J-aggregates of strong electron-donating groups linked Aza-BODIPY adjusting by polypeptide for NIR-II phototheranostics

[Display omitted] •D-A-D’ structure dyes of Aza-BODIPY has been synthesized.•Nanoparticles P-TPE have been prepared via the assembly of dye with the amphiphilic polypeptides.•The obtained P-TPE exhibited great absorption and fluorescence with their maxima at 1018 nm.•P-TPE is an efficient agent for...

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Veröffentlicht in:Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy Molecular and biomolecular spectroscopy, 2024-12, Vol.322, p.124789, Article 124789
Hauptverfasser: Chen, Dejia, Xu, Yixuan, Wang, Yating, Teng, Changchang, Li, Xin, Yin, Dalong, Yan, Lifeng
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Sprache:eng
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Zusammenfassung:[Display omitted] •D-A-D’ structure dyes of Aza-BODIPY has been synthesized.•Nanoparticles P-TPE have been prepared via the assembly of dye with the amphiphilic polypeptides.•The obtained P-TPE exhibited great absorption and fluorescence with their maxima at 1018 nm.•P-TPE is an efficient agent for NIR-II fluorescence imaging-guided PTT. The commonly employed strategies for engineering second near-infrared (NIR-II) organic phototheranostic agents are based on expanding conjugated backbone length, strengthening donor (D)-acceptor (A) effect, or forming J-aggregates. We constructed the D-A-D’ structure by incorporating strong electron-donating methoxy and tetraphenylethene (TPE) moieties on the electron-deficient Aza-BODIPY core, and simultaneously expanded the π-conjugation effect by introducing thiophene groups, to obtain a dye BDP-TPE. Next, the nanoparticles P-TPE were prepared via the assembly of BDP-TPE with amphiphilic polypeptides (mPEG2000-P(Asp)10), and successfully constructed the J-aggregates. The obtained P-TPE exhibited strong absorption and fluorescence with maxima at 808 and 1018 nm, respectively, with a conspicuous absolute quantum yield of 0.241 %. Moreover, P-TPE also showed excellent biocompatibility, and high photothermal conversion efficiency of 61.15 %, and excellent resistance to pH, long-term storage, and photobleaching. In vitro and in vivo experiments revealed that P-TPE exhibited good biocompatibility and effectively achieved NIR-II fluorescence imaging-guided PTT with complete tumor ablation under 808 nm laser irradiation. These results provided good evidence for the use of P-TPE as a NIR-II fluorescence imaging-guided PTT therapeutic agent in vivo.
ISSN:1386-1425
1873-3557
DOI:10.1016/j.saa.2024.124789