VSSP abrogates murine ovarian tumor-associated myeloid cell-driven immune suppression and induces M1 polarization in tumor-associated macrophages from ovarian cancer patients

被引:0
作者
ANM Nazmul H. Khan
Tiffany R. Emmons
William J. Magner
Emad Alqassim
Kelly L. Singel
Jason Ricciuti
Kevin H. Eng
Kunle Odunsi
Thomas B. Tomasi
Kelvin Lee
Scott I. Abrams
Circe Mesa
Brahm H. Segal
机构
[1] Roswell Park Comprehensive Cancer Center,Department of Internal Medicine
[2] Roswell Park Comprehensive Cancer Center,Department of Immunology
[3] University at Buffalo,Department of Microbiology & Immunology, Jacobs School of Medicine and Biomedical Sciences
[4] Department of Cancer Prevention and Control,Department of Medicine, Roswell Park Comprehensive Cancer Center
[5] Roswell Park Comprehensive Cancer Center,David H. Koch Institute for Integrative Cancer Research
[6] Department of Gynecologic Oncology,Department of Pathology and Anatomical Sciences
[7] Roswell Park Comprehensive Cancer Center,Office of Evaluation, Performance, and Reporting; Division of Program Coordination, Planning, and Strategic Initiatives; Office of the Director
[8] Department of Biostatistics & Bioinformatics,undefined
[9] Roswell Park Comprehensive Cancer Center,undefined
[10] Department of Medicine,undefined
[11] University at Buffalo,undefined
[12] Center of Molecular Immunology,undefined
[13] Massachusetts Institute of Technology,undefined
[14] Jacobs School of Medicine and Biomedical Sciences,undefined
[15] University at Buffalo,undefined
[16] National Institutes of Health,undefined
[17] University of Chicago Medicine Comprehensive Cancer Center,undefined
[18] Indiana University Melvin and Bren Simon Comprehensive Cancer Center,undefined
[19] Innovative Immunotherapy Alliance,undefined
[20] S. A. Mariel,undefined
来源
Cancer Immunology, Immunotherapy | 2022年 / 71卷
关键词
Epithelial ovarian cancer; Tumor-associated macrophages; Granulocytes; Immunosuppression; Immunomodulatory drug; Dicer;
D O I
暂无
中图分类号
学科分类号
摘要
The ovarian tumor microenvironment (TME) is characterized by the accumulation of immunosuppressive tumor-associated macrophages (TAMs) and granulocytic cells. Very small size particles (VSSP), comprised of the ganglioside NAcGM3 and Neisseria meningitidis derived outer membrane vesicles, is being developed as a nanoparticulated modulator of innate immunity. Prior studies have shown that VSSP enhanced antigen-specific cytotoxic T cell responses and reduced the suppressive phenotype of splenic granulocytic cells in tumor-bearing mice. Here, we hypothesized that intraperitoneal VSSP would modify myeloid cell accumulation and phenotypes in the ovarian TME and abrogate suppressor function of TAMs and tumor-associated granulocytic cells. In the ID8 syngeneic model of epithelial ovarian cancer, VSSP reduced peritoneal TAMs and induced M1-like polarization in TAMs. In addition, VSSP stimulated peritoneal inflammation characterized by increased granulocytes and monocytes, including inflammatory monocytic cells. VSSP treatment resulted in peritoneal TAMs and granulocytic cells being less suppressive of ex vivo stimulated CD8+ T cell responses. VSSP alone and combined with anti-PD-1 modestly but significantly prolonged survival in tumor-bearing mice. In addition, ex vivo treatment with VSSP induced M1-like polarization in TAMs from patients with metastatic ovarian cancer and variably abrogated their suppressor phenotype. VSSP treatment also partially abrogated the induction of suppressor function in healthy donor neutrophils exposed to ascites supernatants from patients with ovarian cancer. Together, these results point to VSSP reprogramming myeloid responses resulting in abrogation of suppressive pathways and raise the potential for administration of VSSP into the TME to enhance anti-tumor immunity.
引用
收藏
页码:2355 / 2369
页数:14
相关论文
共 148 条
[1]  
Bowtell DD(2015)Rethinking ovarian cancer II: reducing mortality from high-grade serous ovarian cancer Nat Rev Cancer 15 668-679
[2]  
Bohm S(2003)Intratumoral T cells, recurrence, and survival in epithelial ovarian cancer N Engl J Med 348 203-213
[3]  
Ahmed AA(2005)Intraepithelial CD8+ tumor-infiltrating lymphocytes and a high CD8+/regulatory T cell ratio are associated with favorable prognosis in ovarian cancer Proc Natl Acad Sci USA 102 18538-18543
[4]  
Zhang L(2017)The prognostic value of tumor-infiltrating T lymphocytes in ovarian cancer Oncotarget 8 15621-15631
[5]  
Conejo-Garcia JR(2007)Relationship between B7–H4, regulatory T cells, and patient outcome in human ovarian carcinoma Cancer Res 67 8900-8905
[6]  
Katsaros D(2011)PGE(2)-induced CXCL12 production and CXCR4 expression controls the accumulation of human MDSCs in ovarian cancer environment Cancer Res 71 7463-7470
[7]  
Sato E(2015)Targeting myeloid cells in the tumor microenvironment enhances vaccine efficacy in murine epithelial ovarian cancer Oncotarget 6 11310-11326
[8]  
Olson SH(2017)Macrophage depletion through colony stimulating factor 1 receptor pathway blockade overcomes adaptive resistance to anti-VEGF therapy Oncotarget 8 96496-96505
[9]  
Ahn J(2018)Macrophages impede CD8 T cells from reaching tumor cells and limit the efficacy of anti-PD-1 treatment Proc Natl Acad Sci USA 115 E4041-E4050
[10]  
Li J(2017)Prognostic significance of tumor-associated macrophages in ovarian cancer: a meta-analysis Gynecol Oncol 147 181-187