Biomimetic Nanoreactor for Cancer Eradication via Win-Win Cooperation between Starvation/Photo/Chemodynamic Therapies.
Ting-Yi CiouChiranjeevi KorupalliTzung-Han ChouChien-Hua HsiaoGirum GetachewSintia BelaJia-Yaw ChangPublished in: ACS applied bio materials (2021)
Combining phototherapy with the cancer cell metabolic pathway altering strategies, that is, glucose starvation, would be a promising approach to accomplish high curative efficiency of cancer treatment. Accordingly, herein, we sought to construct a multifunctional biomimetic hybrid nanoreactor by fastening nanozyme AuNPs (glucose oxidase activity) and PtNPs (catalase and peroxidase activity) and photosensitizer Indocyanine green (ICG) onto the polydopamine (PDA) surface (ICG/Au/Pt@PDA-PEG) to attain superior cancer cell killing efficiency though win-win cooperation between starvation therapy, phototherapy, and chemodynamic therapy. The as-synthesized ICG/Au/Pt@PDA-PEG has shown excellent light-to-heat conversion (photothermal therapy) and reactive oxygen species generation (photodynamic therapy) properties upon laser irradiation and also red-shifted ICG absorption (from 780 to 800 nm) and enhanced its photostability. Further, the ICG/Au/Pt@PDA-PEG NRs have reduced the solution glucose concentration and slightly increased solution oxygen levels and also enhanced 3,3',5,5'-tetramethylbenzidine oxidation in the presence of glucose through a cascade of enzymatic activities. The in vitro results demonstrated that the ICG/Au/Pt@PDA-PEG NRs have superior therapeutic efficacy against cancer cells via the cooperative effect between starvation/photo/chemodynamic therapies and not much toxicity to normal cells.
Keyphrases
- fluorescence imaging
- photodynamic therapy
- drug delivery
- sensitive detection
- blood glucose
- reduced graphene oxide
- reactive oxygen species
- hydrogen peroxide
- induced apoptosis
- visible light
- cancer therapy
- stem cells
- cell cycle arrest
- papillary thyroid
- cell death
- squamous cell carcinoma
- heat stress
- rectal cancer
- high resolution
- nitric oxide
- cell proliferation
- helicobacter pylori infection
- electron transfer
- endoplasmic reticulum stress
- helicobacter pylori
- bone marrow
- gold nanoparticles
- weight loss
- tissue engineering
- pi k akt
- quantum dots