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Sequencing technologies - the next generation.测序技术——下一代。
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Bioconjugation techniques for microfluidic biosensors.用于微流控生物传感器的生物共轭技术。
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What would you do if you could sequence everything?如果你能对所有事物进行测序,你会怎么做?
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How to get genomes at one ten-thousandth the cost.如何以万分之一的成本获取基因组。
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Characteristic differences in the X-ray photoelectron spectrum between B-DNA and M-DNA monolayers on gold.金表面上B-DNA和M-DNA单分子层的X射线光电子能谱的特征差异。
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Single-molecule DNA sequencing of a viral genome.病毒基因组的单分子DNA测序
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Evidence of impurities in thiolated single-stranded DNA oligomers and their effect on DNA self-assembly on gold.硫醇化单链DNA寡聚物中杂质的证据及其对金表面DNA自组装的影响。
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用于与固体表面连接的 DNA 杂双功能修饰。

Heterobifunctional modification of DNA for conjugation to solid surfaces.

机构信息

Chemistry Department, Lehigh University, 6 E. Packer Ave., Bethlehem, PA 18015, USA.

出版信息

Anal Bioanal Chem. 2010 Jul;397(5):1861-72. doi: 10.1007/s00216-010-3733-5. Epub 2010 Apr 28.

DOI:10.1007/s00216-010-3733-5
PMID:20422158
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2888793/
Abstract

Many biosensors, DNA arrays, and next-generation DNA sequencing technologies need common methods for end modification of random DNA sequences generated from a sample of DNA. Surface immobilization of chemically modified DNA is often the first step in creating appropriate sensing platforms. We describe a simple technique for efficient heterobifunctional modification of arbitrary double-stranded DNA fragments with chosen chemical groups. The modification requires the use of short (10-20 base pairs) synthetic adaptors having desired terminal functional groups and installs known sequences, which can be used for hybridization of primers in the sequencing-by-synthesis approaches. The method, based on ligation under optimized conditions, is selective and provides high yields of the target heterobifunctional DNA product. An additional two-step procedure can be applied to select further for the desired bifunctionalized product using PCR amplification with a chemically modified primer. Both functional groups in the modified DNA are chemically active and can be used in surface immobilization of the DNA strands to create the surface of a biosensor or sequencing chip.

摘要

许多生物传感器、DNA 芯片和新一代 DNA 测序技术都需要通用的方法来对来自 DNA 样本的随机 DNA 序列进行末端修饰。化学修饰的 DNA 的表面固定化通常是创建合适的传感平台的第一步。我们描述了一种简单的技术,可有效地对任意双链 DNA 片段进行所需化学基团的异双功能修饰。修饰需要使用具有所需末端官能团的短(10-20 个碱基对)合成接头,并安装已知序列,这些序列可用于合成测序方法中的引物杂交。该方法基于优化条件下的连接,具有选择性,并提供目标异双功能 DNA 产物的高产率。可以应用另外的两步程序,使用化学修饰的引物进行 PCR 扩增,进一步选择所需的双功能化产物。修饰 DNA 中的两个官能团都是化学活性的,可用于 DNA 链的表面固定化,以创建生物传感器或测序芯片的表面。