Photodynamic Graphene Quantum Dot: Reduction Condition Regulated Photoactivity and Size Dependent Efficacy

ACS Appl Mater Interfaces. 2016 Feb 10;8(5):3287-94. doi: 10.1021/acsami.5b11154. Epub 2016 Jan 26.

Abstract

Prequenching and selective activation of photosensitizer (PS) are highly desired in photodynamic therapy (PDT) to avoid off-target effect due to nonspecific activation and poor targeting selectivity of PS. In this study, nanographene materials as a unique π-conjugated planar system for electronic transfer were employed as the robust platform for temporarily quenching of PS. Photosensitizer chlorin e6 (Ce6) was integrated onto planar structure of graphene quantum dot (GQD) or graphene oxide (GO) via a reduction cleavable disulfide linker. The formed hybrid nanosystem displayed considerable fluorescence quenching and slight phototoxicity, even under the condition of light irradiation, while the photoactivity of PS could be selectively recovered in the presence of the reducing agent. Compared with graphene oxide system with larger size (around 200 nm), GQD nanosystem exhibited significantly improved tumor accumulation via enhanced permeation and retention effect (EPR effect). The in vivo study demonstrated extremely effective suppression of tumor growth for the group treated with the GQD nanosystem with cleavable linker, revealing the promising application of the presented novel strategy.

Keywords: EPR effect; disulfide; graphene quantum dot; photoactivity; photodynamic therapy; redox-responsive.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Cell Line, Tumor
  • Chlorophyllides
  • Fluorescence
  • Graphite / chemistry*
  • Humans
  • Light
  • Oxides / chemistry
  • Photochemotherapy*
  • Photosensitizing Agents / chemistry*
  • Photosensitizing Agents / therapeutic use
  • Porphyrins / chemistry
  • Quantum Dots / chemistry*
  • Quantum Dots / therapeutic use

Substances

  • Chlorophyllides
  • Oxides
  • Photosensitizing Agents
  • Porphyrins
  • phytochlorin
  • Graphite