4.7 Article

Proteomic and immunologic analyses of brain tumor exosomes

期刊

FASEB JOURNAL
卷 23, 期 5, 页码 1541-1557

出版社

WILEY
DOI: 10.1096/fj.08-122184

关键词

microvesicles; heat shock proteins; antibody; T cells; EGFRvIII; patient sera

资金

  1. Duke University Brain Cancer Specialized Programs of Research Excellence [5 P50 CA108786-02]
  2. SPORE Career Development Award
  3. National Institute of Neurological Disorders and Stroke SRC [5 P50 20023-21]
  4. Pediatric Brain Tumor Foundation
  5. Brian Cless Research Foundation
  6. Southeast Brain Tumor Foundation

向作者/读者索取更多资源

Brain tumors are horrific diseases with almost universally fatal outcomes; new therapeutics are desperately needed and will come from improved understandings of glioma biology. Exosomes are endosomally derived 30-100 nm membranous vesicles released from many cell types into the extracellular milieu; surprisingly, exosomes are virtually unstudied in neuro-oncology. These microvesicles were used as vaccines in other tumor settings, but their immunological significance is unevaluated in brain tumors. Our purpose here is to report the initial biochemical, proteomic, and immunological studies on murine brain tumor exosomes, following known procedures to isolate exosomes. Our findings show that these vesicles have biophysical characteristics and proteomic profiles similar to exosomes from other cell types but that brain tumor exosomes have unique features (e. g., very basic isoelectric points, expressing the mutated tumor antigen EGFRvIII and the putatively immunosuppressive cytokine TGF-beta). Administration of such exosomes into syngeneic animals produced both humoral and cellular immune responses in immunized hosts capable of rejecting subsequent tumor challenges but failed to prolong survival in established orthotopic models. Control animals received saline or cell lysate vaccines and showed no antitumor responses. Exosomes and microvesicles isolated from sera of patients with brain tumors also possess EGFR, EGFRvIII, and TGF-beta. We conclude that exosomes released from brain tumor cells are biochemically/biophysically like other exosomes and have immune-modulating properties. They can escape the blood-brain barrier, with potential systemic and distal signaling and immune consequences.-Graner, M. W., Alzate, O., Dechkovskaia, A. M., Keene, J. D., Sampson, J. H., Mitchell, D. A., Bigner, D. D. Proteomic and immunologic analyses of brain tumor exosomes. FASEB J. 23, 1541-1557 (2009)

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