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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Label-free capacitive DNA sensor using immobilized pyrrolidinyl PNA probe: Effect of the length and terminating head group of the blocking thiols
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Label-free capacitive DNA sensor using immobilized pyrrolidinyl PNA probe: Effect of the length and terminating head group of the blocking thiols

机译:使用固定的吡咯烷基PNA探针的无标记电容式DNA传感器:封闭硫醇的长度和末端头基的影响

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摘要

This paper reports, for the first time, the influence of the length and the terminating head group of blocking thiols on the sensitivity and specificity of a label-free capacitive DNA detection system using immobilized pyrrolidinyl peptide nucleic acid (acpcPNA) probes. A C-terminal lysine-modified acpcPNA was immobilized through four different alkanethiol self-assembled monolayers (SAMs), i.e., 3-mercaptopropionic acid (MPA), thioctic acid (TA), thiourea (TU) and mercaptosuccinic acid (MSA). The hybridization between the acpcPNA probes and the target DNA was directly measured using the capacitive system. Five blocking thiols of various lengths (C=3, 6, 8, 9 and 11), with the -OH terminating head group, i.e., 3-mercapto-1-propanol (3-MPL), 6-mercapto-1-hexanol (6-MHL), 8-mercapto-1-octanol (8-MOL), 9-mercapto-1-nonanol (9-MNL), 11-mercapto-1-undecanol (11-MUL) and another blocking thiol (C=11) with a -CH _3 terminating head group, and 1-dodecanethiol (1-DDT) were investigated. The blocking thiol with the same length as the total spacer of the immobilized acpcPNA gave the highest sensitivity and specificity with the -OH terminating head group providing a slightly better signal than the -CH _3 group. Under the optimized conditions, the immobilized acpcPNA probes provided a wide linear range for DNA detection (1.0×10 ~(-11)-1.0×10 ~(-8)M) with a very low detection limit in the picomolar range. The modified acpcPNA electrode could be reused through at least 58 cycles. The high sensitivity and very low detection limits are potentially useful for the analysis of ultra-trace levels of DNA in samples. Preliminary studies were also performed to see the effect of probe concentration and target length.
机译:本文首次报道了封端硫醇的长度和末端首基对使用固定的吡咯烷基肽核酸(acpcPNA)探针的无标记电容式DNA检测系统的灵敏度和特异性的影响。通过四个不同的链烷硫醇自组装单分子层(SAMs),即3-巯基丙酸(MPA),硫辛酸(TA),硫脲(TU)和巯基琥珀酸(MSA),固定了C端赖氨酸修饰的acpcPNA。使用电容系统直接测量acpcPNA探针和目标DNA之间的杂交。具有-OH端基的5种不同长度的封端硫醇(C = 3、6、8、9和11),即3-巯基-1-丙醇(3-MPL),6-巯基-1-己醇(6-MHL),8-巯基-1-辛醇(8-MOL),9-巯基-1-壬醇(9-MNL),11-巯基-1-十一烷醇(11-MUL)和另一种保护硫醇(C = 11)具有-CH _3终止头基,并且研究了1-十二烷硫醇(1-DDT)。与固定的acpcPNA的总间隔区长度相同的封闭硫醇具有最高的灵敏度和特异性,其中-OH末端头基比-CH _3基团提供更好的信号。在优化的条件下,固定化的acpcPNA探针为DNA检测提供了宽的线性范围(1.0×10〜(-11)-1.0×10〜(-8)M),在皮摩尔范围内的检测限非常低。修改后的acpcPNA电极可以重复使用至少58个循环。高灵敏度和极低的检测限可能对分析样品中DNA的超痕量水平有用。还进行了初步研究,以了解探针浓度和靶标长度的影响。

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