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808 nm-activable core@multishell upconverting nanoparticles with enhanced stability for efficient photodynamic therapy.

Raquel MartínezEster PoloSilvia BarbosaPablo TaboadaPablo Del PinoBeatriz Pelaz
Published in: Journal of nanobiotechnology (2020)
In summary, we have demonstrated the feasibility of using photosensitizer-polymer-modified upconverting nanoplatforms that can be activated by 808 nm light excitation sources for application in photodynamic therapy. Our nanoplatforms remain photoactive after internalization by living cells, allowing for 808 nm-activated ROS generation. The versatility of our polymer-stabilization strategy promises a straightforward access to other derivatizations (for instance, by integrating other photosensitizers or homing ligands), which could synergistically operate as multifunctional photodynamic platforms nanoreactors for in vivo applications.
Keyphrases
  • photodynamic therapy
  • living cells
  • fluorescent probe
  • fluorescence imaging
  • cancer therapy
  • drug delivery
  • single molecule
  • cell death
  • dna damage
  • drinking water
  • reactive oxygen species
  • light emitting