Medical Engineering & Physics
Volume 28, Issue 10 , Pages 963-970 , December 2006

Electrochemistry of nanoscale DNA surface films on carbon

Received 28 April 2006 ,Accepted 4 May 2006.

References 

  1. Oliveira Brett AM, Chiorcea A-M. Atomic force microscopy of DNA immobilized onto a highly oriented pyrolytic graphite electrode surface. Langmuir. 2003;19:3830–3839
  2. Oliveira-Brett AM. DNA-based biosensors. In:  Gordon L editors. Comprehensive analytical chemistry, biosensors and modern specific analytical techniques.. Elsevier; 2004;[chapter 8]
  3. Oliveira Brett AM, Serrano SHP, Gutz I, La-Scalea MA. Electrochemical reduction of metronidazole at a DNA-modified glassy carbon electrode. Bioelectrochem Bioenerg. 1997;42:175–178
  4. Oliveira Brett AM, Macedo TA, Raimundo D, Marques MH, Serrano SHP. Voltammetric behaviour of mitoxandrone at a DNA-biosensor. Biosens Bioelectron. 1998;13:861–867
  5. Oliveira Brett AM, da Silva LA, Fujii H, Mataka S, Thiemann T. Detection of the damage caused to DNA by a thiophene-S-oxide using an electrochemical DNA-biosensor. J Electroanal Chem. 2003;549:91–99
  6. Abreu FC, Goulart MOF, Oliveira Brett AM. Detection of the damage caused to DNA by niclosamide using an electrochemical DNA-biosensor. Biosens Bioelectron. 2002;17:913–919
  7. Oliveira Brett AM, Vivan M, Fernandes IR, Piedade JAP. Electrochemical detection of in situ adriamycin oxidative damage to DNA. Talanta. 2002;56:959–970
  8. Piedade JAP, Fernandes IR, Oliveira Brett AM. Electrochemical sensing of DNA–adriamycin interactions. Bioelectrochemistry. 2002;56:81–83
  9. Oliveira Brett AM, Diculescu VC. Electrochemical study of quercetin–DNA interaction: Part I. Analysis in incubated solutions. Bioelectrochemistry. 2004;64:133–141
  10. Oliveira Brett AM, Diculescu VC. Electrochemical study of quercetin–DNA interaction: Part II. In situ sensing with DNA biosensor. Bioelectrochemistry. 2004;64:143–150
  11. Ohshima H, Yoshie Y, Auriol S, Gilibert I. Antioxidant and pro-oxidant actions of flavonoids: effects on DNA damage induced by nitric oxide, peroxynitrite and nitroxyl anion. Free Radic Biol Med. 1998;25:1057–1065
  12. Johnson MK, Loo G. Effects of epigallocatechin gallate and quercetin on oxidative damage to cellular DNA. Mutat Res/DNA Repair. 2000;459(3):211–218
  13. Rahman A, Shahabuddin S, Hadi SM, Parish JH. Complexes involving quercetin, DNA and Cu(II). Carcinogenesis. 1990;11:2001–2003
  14. Oliveira Brett AM, Piedade JAP, Serrano SHP. Electrochemical oxidation of 8-oxoguanine. Electroanalysis. 2000;12:969–973
  15. Oliveira Brett AM, Piedade JAP, Chiorcea AM. Anodic voltammetry and AFM imaging of picomoles of adriamycin adsorbed onto carbon surfaces. J Electroanal Chem. 2002;538–539:267–276
  16. Berg H, Horn G, Luthardt U. Interaction of anthracycline antibiotics with biopolymers. Part V. Polarographic behavior and complexes with DNA. Bioelectrochem Bioenerg. 1981;8:537–553
  17. Lown JW. Discovery and development of anthracycline antitumour antibiotics. Chem Soc Rev. 1993;165–176
  18. Oliveira Brett AM, Ghica M-E. Electrochemical oxidation of quercetin. Electroanalysis. 2003;15:1745–1750
  19. Oliveira Brett AM, Piedade JAP, Silva LA, Diculescu VC. Voltammetric determination of all DNA nucleotides. Anal Biochem. 2004;332:969–973
  20. Box HC, Dawindzik JB, Budzinski EE. Free radical-induced double lesions in DNA. Free Radic Biol Med. 2001;31:856–868
  21. Culliname C, Phillips DR. Induction of stable transcriptional blockage sites by adriamycin: GpC specificity of apparent adriamycin–DNA adducts and dependence on iron(III) ions. Biochemistry. 1990;29:5638–5646
  22. ESCOOD (European Standards Committee on Oxidative DNA Damage) . Comparison of different methods of measuring 8-oxoguanine as a marker of oxidative DNA damage. Free Radic Res. 2000;32:333–341
  23. Rebelo IA, Piedade JAP, Oliveira-Brett AM. Development of an HPLC method with electrochemical detection of femtomoles of 8-oxo-7,8-dihydroguanine and 8-oxo-7,8-dihydro-2′-deoxyguanosine in the presence of uric acid. Talanta. 2004;63:323–331
  24. Halliwell B. Oxygen and nitrogen are pro-carcinogens. Damage to DNA by reactive oxygen, chlorine and nitrogen species: measurement, mechanism and the effects of nutrition. Mutat Res. 1999;443:37–52

PII: S1350-4533(06)00097-X

doi: 10.1016/j.medengphy.2006.05.009

Medical Engineering & Physics
Volume 28, Issue 10 , Pages 963-970 , December 2006