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Fluorescence lifetime and quantum yield of TMPyPH2 associated with micelles and DNA

  • Universidade de São Paulo

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

28 Scopus citations

Abstract

In this work, we have determined the fluorescence lifetime and quantum yield of meso-tetrakis (4-N-methylpyridyl)porphine (TMPyPH2) in cationic, anionic and non-ionic micellar media and in buffer phosphate solutions of DNA in order to evaluate how their electrostatic domain affects the photophysical properties of TMPyPH2. The results obtained indicated that each specific electrostatic domain in micellar medium and in DNA solution affect the photophysical properties of the porphyrin. In anionic micellar medium of sodium dodecylsulfate (SDS) the electrostatic interacting of TMPyPH2 with the medium leads to a Φf value higher and τf longer than those obtained in cationic medium of cetyltrimethylammonium bromide (CTAB) micelles. The interaction of TMPyPH2 with a biological staff as DNA results initially in two different populations of a complex DNA-TMPyPH2. The τ1 for the first complex species changes in the function of DNA concentration in the ranges from 5.25 ('free' porphyrin species) to 11.3 ns ('completely bound' species) and the τ2 for the second complex remains constant around 3 ns. It also was observed that DNA binding leads to a reduction in the fluorescence quantum yield of TMPyPH2 to all DNA concentrations. This is an indication that the photodynamic properties of this porphyrin interacting with DNA are susceptible to the environmental properties affecting directly their photodynamic action. © 2002 Elsevier Science B.V. All rights reserved.
Original languageEnglish
Title of host publicationJournal of Alloys and Compounds
Place of Publicationgbr
Pages27-31
Number of pages5
Volume344
DOIs
StatePublished - Oct 7 2002
EventRare Earths 2001 - , Brazil
Duration: Oct 7 2002Oct 7 2002

Conference

ConferenceRare Earths 2001
Country/TerritoryBrazil
Period10/7/0210/7/02

Keywords

  • DNA
  • Photodynamic therapy
  • Porphyrin

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