4.8 Article

Biomimetic nanoparticles directly remodel immunosuppressive microenvironment for boosting glioblastoma immunotherapy

Journal

BIOACTIVE MATERIALS
Volume 16, Issue -, Pages 418-432

Publisher

KEAI PUBLISHING LTD
DOI: 10.1016/j.bioactmat.2021.12.029

Keywords

Glioblastoma; Immunotherapy; Ultrasmall copper selenide nanoparticles; Tumor immune microenvironment; Immune checkpoint blockade therapy

Funding

  1. Jiangsu Provincial Key Research Development Program [BE2019660]
  2. National Natural Science Foundation of China [81971671]
  3. National Key Research and Development Program of China [2018YFA0208800]
  4. Suzhou Municipal Science and Technology Bureau [N312861019]
  5. China Postdoctoral Science Foundation [2020M671586, 2020M681720]
  6. Jiangsu Provincial Key Laboratory of Radiation Medicine and Protection, the Priority Academic Development Program of Jiangsu Higher Education Institutions (PAPD)

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This study demonstrates the significant improvement of immunotherapy efficacy for glioblastoma (GBM) by modulating the tumor immunosuppressive microenvironment (TIME) through novel all-in-one biomimetic nanoparticles. By remodeling the TIME, these nanoparticles activate immune responses, decrease tumor infiltration, and reduce the expression of PD-L1 on tumor cells. Modulating the TIME shows potential as a significant strategy to enhance immunotherapy for GBM and other cold tumors.
Glioblastoma (GBM), as a very aggressive cancer of central nervous system, is very challenging to completely cure by the conventional combination of surgical resection with radiotherapy and chemotherapy. The success of emerging immunotherapy in hot tumors has attracted considerable interest for the treatment of GBM, but the unique tumor immunosuppressive microenvironment (TIME) of GBM leads to the failure of immunotherapy. Here, we show the significant improvement of the immunotherapy efficacy of GBM by modulating the TIME through novel all-in-one biomimetic nanoparticles (i.e. CS-I/J@CM NPs). The nanoparticles consist of utrasmall Cu2-xSe nanoparticles (NPs) with outstanding intrinsic properties (e.g., photo-responsive Fenton-like catalytic property for inducing immunogenic cell death (ICD) and alleviating the hypoxia of tumor), indoximod (IND, an inhibitor of indoleamine-2,3-dioxygenease in tumor), JQ1 (an inhibitor for reducing the expression of PD-L1 by tumor cells), and tumor cell membrane for improving the targeting capability and accumulation of nanoparticles in tumor. We reveal that these smart CS-I/J@CM NPs could drastically activate the immune responses through remodeling TIME of GBM by multiple functions. They could (1) increase M1-phenotype macrophages at tumor site by promoting the polarization of tumor-associated macrophages through the reactive oxygen species (ROS) and oxygen generated from the Fenton-like reaction between nanoparticles and H2O2 within tumor under NIR II irradiation; (2) decrease the infiltration of Tregs cells at tumor site through the release of IND; (3) decrease the expression of PD-L1 on tumor cells through JQ1. The notable increments of anti-tumor CD8(+)T cells in the tumor and memory T cells (T-EM) in the spleen show excellent therapy efficacy and effectively prevent the recurrence of GBM after modulation of the TIME. This work demonstrates the modulation of TIME could be a significant strategy to improve the immunotherapy of GBM and other cold tumors.

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