| Literature DB >> 24019854 |
Nadine S James1, Yihui Chen, Penny Joshi, Tymish Y Ohulchanskyy, Manivannan Ethirajan, Maged Henary, Lucjan Strekowsk, Ravindra K Pandey.
Abstract
Near-infrared (NIR) organic dyes have become important for many biomedical applications, including in vivo optical imaging. Conjugation of NIR fluorescent dyes to photosensitizing molecules (photosensitizers) holds strong potential for NIR fluorescence image guided photodynamic therapy (PDT) of cancer. Therefore, we were interested in investigating the photophysical properties, in vivo tumor-affinity and fluorescence imaging potential of a series of heterocyclic polymethine dyes, which could then be conjugated to certain PDT agents. For our present study, we selected a series of symmetrical polymethine dyes containing a variety of bis-N-substituted indole or benzindole moieties linked by linear conjugation with and without a fused substituted cyclohexene ring. The N-alkyl side chain at the C-terminal position was functionalized with sulfonic, carboxylic acid, methyl ester or hydroxyl groups. Although, among the parent cyanine dyes investigated, the commercially available, cyanine dye IR783 (3) (bis-indole-N-butylsulfonate)-polymethine dye with a cyclic chloro-cyclohexene moiety showed best fluorescence-imaging ability, based on its spectral properties (λAbs=782 nm, λFl=810 nm, ε = 261,000 M(-1)cm(-1), ΦFl≈0.08) and tumor affinity. In addition to 3, parent dyes IR820 and Cypate (6) were also selected and subjected to further modifications by introducing desired functional groups, which could enable further conjugation of the cyanine dyes to an effective photosensitizer HPPH developed in our laboratory. The synthesis and biological studies (tumor-imaging and PDT) of the resulting bifunctional conjugates are discussed in succeeding paper (Part-2 of this study).Entities:
Keywords: Fluorescence Quantum Yields.; Near Infrared Fluorescence Imaging; Near Infrared Fluorophores; Photodynamic therapy; Reactive Oxygen Species
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Year: 2013 PMID: 24019854 PMCID: PMC3767116 DOI: 10.7150/thno.5922
Source DB: PubMed Journal: Theranostics ISSN: 1838-7640 Impact factor: 11.556
Electronic absorption and fluorescence characteristics of ICG, IR820 and other cyanine dyes 1 - 10. The Fluorescence quantum yields of NIR dyes were obtained in methanol (5 μM) using ICG as a reference standard 21. All dyes were excited at 785 nm.
Electronic absorption and fluorescence characteristics of ICG, IR820 and other cyanine dyes 1 - 10. The electronic absorption and fluorescence spectra of NIR dyes were obtained in Colon 26 complete media (RPMI) at (1 μM). All dyes were excited at 785 nm.