Esterase-Activated, pH-Responsive, and Genetically Targetable Nano-Prodrug for Cancer Cell Photo-Ablation

Pingping Liang1, Yuanying Zhang1, Brigitte F Schmidt2

  • 1School of Life Sciences, Anhui Medical University, Hefei, Anhui, 230032, China.

Insights

This study introduces an intelligent nano-prodrug for cancer therapy. It targets cancer cells specifically, enhancing phototherapy effectiveness through dual organelle targeting and pH-responsive properties.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Cancer Therapy

Background:

  • Activatable prodrugs offer specific cancer cell targeting.
  • Current phototheranostic prodrugs lack dual organelle targeting and synergistic effects.
  • Drug uptake is hindered by cell membranes, exocytosis, and the extracellular matrix.

Purpose of the Study:

  • To develop an intelligent nano-prodrug for enhanced cancer cell ablation.
  • To achieve dual organelle targeting (lysosomes and mitochondria) for synergistic effects.
  • To overcome limitations of current phototherapy, including reduced drug uptake and hampered efficacy.

Main Methods:

  • Synthesized an esterase-activated DM nano-prodrug conjugated with MG-2I and DPP-OH.
  • Utilized a pH-responsive and genetically targetable structure for dual organelle targeting.
  • Investigated the nano-prodrug's properties in acidic environments and its release mechanism via esterase.

Main Results:

  • DM nanoparticles exhibited enhanced pH-responsive photothermal/photodynamic properties.
  • Released moieties specifically targeted lysosomes and mitochondria in CT-26 Mito-FAP cells.
  • Achieved parallel damage in dual organelles, inducing mitochondrial dysfunction and apoptotic death.

Conclusions:

  • The developed DM nano-prodrug demonstrates excellent photo-ablation effects.
  • Esterase-activated, pH-responsive, and genetically targetable activities optimize phototherapy.
  • This intelligent prodrug design offers a promising strategy for effective cancer treatment.