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NANORELIEF COATINGS WITH INCREASED SURFACE AREA OF FUNCTIONAL GROUPS FOR DNA IMMOBILIZATION

机译:带有功能性基团表面积增加的纳米涂层,用于DNA固定化

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The coatings described in this work are based on film-forming organic polymers with grafted oligosiloxane chains. The composition was synthesized by acid-catalyzed hydrolysis and condensation of alkoxysilanes in the presence of polymers bearing active groups, capable of reaction with alkoxysilanes or products of their hydrolysis: hydroxy, acetal, epoxy, vinyl ether. Microphase layering between 3D silica nanoparticles and polymeric chains results in nanorelief "hilly" surface of the film. Oligosiloxane particles obtained from alkoxysilanes are chemicaly active which allows to introduce various functional groups during synthesis of the coatings. The resulting surfaces show high density of the desired groups: up to 900 nm~(-2) in the case of amino-groups and up to 300 nm~(-2) for epoxy, carboxy and hydrazide moieties.rnCovalent immobilization of oligonucleotide to these coatings opens way to new systems of genetic analysis and purification of nucleic acids. Surface density of immobilized oligonucleotide active in hybridization was up to 10 pmol/mm~2. We also hope new coatings and freestanding films could be useful in design of immune and chemical sensors.
机译:在这项工作中描述的涂料是基于具有接枝低聚硅氧烷链的成膜有机聚合物。该组合物是在具有活性基团的聚合物存在下,通过酸催化水解和缩合烷氧基硅烷而合成的,该聚合物具有能够与烷氧基硅烷或其水解产物反应的羟基,缩醛,环氧,乙烯基醚。 3D二氧化硅纳米粒子与聚合物链之间的微相分层导致薄膜的纳米浮雕“多毛”表面。由烷氧基硅烷获得的低聚硅氧烷颗粒具有化学活性,这允许在涂层的合成过程中引入各种官能团。所得表面显示出所需基团的高密度:对于氨基而言,最高达900 nm〜(-2),对于环氧,羧基和酰肼基团而言高达300 nm〜(-2)。这些涂层为新的遗传学分析和核酸纯化系统开辟了道路。固定的可在杂交中起作用的寡核苷酸的表面密度高达10 pmol / mm〜2。我们还希望新的涂层和独立膜可以用于免疫和化学传感器的设计。

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