4.7 Article

Nanosonosensitizer-Augmented Sonodynamic Therapy Combined with Checkpoint Blockade for Cancer Immunotherapy

Journal

INTERNATIONAL JOURNAL OF NANOMEDICINE
Volume 16, Issue -, Pages 1889-1899

Publisher

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S290796

Keywords

cancer immunotherapy; sonodynamic therapy; titanium dioxide nanoparticles; sonosensitizer; checkpoint blockade

Funding

  1. Medical and Health Key project of Xiamen [3502Z20191106]
  2. Joint research project of Science and Technology Bureau and Health Commission of Xiamen [3502Z20179046]
  3. Joint Fund Science and Technology Department and Health Commission of Fujian Province [2019J01562]
  4. President Fund of Xiamen University [20720190138]

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Sonodynamic therapy (SDT) and checkpoint blockade immunotherapy are promising treatments for solid cancers, but their efficacy can be limited. By combining SDT with immunotherapy and nanoparticles, such as TiO2, Chlorin e6, and CpG ODN, a multifunctional nanosonosensitizer was developed to enhance antitumor efficacy of anti-PD-L1 antibody. The nanosonosensitizers not only effectively inhibited tumor growth but also stimulated immune responses, leading to efficient primary tumor growth inhibition and inhibition of distant tumors by inducing a strong tumor-specific immune response. This innovative approach offers a promising strategy for treating malignant tumors.
Introduction: Sonodynamic therapy (SDT) has good targeting and non-invasive advantages in the treatment of solid cancers, and checkpoint blockade immunotherapy is also a promising treatment to cure cancer. However, their antitumor effects are not sufficient due to some inherent factors. Some studies that combined SDT with immunotherapy or nanoparticles have managed to enhance its efficiency to treat cancers. Methods: In this work, an effective therapeutic strategy that can potentiate the antitumor efficacy of anti-PD-L1 antibody (aPD-L1) is developed by the use of cascade immunosonodynamic therapy (immuno-SDT). Titanium dioxide (TiO2), a nano structured agent for SDT, sonosensitizer Chlorin e6 (Ce6), and immunological adjuvant CpG oligonucleotide (CpG ODN), are used to construct a multifunctional nanosonosensitizer (TiO2-Ce6-CpG). Then, we conducted in vitro and in vivo experiments to explore the antitumor effect of TiO2-Ce6-CpG under ultrasound (US) treatment. Results: The characterization tests showed that the nanosonosensitizers are polycrystalline structure with homogeneous sizes, resulting in a good drug loading efficiency. The innovative nanosonosensitizers (TiO2-Ce6-CpG) can not only effectively inhibit tumor growth but also stimulate the immune system to activate the adaptive immune responses, using the TiO2-Ce6 to augment SDT and the immune adjuvant CpG to enhance the immune response. After combined with the aPD-L1, the synergistic effect could not only efficiently inhibit the primary tumor growth but also lead to an inhibition of the non-irradiated pre-existing distant tumors by inducing a strong tumor-specific immune response. Conclusion: In this study, we present an effective strategy for tumor treatment by combining nanosonosensitizer-augmented SDT and aPD-L1 checkpoint blockade. This work provides a promising strategy and offers a new vision for treating malignant tumors.

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