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Thymidine-functionalized silica nanotubes for selective recognition and separation of oligoadenosines

机译:胸苷官能化的二氧化硅纳米管用于选择性识别和分离寡腺苷

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摘要

Thymidine receptor residues were covalently attached to the inner side wall of silica nanotubes (SNTs). The adsorption capacities of the thymidine-functionalized silica nanotubes (T-SNTs) with nucleic acids and oligonucleic acids were evaluated. The T-SNTs exhibited excellent selectivity both in recognition and separation of adenosine and adenosine-based oligonucleotides, because adenosine and oligoadenosine were selectively bound to the inner surface of T-SNTs by formation of complementary intermolecular hydrogen bonds. On the other hand, guanosine, cytosine and oligoguanosine derivatives were not bound to the T-SNTs. The T-SNTs selectively separated 95% of oligoadenosine from a mixture of equal amounts of oligocytosine and oligoguanosine. Our results imply that the T-SNTs can be used as a selective receptor and separator for the extraction and separation of adenosine and oligoadenosine derivatives in aqueous solution.
机译:胸苷受体残基共价附于二氧化硅纳米管(SNT)的内侧壁。评估了胸苷官能化的二氧化硅纳米管(T-SNTs)在核酸和寡核酸上的吸附能力。由于腺苷和寡腺苷通过形成互补的分子间氢键选择性地结合到T-SNTs的内表面,因此T-SNTs在识别和分离腺苷和基于腺苷的寡核苷酸上均表现出优异的选择性。另一方面,鸟苷,胞嘧啶和寡鸟苷衍生物不与T-SNT结合。 T-SNT从等量的寡胞嘧啶和寡鸟苷的混合物中选择性分离出95%的寡腺苷。我们的结果表明,T-SNTs可用作选择性受体和分离剂,用于水溶液中腺苷和寡腺苷衍生物的提取和分离。

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