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Electrochemical characterization and quantitation of dna immoblized on gold

机译:黄金中防治DNA的电化学表征及定量

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Electrochemical techniques were used to characterize the interaction of DNA with gold and to quantitate the surface density of DNA on an electrode. Oligonucleotides were immobilized on gold by forming mixed monolayers of thiol-derivitized, single-stranded oligonucleotide and 6mercapto-l-hexanol. Accumulation of charge-compensating redox marker in the DNA monolayer under appropriate conditions was used to determine the surface density of DNA. Surface densities of singlestranded DNA were precisely varied in the range of 1-16 x 10~(12) molecules/cm~2 using mixed monolayers. Nucleic acid segments of different lengths were found to pack on the surface to the extent that the limiting surface density is proportional to the square root of the number of bases in the segment. The hybridization efficiency of immobilized singlestranded DNA to complementary strands was measured as a function of the surface density. Complete pairing of the immobilized DNA with complementary nucleic acid was observed for surface densities below 4 x 10~(12) molecules/cm~2; above this value the hybridization efficiency decreases steadily with increasing surface density.
机译:使用电化学技术表征DNA与金的相互作用,并定量DNA在电极上的表面密度。通过形成混合的硫醇 - 衍生的单链寡核苷酸和6mercapto-L-六烷醇,将寡核苷酸固定在金上。使用在适当条件下DNA单层中的电荷补偿氧化还原标志物的积累来确定DNA的表面密度。使用混合单层的2)分子/ cm〜2的单表单表演DNA的表面密度在1-16×10〜(12)分子/ cm〜2的范围内。发现不同长度的核酸片段在表面上包装限制表面密度与区段中碱基数量的平方根成比例的程度。以表面密度的函数测量将固定的单表达DNA与互补链的杂交效率。在4×10〜(12)分子/ cm〜2以下的表面密度观察到固定的核酸的固定的DNA的完全配对;在该值之上,杂交效率随着表面密度的增加而稳定地降低。

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