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Nanostructured rough gold electrodes as platforms to enhance the sensitivity of electrochemical genosensors
Authors:T García-Mendiola  M Gamero  S Campuzano  M Revenga-Parra  C Alonso  M Pedrero  F Pariente  JM Pingarrón  E Lorenzo
Institution:1. Department of Analytical Chemistry and Instrumental Analysis, Universidad Autónoma de Madrid, 28049 Madrid, Spain;2. Department of Applied Physical Chemistry, Universidad Autónoma de Madrid, 28049 Madrid, Spain;3. Department of Analytical Chemistry, Universidad Complutense de Madrid, 28040 Madrid, Spain;4. IMDEA Nanociencia, Madrid, Spain
Abstract:An electrochemical DNA genosensor constructed by using rough gold as electrode support is reported in this work. The electrode surface nanopatterning was accomplished by repetitive square-wave perturbing potential (RSWPP). A synthetic 25-mer DNA capture probe, modified at the 5′ end with a hexaalkylthiol, able to hybridize with a specific sequence of lacZ gene from the Enterobacteriaceae bacterial family was assembled to the rough gold surface. A 25 bases synthetic sequence fully complementary to the thiolated DNA capture probe and a 326 bases fragment of lacZ containing a fully matched sequence with the capture probe, which was amplified by a specific asymmetric polymerase chain reaction (aPCR), were employed as target sequences. The hybridization event was electrochemically monitored by using two different indicators, hexaammineruthenium (III) chloride showing an electrostatic DNA binding mode, and pentaamineruthenium-3-(2-phenanthren-9-yl-vinyl)-pyridine] (in brief RuL) which binds to double stranded DNA (dsDNA) following an intercalative mechanism. After optimization of the different variables involved in the hybridization and detection reactions, detection limits of 5.30 pg μL−1 and 10 pg μL−1 were obtained for the 25-mer synthetic target DNA and the aPCR amplicon, respectively. A RSD value of 6% was obtained for measurements carried out with 3 different genosensors prepared in the same manner.
Keywords:Rough gold electrode  Nanopatterning  Electrochemical detection  Genosensor  Asymmetric polymerase chain reaction
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