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Updated: Dec 22, 2025

Isolation and Flow Cytometric Analysis of Glioma-infiltrating Peripheral Blood Mononuclear Cells
Published on: November 28, 2015
Blockade of CD73 delays glioblastoma growth by modulating the immune environment
J H Azambuja1, R S Schuh2, L R Michels2
1Programa de Pós-Graduação em Biociências, Universidade Federal de Ciências da Saúde de Porto Alegre (UFCSPA), Sarmento Leite, 245 - Prédio Principal - Room 304, Porto Alegre, RS, 90.050-170, Brazil.
Abstract:
Immunotherapy as an approach for cancer treatment is clinically promising. CD73, which is the enzyme that produces extracellular adenosine, favors cancer progression and protects the tumor from immune surveillance. While CD73 has recently been demonstrated to be a potential target for glioma treatment, its role in regulating the inflammatory tumor microenvironment has not yet been investigated. Thus, this study explores the immunotherapeutic value of the CD73 blockade in glioblastoma. The immuno-therapeutic value of the CD73 blockade was evaluated in vivo in immunocompetent pre-clinical glioblastoma model. As such, glioblastoma-bearing rats were nasally treated for 15 days with a siRNA CD73-loaded cationic-nanoemulsion (NE-siRNA CD73R). Apoptosis was determined by flow cytometry using Annexin-V staining and cell proliferation was analyzed by Ki67 expression by immunohistochemistry. The frequencies of the CD4+, CD8+, and CD4+CD25highCD39+ (Treg) T lymphocytes; CD11b+CD45high macrophages; CD11b+CD45low-microglia; and CD206+-M2-like phenotypes, along with expression levels of CD39 and CD73 in tumor and tumor-associated immune cells, were determined using flow cytometry, while inflammatory markers associated with tumor progression were evaluated using RT-qPCR. The CD73 blockade by NE-siRNA CD73 was found to induce tumor cell apoptosis. Meanwhile, the population of Tregs, microglia, and macrophages was significantly reduced in the tumor microenvironment, though IL-6, CCL17, and CCL22 increased. The treatment selectively decreased CD73 expression in the GB cells as well as in the tumor-associated-macrophages/microglia. This study indicates that CD73 knockdown using a nanotechnological approach to perform nasal delivery of siRNA-CD73 to CNS can potentially regulate the glioblastoma immune microenvironment and delay tumor growth by inducing apoptosis.
Insights
Blocking CD73 (an enzyme aiding cancer progression) via nasal siRNA delivery in glioblastoma models induced tumor cell death. This immunotherapy approach reduced suppressive immune cells and delayed tumor growth.
Area of Science:
- Immunology
- Oncology
- Nanotechnology
Background:
- Immunotherapy shows promise for cancer treatment.
- CD73, an enzyme producing extracellular adenosine, promotes tumor progression and immune evasion.
- The role of CD73 in glioblastoma's inflammatory tumor microenvironment is largely uninvestigated.
Purpose of the Study:
- To explore the immunotherapeutic potential of CD73 blockade in glioblastoma.
- To investigate CD73's role in regulating the glioblastoma tumor microenvironment.
Main Methods:
- Utilized an immunocompetent pre-clinical glioblastoma rat model.
- Administered siRNA CD73-loaded cationic-nanoemulsion (NE-siRNA CD73) via nasal delivery for 15 days.
- Assessed apoptosis (Annexin-V), proliferation (Ki67), immune cell populations (flow cytometry), and inflammatory markers (RT-qPCR).
Main Results:
- CD73 blockade induced glioblastoma cell apoptosis and decreased tumor cell proliferation.
- Treatment significantly reduced regulatory T cells (Tregs), microglia, and macrophages within the tumor microenvironment.
- NE-siRNA CD73 selectively decreased CD73 expression in glioblastoma cells and tumor-associated myeloid cells.
Conclusions:
- CD73 knockdown via nasal nano-delivery of siRNA-CD73 holds potential for glioblastoma immunotherapy.
- This approach can modulate the glioblastoma immune microenvironment.
- The CD73 blockade delays tumor growth by inducing apoptosis and altering immune cell populations.

