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Updated: Jul 7, 2025

In Vivo Immunogenicity Screening of Tumor-Derived Extracellular Vesicles by Flow Cytometry of Splenic T Cells
Published on: September 23, 2021
Tumor Microenvironment-Specific Driven Nanoagents for Synergistic Mitochondria Damage-Related Immunogenic Cell Death
Yanrong Qian1,2, Weilin Chen2, Man Wang2
1Shenzhen Research Institute, Shandong University, Shenzhen, 518057, P. R. China.
Abstract:
Despite significant breakthroughs in immunotherapy, the limitations of inadequate immune stimulation and stubborn immune resistance continue to present opportunities and challenges. Therefore, a two-pronged approach, encompassing the activation of immunogenic cell death (ICD) and blocking the indoleamine 2,3-dioxygenase (IDO)-mediated pathway, is devised to elicit systemic anti-tumor immunity and alleviate immunosuppression. Herein, a tumor microenvironment (TME)-specific driven nanoagent is composed of a tetrasulfide bond-bridged mesoporous silica layer (MON) coated up-conversion nanoparticles as a nano-carrier, combines Fe2+, curcumin, and indoximod for operating chemodynamic therapy/chemotherapy/immunotherapy. The consumption of glutathione (GSH) caused by MON degradation, the Fenton reaction of Fe2+, and curcumin triggering mitochondrial damage collectively exacerbate the oxidative stress, leading to a violent immunoreaction and reversal of the immunosuppressive TME through a combination of IDO-inhibitors. Meanwhile, upconversion luminescence (UCL) imaging serves as a significant guiding tool for drug delivery and the treatment of nanoagents. In vivo and in vitro experiment results demonstrate that the nanosystem not only effectively inhibits the growth of primary tumors but also induces immune priming and memory effects to reject re-challenged tumors. The strategy as a complementary approach displays great potential for future immunotherapy along with other multimodal treatment modes.
Insights
This study introduces a novel nanoagent that activates anti-tumor immunity by inducing immunogenic cell death and blocking immunosuppression. This dual approach shows promise for enhancing cancer immunotherapy and overcoming treatment resistance.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Immunotherapy
Background:
- Immunotherapy faces challenges due to insufficient immune stimulation and resistance.
- Activating immunogenic cell death (ICD) and blocking the indoleamine 2,3-dioxygenase (IDO) pathway are key strategies to overcome these limitations.
Purpose of the Study:
- To develop a tumor microenvironment (TME)-specific nanoagent for combined chemodynamic therapy, chemotherapy, and immunotherapy.
- To elicit systemic anti-tumor immunity and reverse the immunosuppressive TME.
Main Methods:
- A nanoagent composed of up-conversion nanoparticles coated with a tetrasulfide bond-bridged mesoporous silica layer (MON), loaded with Fe2+, curcumin, and indoximod.
- Utilizing MON degradation, Fenton reaction, and curcumin to induce oxidative stress and activate ICD.
- Employing IDO-inhibitors to block the immunosuppressive pathway.
- Employing upconversion luminescence (UCL) imaging for guiding treatment.
Main Results:
- The nanoagent effectively inhibited primary tumor growth in vivo and in vitro.
- The treatment induced immune priming and memory effects, leading to rejection of re-challenged tumors.
- The strategy reversed the immunosuppressive TME by exacerbating oxidative stress and blocking the IDO pathway.
Conclusions:
- The developed nanosystem demonstrates a potent dual approach to activate anti-tumor immunity.
- This strategy holds significant potential as a complementary therapy for enhancing immunotherapy and other multimodal treatment modes.
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