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Covalent attachment of oligodeoxyribonucleotides to amine-modified Si (001) surfaces

机译:寡脱氧核糖核苷酸与胺修饰的Si(001)表面的共价结合

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摘要

A recently described reaction for the UV-mediated attachment of alkenes to silicon surfaces is utilized as the basis for the preparation of functionalized silicon surfaces. UV light mediates the reaction of t-butyloxycarbonyl (t-BOC) protected ω-unsaturated aminoalkane (10-aminodec-1-ene) with hydrogen-terminated silicon (001). Removal of the t-BOC protecting group yields an aminodecane-modified silicon surface. The resultant amino groups can be coupled to thiol-modified oligodeoxyribonucleotides using a heterobifunctional crosslinker, permitting the preparation of DNA arrays. Two methods for controlling the surface density of oligodeoxyribonucleotides were explored: in the first, binary mixtures of 10-aminodec-1-ene and dodecene were utilized in the initial UV-mediated coupling reaction; a linear relationship was found between the mole fraction of aminodecene and the density of DNA hybridization sites. In the second, only a portion of the t-BOC protecting groups was removed from the surface by limiting the time allowed for the deprotection reaction. The oligodeoxyribonucleotide-modified surfaces were extremely stable and performed well in DNA hybridization assays. These surfaces provide an alternative to gold or glass for surface immobilization of oligonucleotides in DNA arrays as well as a route for the coupling of nucleic acid biomolecular recognition elements to semiconductor materials.
机译:最近描述的用于UV介导的烯烃与硅表面的附着的反应被用作制备官能化的硅表面的基础。紫外线介导叔丁氧羰基(t-BOC)保护的ω-不饱和氨基烷烃(10-aminodec-1-ene)与氢封端的硅(001)的反应。去除t-BOC保护基产生氨基癸烷改性的硅表面。可以使用异双功能交联剂将所得的氨基与巯基修饰的寡脱氧核糖核苷酸偶联,从而可以制备DNA阵列。探索了两种控制寡聚脱氧核糖核苷酸表面密度的方法:首先,在初始的紫外线介导的偶联反应中使用10-氨基癸-1-烯和十二碳烯的二元混合物。在氨基癸烯的摩尔分数和DNA杂交位点的密度之间发现线性关系。在第二步中,通过限制脱保护反应的时间,仅从表面除去一部分t-BOC保护基。寡脱氧核糖核苷酸修饰的表面非常稳定,并且在DNA杂交测定中表现良好。这些表面提供了金或玻璃的替代品,用于将寡核苷酸表面固定在DNA阵列中,以及将核酸生物分子识别元件与半导体材料偶联的途径。

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