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DNA microarrays with PAMAM dendritic linker systems

机译:具有PAMAM树突状接头系统的DNA微阵列

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摘要

The DNA microarray-based analysis of single nucleotide polymorphisms (SNPs) is important for the correlation of genetic variations and individual phenotypes, and for locating disease-causing genes. To facilitate the development of surfaces suitable for immobilization of oligonucleotides, we report here a novel method for the surface immobilization of DNA using pre-fabricated polyamidoamine (PAMAM) starburst dendrimers as mediator moieties. Dendrimers containing 64 primary amino groups in their outer sphere are covalently attached to silylated glass supports and, subsequently, the dendritic macromolecules are modified with glutaric anhydride and activated with N-hydroxysuccinimide. As a result of the dendritic PAMAM linker system the surfaces reveal both a very high immobilization efficiency for amino-modified DNA-oligomers, and also a remarkable high stability during repeated regeneration and re-using cycles. The performance of dendrimer-based DNA microarrays in the discrimination of SNPs is demonstrated.
机译:基于DNA芯片的单核苷酸多态性(SNP)分析对于遗传变异与个体表型的相关性以及定位致病基因非常重要。为了促进适合寡核苷酸固定化的表面的开发,我们在这里报告了一种使用预制的聚酰胺型胺(PAMAM)星暴树状大分子作为介体部分进行DNA表面固定的新方法。将在其外球中含有64个伯氨基的树状聚合物共价连接到甲硅烷基化的玻璃载体上,然后,用戊二酸酐修饰树状大分子,并用N-羟基琥珀酰亚胺活化。树突状PAMAM接头系统的结果是,表面既显示出对氨基修饰的DNA-寡聚体非常高的固定效率,又在重复的再生和重复使用过程中表现出显着的高稳定性。证明了基于树状大分子的DNA微阵列在识别SNP中的性能。

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