[基于刷状聚合物细胞的铝支架生物微芯片的研制]。

I Yu Shishkin, G F Shtylev, V E Barsky, S A Lapa, O A Zasedateleva, V E Kuznetsova, V E Shershov, V A Vasiliskov, S A Polyakov, A S Zasedatelev, A V Chudinov
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引用次数: 0

摘要

已经开发了一种方法,用于在铝衬底上制造生物微芯片,用刷状共聚物的亲水细胞和光蚀刻形成细胞基质。以前,铝基板表面涂有一层薄的、耐用的、适度疏水的交联聚合物层,以防止与核酸分析中使用的组件的铝表面接触。铝基生物芯片具有高导热性和低热容量的特点,这对于在芯片上进行多重PCR分析的方法的发展具有重要意义。将寡核苷酸探针共价固定在生物芯片细胞中。在与人类ABO基因第7外显子序列的合成DNA靶点的杂交分析中,证明了固定化DNA探针的杂交活性的保存。所开发的方法可用于开发用于检测人体躯体疾病和传染病的“芯片实验室”核酸并行多重快速微量分析技术。
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[Development of Biological Microchips on an Aluminum Support with Cells Made of Brush Polymers].

A method has been developed for manufacturing biological microchips on an aluminum substrate with hydrophilic cells from brush copolymers with the formation of a matrix of cells using photolithography. The surface of aluminum substrates was previously coated with a thin, durable, moderately hydrophobic layer of cross-linked polymer to prevent contact with the aluminum surface of the components used in the analysis of nucleic acids. Aluminum biochip substrates have high thermal conductivity and low heat capacity, which is important for the development of methods for multiplex PCR analysis on a chip. Oligonucleotide probes were covalently immobilized in the cells of the biochip. The preservation of the hybridization activity of the immobilized DNA probes was demonstrated in a hybridization analysis with a synthetic DNA target representing a section of the sequence of the seventh exon of the human ABO gene. The methods developed can be used in the development of a technology for parallel multiple rapid microanalysis of nucleic acids "lab on a chip" for the detection of human somatic and infectious diseases.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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