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Original Research

Enhancing the specificity of polymerase chain reaction by graphene oxide through surface modification: zwitterionic polymer is superior to other polymers with different charges

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Pages 5989-6002 | Published online: 11 Nov 2016

References

  • SaikiRKScharfSFaloonaFEnzymatic amplification of b-globin genomic sequences and restriction site analysis for diagnosis of sickle cell anemiaScience19852304732135013542999980
  • MarkusRRobertQHans-JörgWHansLMarie-LaureYSylviaKAn efficient and economic enhancer mix for PCRBiochem Biophys Res Commun2006347374775116842759
  • ZhangLCuiXFSchmittKHubertRNavidiWArnheimNWhole genome amplification from a single cell: implications for genetic analysisProc Natl Acad Sci U S A19928913584758511631067
  • MichaelRGJosephSChapter 7: polymerase chain reactionMolecular Cloning: A Laboratory ManualFourth edMichaelRGJosephSNew York, NYCold Spring Harbor2012455469
  • SaikiRKGelfandDHStoffelSPrimer-directed enzymatic amplification of DNAScience198823948394874912448875
  • ChakrabartiRSchuttCEThe enhancement of PCR amplification by low molecular-weight sulfonesGene20012741–229329811675022
  • ElyJReeves-DanielACampbellMCampbellMLKohlerSStoneWHInfluence of magnesium ion concentration and PCR amplification conditions on cross-species PCRBiotechniques199825138429668972
  • HenkeWHerdelKJungKSchnorretDLoeningSABetaine improves the PCR amplification of GC-rich DNA sequencesNucleic Acids Res19972519395739589380524
  • LiHHuangJLvJNanoparticle PCR: nanogold-assisted PCR with enhanced specificityAngew Chem Int Ed Engl200544325100510315942960
  • KhaliqASonawanePJSasiBKEnhancement in the efficiency of polymerase chain reaction by TiO2 nanoparticles: crucial role of enhanced thermal conductivityNanotechnology2010212525570420516586
  • NieLGaoLYanXWangTFunctionalized tetrapod-like ZnO nanostructures for plasmid DNA purification, polymerase chain reaction and deliveryNanotechnology2006181015101
  • ZhangZZWangMCAnHJAn aqueous suspension of carbon nanopowder enhances the efficiency of a polymerase chain reactionNanotechnology20071835355706
  • AbdulKRKafafyRHamzahMSWaleedFFEnhancing the efficiency of polymerase chain reaction using graphene nanoflakesNanotechnology2012234545510623085573
  • WangLZhuYJiangYEffects of quantum dots in polymerase chain reactionJ Phys Chem B2009113217637764119408916
  • ChenJCaoXGuoRA highly effective polymerase chain reaction enhancer based on dendrimer-entrapped gold nanoparticlesAnalyst2012137122322822059230
  • WangHWangLYuanLYangWBrashJLChenHInhibitory effect of silicon nanowires on the polymerase chain reactionNanotechnology2012233636510122914382
  • YangWShenCJiQFood storage material silver nanoparticles interfere with DNA replication fidelity and bind with DNANanotechnology200920808510219417438
  • DingKWangNYanQGuanWNanomaterials’s effect on polymerase chain reactionCurr Nanosci201393415421
  • JiaJSunLPHuNHuangGMWengJGraphene enhances the specificity of the polymerase chain reactionSmall20128132011201522488835
  • PanDMiLHuangQHuJFanCGenetic analysis with nano PCRIntegr Biol201241011551163
  • MaLHeSHuangJCaoLYangFLiLMaximizing specificity and yield of PCR by the quantum dot itself rather than property of the quantum dot surfaceBiochimie200991896997319442702
  • BaiYCuiYPaoliGCShiCWangDShiXNanoparticles affect PCR primarily via surface interactions with PCR components: using amino-modified silica-coated magnetic nanoparticles as a main modelACS Appl Mater Interfaces2015724131421315326030087
  • CaoXShenMZhangXHuJWangJShiXEffect of the surface functional groups of dendrimer-entrapped gold nanoparticles on the improvement of polymerase chain reactionElectrophoresis201233162598260322899269
  • CaoXChenJWenSPengCShenMShiXEffect of surface charge of polyethyleneimine-modified multiwalled carbon nanotubes on the improvement of polymerase chain reactionNanoscale201131741174721340081
  • TongWCaoXWenSEnhancing the specificity and efficiency of polymerase chain reaction using polyethyleneimine-based derivatives and hybrid nanocompositesInt J Nanomedicine201271069107822393296
  • KuilaTBoseSMishraAKKhanraaPKimcNHLeeJHChemical functionalization of graphene and its applicationsProg Mater Sci201257710611065
  • LiCYangYWuDLiTYinYLiGImprovement of enzyme-linked immunosorbent assay for the multicolor detection of biomarkersChem Sci2016730113016
  • HuangYLiHFanQWangLWangYLiGMultifunctional nanocatalyst-based ultrasensitive detection of human tissue transglutaminase 2Biosens Bioelectron20168315859027107144
  • GaoTYangDNingLLeiLYeZLiGUltrafine and well dispersed silver nanocrystals on 2D nanosheets: synthesis and application as a multifunctional material for electrochemical catalysis and biosensingNanoscale2014624148281483525361196
  • GaoTLiuFYangDYuYWangZLiGAssembly of selective biomimetic surface on an electrode surface: a design of nano–bio interface for biosensingAnal Chem201587115683568925925724
  • ChenHRuckensteinENanomembrane containing a nanopore in an electrolyte solution: a molecular dynamics approachJ Phys Chem Lett20145172979298226278246
  • YangQWangZWengJSelf-assembly of natural tripeptide glutathione triggered by graphene oxideSoft Matter2012898559863
  • DongJWengJDaiLDongJWengJDaiLThe effect of graphene on the lower critical solution temperature of poly(N-isopropylacrylamide)Carbon N Y201352326336
  • KhanUO’NeillAPorwalHPeterMNawazKColemanJNSize selection of dispersed, exfoliated graphene flakes by controlled centrifugationCarbon N Y2012502470475
  • DongJDingJWengJDaiLGraphene enhances the shape memory of poly (acrylamide-co-acrylic acid) grafted on grapheneMacromol Rapid Commun201334865966423585125
  • LiuZRobinsonJTSunXDaiHPEGylated nanographene oxide for delivery of water-insoluble cancer drugsJ Am Chem Soc200813033108761087718661992
  • BoehmHPDiehlEHeckWSappokRSurface oxides of carbonAngew Chem Int Ed Engl1964310669677
  • Van Der SpoelDLindahlEHessBGroenhofGMarkAEBerendsenHJCGROMACS: fast, flexible, and freeJ Comput Chem200526161701171816211538
  • HuangJMacKerellADCHARMM36 all-atom additive protein force field: validation based on comparison to NMR dataJ Comput Chem201334252135214523832629
  • VilarSCozzaGMoroSMedicinal chemistry and the molecular operating environment (MOE): application of QSAR and molecular docking to drug discoveryCurr Top Med Chem20088181555157219075767
  • TrottOOlsonAJAutoDock Vina: improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreadingJ Comput Chem201031245546119499576
  • LuCYangHZhuCChenXChenGA graphene platform for sensing biomoleculesAngew Chem20091212648794881
  • PanJLiHCaoXNanogold-assisted multi-round polymerase chain reaction (PCR)J Nanosci Nanotechnol20077124428443318283823
  • GuanGZhangSLiuSProtein induces layer-by-layer exfoliation of transition metal dichalcogenidesJ Am Chem Soc2015137196152615525936424
  • ZhangYZhangJHuangXZhouXWuHGuoSAssembly of graphene oxide–enzyme conjugates through hydrophobic interactionSmall20128115415922038754
  • ChervenakMCTooneEJCalorimetric analysis of the binding of lectins with overlapping carbohydrate-binding ligand specificitiesBiochemistry19953416568556957727428
  • CooperAHeat capacity effects in protein folding and ligand binding: a re-evaluation of the role of water in biomolecular thermodynamicsBiophys Chem20051152–3899715752588
  • KimSKimDKimJKangdLChoHCrystal structure of Pfu, the high fidelity DNA polymerase from Pyrococcus furiosusInt J Biol Macromol200842435636118355915
  • GoothNWHladyVTwo surface gradients of polyethylene glycol for a reduction in protein adsorptionSurf Innov201533172180
  • KeefeAJJiangSYPoly(zwitterionic)protein conjugates offer increased stability without sacrificing binding affinity or bioactivityNat Chem2012415963