercaptohexanol mixed monolayers on gold

机译:DNA /巯基己醇混合单层在金上杂交的大小拟合效应

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In this article we proposed a simple hexagonal model for exploring the hybridization of thiol-modified probe DNA self-assembled monolayers (SAMs) on gold with target DNA molecules in solution. The size-fitting coefficient d_c/d_t from the model was used to discuss the principle for DNA optimal hybridization, where d_c was the channel diameter among three adjacent probe DNA molecules on gold and d_t was the gyration diameter of the target DNA molecules in solution. Experimentally we investigated the hybridization effect (hybridization efficiency H_E and hybridization density H_D) of thiol-modified probe DNA (DNA base amount m = 15, 25 or 35)/mercaptohexanol (MCH) mixed SAMs on gold in 1 M electrolyte solution by chronocoulometry (CC) and electrochemical impedance spectroscopy (EIS). The surface coverage Γ_m of the probe DNA on gold was adjusted by changing the mixed concentration ratio of probe DNA with MCH (CDNA/CMCH) in the assembly solution. Results indicated that with the increase of C_(DNA)/C_(MCH), H_E decreased gradually; H_D first increased and then decreased, which arrived at the biggest at C_(DNA)/C_(MCH) = 1 for all the probe DNA/MCH mixed SAMs (m = 15, 25, 35). The optimal Γ_m for achieving the biggest H_D in DNA hybridization decreased with the increase of m from 15 to 35. The experimental conclusions obtained by CC and EIS measurements verified each other. Combining the simple model with our experimental results, we ascertained that d_c/d_t decreased with the increase of m, which showed a good linear relationship. These conclusions provided an important reference and guidance for controllably constructing DNA sensors with optimal performance.
机译:在本文中,我们提出了一个简单的六边形模型,用于探索溶液中目标DNA分子与金上硫醇修饰的探针DNA自组装单分子层(SAMs)的杂交。使用模型的大小拟合系数d_c / d_t讨论DNA最佳杂交的原理,其中d_c是金上三个相邻探针DNA分子之间的通道直径,d_t是溶液中目标DNA分子的回转直径。我们通过计时法通过实验研究了巯基修饰的探针DNA(DNA碱基量m = 15、25或35)/巯基己醇(MCH)混合SAMs在1 M电解质溶液中金上的杂交效果(杂交效率H_E和杂交密度H_D)( CC)和电化学阻抗谱(EIS)。通过改变组装溶液中探针DNA与MCH的混合浓度比(CDNA / CMCH)来调节探针DNA在金上的表面覆盖率Γ_m。结果表明,随着C_(DNA)/ C_(MCH)的增加,H_E逐渐降低。 H_D首先增加然后减少,对于所有探针DNA / MCH混合SAM(m = 15、25、35),C_(DNA)/ C_(MCH)= 1达到最大值。随着m的增加(从15增加到35),实现DNA杂交中最大H_D的最佳Γ_m减小。通过CC和EIS测量获得的实验结论相互验证。结合简单模型和实验结果,我们确定d_c / d_t随着m的增加而减小,表现出良好的线性关系。这些结论为可控地构建具有最佳性能的DNA传感器提供了重要的参考和指导。

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