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Fine-tuning the electronic structure of heavy-atom-free BODIPY photosensitizers for fluorescence imaging and mitochondria-targeted photodynamic therapy.
Qi, Sujie; Kwon, Nahyun; Yim, Yubin; Nguyen, Van-Nghia; Yoon, Juyoung.
Afiliación
  • Qi S; Department of Chemistry and Nanoscience, Ewha Womans University Seoul 03760 Republic of Korea jyoon@ewha.ac.kr.
  • Kwon N; Department of Chemistry and Nanoscience, Ewha Womans University Seoul 03760 Republic of Korea jyoon@ewha.ac.kr.
  • Yim Y; Department of Chemistry and Nanoscience, Ewha Womans University Seoul 03760 Republic of Korea jyoon@ewha.ac.kr.
  • Nguyen VN; Department of Chemistry and Nanoscience, Ewha Womans University Seoul 03760 Republic of Korea jyoon@ewha.ac.kr.
  • Yoon J; Institute of Research and Development, Duy Tan University Da Nang 550000 Vietnam nguyenvannghia8@duytan.edu.vn.
Chem Sci ; 11(25): 6479-6484, 2020 Mar 17.
Article en En | MEDLINE | ID: mdl-34094113
ABSTRACT
Theranostics that combines both diagnosis and therapy into a single platform has recently emerged as a promising biomedical approach for cancer treatment; however, the development of efficient theranostic agents with excellent optical properties remains a challenge. Here, we report novel mitochondria-targeting BODIPY photosensitizers (R-BODs) that possess considerable singlet oxygen generation capabilities and good fluorescence properties for imaging-guided photodynamic therapy (PDT). The incorporation of sulfur atoms into the π-conjugated skeleton of BODIPY along with the introduction of different functional groups at the meso-position of the BODIPY core is essential for tuning the photophysical and photosensitizing properties. Notably, the MeOPh-substituted thiophene-fused BODIPY (MeO-BOD, R = p-methoxyphenyl) displayed the highest singlet oxygen generation capability (Φ Δ ≈ 0.85 in air-saturated acetonitrile) and a moderate fluorescence quantum yield (Φ f = 17.11). Furthermore, MeO-BOD showed good biocompatibility, low dark toxicity and superior fluorescence imaging properties in living cells. More importantly, the PDT efficacy of mitochondria-specific anchoring of MeO-BOD was remarkably amplified with an extremely low half-maximal inhibitory concentration (IC50) value of 95 nM. We believe that the incorporation of an electron-donating group at the meso-position of the thiophene-fused BODIPY platform may be an effective approach for developing theranostic agents for precision cancer therapy.

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2020 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2020 Tipo del documento: Article