Brain cancer induces systemic immunosuppression through release of non-steroid soluble mediators

Author:

Ayasoufi Katayoun1,Pfaller Christian K23ORCID,Evgin Laura2,Khadka Roman H14,Tritz Zachariah P14,Goddery Emma N14,Fain Cori E14,Yokanovich Lila T14ORCID,Himes Benjamin T15,Jin Fang1,Zheng Jiaying24,Schuelke Matthew R1246,Hansen Michael J1,Tung Wesley1ORCID,Parney Ian F15ORCID,Pease Larry R1,Vile Richard G12,Johnson Aaron J127

Affiliation:

1. Mayo Clinic Department of Immunology, Rochester, MN, USA

2. Mayo Clinic Department of Molecular Medicine, Rochester, MN, USA

3. Paul-Ehrlich-Institute, Division of Veterinary Medicine, Langen, Germany

4. Mayo Clinic Graduate School of Biomedical Sciences, Rochester, MN, USA

5. Mayo Clinic Department of Neurologic Surgery, Rochester, MN, USA

6. Department of Immunology, Mayo Clinic Medical Scientist Training Program, Rochester, Minnesota, USA

7. Mayo Clinic Department of Neurology, Rochester, MN, USA

Abstract

Abstract Immunosuppression of unknown aetiology is a hallmark feature of glioblastoma and is characterized by decreased CD4 T-cell counts and downregulation of major histocompatibility complex class II expression on peripheral blood monocytes in patients. This immunosuppression is a critical barrier to the successful development of immunotherapies for glioblastoma. We recapitulated the immunosuppression observed in glioblastoma patients in the C57BL/6 mouse and investigated the aetiology of low CD4 T-cell counts. We determined that thymic involution was a hallmark feature of immunosuppression in three distinct models of brain cancer, including mice harbouring GL261 glioma, B16 melanoma, and in a spontaneous model of diffuse intrinsic pontine glioma. In addition to thymic involution, we determined that tumour growth in the brain induced significant splenic involution, reductions in peripheral T cells, reduced MHC II expression on blood leucocytes, and a modest increase in bone marrow resident CD4 T cells. Using parabiosis we report that thymic involution, declines in peripheral T-cell counts, and reduced major histocompatibility complex class II expression levels were mediated through circulating blood-derived factors. Conversely, T-cell sequestration in the bone marrow was not governed through circulating factors. Serum isolated from glioma-bearing mice potently inhibited proliferation and functions of T cells both in vitro and in vivo. Interestingly, the factor responsible for immunosuppression in serum is non-steroidal and of high molecular weight. Through further analysis of neurological disease models, we determined that the immunosuppression was not unique to cancer itself, but rather occurs in response to brain injury. Non-cancerous acute neurological insults also induced significant thymic involution and rendered serum immunosuppressive. Both thymic involution and serum-derived immunosuppression were reversible upon clearance of brain insults. These findings demonstrate that brain cancers cause multifaceted immunosuppression and pinpoint circulating factors as a target of intervention to restore immunity.

Funder

NINDS

NIH

Mayo Clinic Neuro-Oncology

Mayo Clinic internal

Department of Molecular Medicine

Center for MS and Autoimmune Neurology

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

Reference73 articles.

1. Progression of intracranial glioma disrupts thymic homeostasis and induces T-cell apoptosis in vivo;Andaloussi;Cancer Immunol Immunother,2008

2. Vegal control of lymphocyte release from rat thymus;Antonica;J Auton Nervous Syst,1994

3. Depletion-resistant CD4 T cells enhance thymopoiesis during lymphopenia;Ayasoufi;Am J Transplant,2017

4. Brain-Thymus communication is a novel immunosuppressive feature of neurological insults;Ayasoufi;J Immunol,2019

5. Nociceptor sensory neurons suppress neutrophil and gammadelta T cell responses in bacterial lung infections and lethal pneumonia;Baral;Nat Med,2018

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