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Synthesis of tumor-avid photosensitizer-Gd(III)DTPA conjugates: Impact of the number of gadolinium units in T1/T2 relaxivity, intracellular localization, and photosensitizing efficacy

  • Lalit N. Goswami
  • , William H. White
  • , Joseph A. Spernyak
  • , Manivannan Ethirajan
  • , Yihui Chen
  • , Joseph R. Missert
  • , Janet Morgan
  • , Richard Mazurchuk
  • , Ravindra K. Pandey
  • Roswell Park Cancer Institute

Research output: Contribution to journalArticlepeer-review

34 Scopus citations

Abstract

To develop novel bifunctional agents for tumor imaging (MR) and photodynamic therapy (PDT), certain tumor-avid photosensitizers derived from chlorophyll-a were conjugated with variable number of Gd(III)aminobenzyl DTPA moieties. All the conjugates containing three or six gadolinium units showed significant T1 and T2 relaxivities. However, as a bifunctional agent, the 3-(1′-hexyloxyethyl)pyropheophorbide-a (HPPH) containing 3Gd(III) aminophenyl DTPA was most promising with possible applications in tumor-imaging and PDT. Compared to HPPH, the corresponding 3- and 6Gd(III)aminobenzyl DTPA conjugates exhibited similar electronic absorption characteristics with a slightly decreased intensity of the absorption band at 660 nm. However, compared to HPPH, the excitation of the broad "Soret" band (near 400 nm) of the corresponding 3Gd(III)aminobenzyl-DTPA analogues showed a significant decrease in the fluorescence intensity at 667 nm.

Original languageEnglish
Pages (from-to)816-827
Number of pages12
JournalBioconjugate Chemistry
Volume21
Issue number5
DOIs
StatePublished - May 19 2010

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