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Electrochemical detection of foodborne pathogen Aeromonas hydrophila by DNA hybridization biosensor

机译:DNA杂交生物传感器电化学检测食源性病原体嗜水气单胞菌

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The paper describes an electrochemical DNA biosensor used for the detection of Aeromonas hydrophila. This opportunistic pathogen is recognized as an emerging foodborne hazard and is associated with a variety of virulence factors including production of cytotoxic enterotoxin aerolysin. The genosensor recognition layer was prepared using mixed self-assembled monolayer (SAM) consisting of thiolated single-stranded DNA probe (ssDNA) and diluent molecules - mercaptoalcohol: mercaptoethanol (MCE) or mercaptohexanol (MCH) or mercaptononanol (MCN). The voltammetric examination of double-layer capacitance of biosensor recognition interface supported by chronocoulometric quantitation of DNA present on the electrode surface showed that mixed ssDNA and MCH monolayer revealed the lowest defectiveness. Its double-layer capacitance equaled 4.0μFcm~(-2) and ssDNA probe surface coverage reached 8.5×10~(11)moleculescm~(-2) of gold electrode surface. Chronocoulometric quantitation of DNA and square wave voltammetry (SWV) measurements of electroactive indicator, methylene blue (MB) were performed to investigate the influence of hybridization reaction time, concentration of target DNA fragments, and presence of non-complementary DNA on the electrochemical response of genosensor recognition interface. The biosensor enabled distinction between the DNA samples isolated from A. hydrophila (present at the concentration of 2.5μgcm~(-3)) and other microbial DNA.
机译:该论文描述了一种用于检测嗜水气单胞菌的电化学DNA生物传感器。这种机会病原体被认为是新兴的食源性危害,并与多种毒力因子有关,包括产生细胞毒性肠毒素气溶素。使用由硫醇化单链DNA探针(ssDNA)和稀释剂分子组成的混合自组装单分子层(SAM)和巯基乙醇:巯基乙醇(MCE)或巯基己醇(MCH)或巯基丙酮醇(MCN)组成基因传感器识别层。伏安法检测电极表面上存在的DNA,通过生物钟定量法支持的生物传感器识别界面的双层电容,表明混合的ssDNA和MCH单层显示出最低的缺陷。其双层电容为4.0μFcm〜(-2),ssDNA探针的表面覆盖达到金电极表面的8.5×10〜(11)mol·cm〜(-2)。进行DNA的计时容量定量和电活性指示剂亚甲基蓝(MB)的方波伏安(SWV)测量,以研究杂交反应时间,靶DNA片段的浓度和非互补DNA的存在对电化学反应的影响。基因传感器识别界面。该生物传感器能够区分从嗜水链球菌分离的DNA样品(浓度为2.5μgcm〜(-3))和其他微生物DNA。

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