BODIPY dyes in photodynamic therapy
Красители BODIPY в фотодинамической терапии
2012-09-28
SCID: 54.1/c3sdagea
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BODIPY dyesfluorescence quenchingphotodynamic therapysinglet oxygentriplet states
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Abstract (AI)
BODIPY dyes tend to be highly fluorescent, but their emissions can be attenuated by adding substituents with appropriate oxidation potentials. Substituents like these have electrons to feed into photoexcited BODIPYs, quenching their fluorescence, thereby generating relatively long-lived triplet states. Singlet oxygen is formed when these triplet states interact with (3)O(2). In tissues, this causes cell damage in regions that are illuminated, and this is the basis of photodynamic therapy (PDT). The PDT agents that are currently approved for clinical use do not feature BODIPYs, but there are many reasons to believe that this situation will change. This review summarizes the attributes of BODIPY dyes for PDT, and in some related areas.
Key Findings
1
Although no clinically approved PDT agents currently feature BODIPYs, their properties suggest strong potential for future therapeutic applications.
2
BODIPY fluorescence can be attenuated by substituents with suitable oxidation potentials that donate electrons to photoexcited BODIPYs.
3
BODIPY triplet states generate singlet oxygen through interaction with molecular triplet oxygen.
4
Fluorescence quenching enables formation of relatively long-lived BODIPY triplet states.
5
Illumination-induced singlet oxygen production damages cells in localized tissue regions, providing the basis for photodynamic therapy.
Research Object
BODIPY dyes as photodynamic therapy agents
Research Subject
Photophysical attributes enabling singlet-oxygen generation and photodynamic tissue damage, including fluorescence quenching and long-lived triplet-state formation
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2012-09-28
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