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Coculture Assays to Study Macrophage and Microglia Stimulation of Glioblastoma Invasion
Published on: October 20, 2016
Intratumoral administration of the antisecretory peptide AF16 cures murine gliomas and modulates macrophage functions
Jan Kopecky1, Julio Enríquez Pérez2, Håkan Eriksson3
1Glioma Immunotherapy Group, Division of Neurosurgery, Department of Clinical Sciences Lund, Faculty of Medicine, Lund University, Barngatan 4, 221 85, Lund, Sweden. jan.kopecky@med.lu.se.
Abstract:
Glioblastoma has remained the deadliest primary brain tumor while its current therapy offers only modest survival prolongation. Immunotherapy has failed to record notable benefits in routine glioblastoma treatment. Conventionally, immunotherapy relies on T cells as tumor-killing agents; however, T cells are outnumbered by macrophages in glioblastoma microenvironment. In this study, we explore the effect of AF16, a peptide from the endogenous antisecretory factor protein, on the survival of glioma-bearing mice, the tumor size, and characteristics of the tumor microenvironment with specific focus on macrophages. We elucidate the effect of AF16 on the inflammation-related secretome of human and murine macrophages, as well as human glioblastoma cells. In our results, AF16 alone and in combination with temozolomide leads to cure in immunocompetent mice with orthotopic GL261 gliomas, as well as prolonged survival in immunocompromised mice. We recorded decreased tumor size and changes in infiltration of macrophages and T cells in the murine glioma microenvironment. Human and murine macrophages increased expression of proinflammatory markers in response to AF16 treatment and the same effect was seen in human primary glioblastoma cells. In summary, we present AF16 as an immunomodulatory factor stimulating pro-inflammatory macrophages with a potential to be implemented in glioblastoma treatment protocols.
Insights
AF16, a peptide from antisecretory factor protein, shows promise in treating glioblastoma. It activates pro-inflammatory macrophages, leading to tumor reduction and improved survival in mice, offering a new glioblastoma treatment strategy.
Area of Science:
- Neuro-oncology
- Immunology
- Pharmacology
Background:
- Glioblastoma is a lethal brain tumor with limited treatment options.
- Current immunotherapies are ineffective due to the glioblastoma microenvironment's macrophage dominance over T cells.
Purpose of the Study:
- To investigate the therapeutic potential of AF16, a peptide from the antisecretory factor protein, in glioblastoma.
- To analyze AF16's impact on glioma-bearing mice survival, tumor size, and the tumor microenvironment, focusing on macrophages.
Main Methods:
- Assessed AF16's effect on survival and tumor characteristics in glioma-bearing mice.
- Analyzed AF16's impact on the inflammation-related secretome of human and murine macrophages and glioblastoma cells.
- Examined changes in macrophage and T cell infiltration in the murine glioma microenvironment.
Main Results:
- AF16 alone and with temozolomide cured immunocompetent mice and prolonged survival in immunocompromised mice.
- AF16 treatment reduced tumor size and altered immune cell infiltration in the glioma microenvironment.
- AF16 treatment induced pro-inflammatory markers in macrophages and glioblastoma cells.
Conclusions:
- AF16 demonstrates immunomodulatory effects, stimulating pro-inflammatory macrophages.
- AF16 shows potential as a novel therapeutic agent for glioblastoma treatment protocols.

