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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.
Abstract:
Activatable prodrugs have drawn considerable attention for cancer cell ablation owing to their high specificity in drug delivery systems. However, phototheranostic prodrugs with dual organelle-targeting and synergistic effects are still rare due to low intelligence of their structures. Besides, the cell membrane, exocytosis, and diffusional hindrance by the extracellular matrix reduce drug uptake. Moreover, the up-regulation of heat shock protein and short singlet-oxygen lifetime in cancer cells hamper photo-ablation efficacy, especially in the mono-therapeutic model. To overcome those obstacles, we prepare an esterase-activated DM nano-prodrug, which is conjugated by diiodine-substituted fluorogenic malachite green derivative (MG-2I) and phototherapeutic agent DPP-OH via hydrolyzable ester linkage, having pH-responsiveness and genetically targetable activity for dual organelles-targeting to optimize photo-ablation efficacy. The DM nanoparticles (NPs) present improved pH-responsive photothermal/photodynamic property by the protonation of diethylaminophenyl units in acidic environment. More importantly, the MG-2I and DPP-OH moieties can be released from DM nano-prodrug through overexpressed esterase; then specifically target lysosomes and mitochondria in CT-26 Mito-FAP cells. Hence, near-infrared DM NPs can trigger parallel damage in dual-organelles with strong fluorescence and effective phototoxicity, thus inducing serious mitochondrial dysfunction and apoptotic death, showing excellent photo-ablation effect based on esterase-activated, pH-responsive, and genetically targetable activities.
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.
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