Click Synthesis Enabled Sulfur Atom Strategy for Polymerization-Enhanced and Two-Photon Photosensitization

Angew Chem Int Ed Engl. 2022 May 16;61(21):e202202005. doi: 10.1002/anie.202202005. Epub 2022 Mar 23.

Abstract

Facile tailoring of photosensitizers (PSs) with advanced and synergetic properties is highly expected to broaden and deepen photodynamic therapy (PDT) applications. Herein, a catalyst-free thiol-yne click reaction was employed to develop the sulfur atom-based PSs by using the in situ formed sulfur "heavy atom effect" to enhance the intersystem crossing (ISC), while such an effect can be remarkably magnified by the polymerization. The introduction of a tetraphenylpyrazine-based aggregation-induced emission (AIE) unit was also advantageous in PS design by suppressing their non-radiative decay to facilitate the ISC in the aggregated state. Besides, the resulting sulfur atom electron donor, together with a double-bond π bridge and AIE electron acceptor, created a donor-π-acceptor (D-π-A) molecular system with good two-photon excitation properties. Combined with the high singlet oxygen generation efficiency, the fabricated polymer nanoparticles exhibited an excellent in vitro two-photon-excited PDT towards cancer cells, therefore possessing a huge potential for the deep-tissue disease therapy.

Keywords: Click Reactions; Photosensitizers; Polymerization Effect; Sulfur-Atom Effect; Two-Photon Excitation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Photochemotherapy* / methods
  • Photosensitizing Agents* / chemistry
  • Polymerization
  • Singlet Oxygen
  • Sulfur

Substances

  • Photosensitizing Agents
  • Singlet Oxygen
  • Sulfur