Myeloid activation clears ascites and reveals IL27-dependent regression of metastatic ovarian cancer

Brennah Murphy & Nan Zhang et al. · 2024-11-21

Patients with metastatic ovarian cancer (OvCa) have a 5-year survival rate of <30% due to the persisting dissemination of chemoresistant cells in the peritoneal fluid and the immunosuppressive microenvironment in the peritoneal cavity. Here, we report that intraperitoneal administration of β-glucan and IFNγ (BI) induced robust tumor regression in clinically relevant models of metastatic OvCa. BI induced tumor regression by controlling fluid tumor burden and activating localized antitumor immunity. β-glucan alone cleared ascites and eliminated fluid tumor cells by inducing intraperitoneal clotting in the fluid and Dectin-1-Syk–dependent NETosis in the omentum. In omentum tumors, BI expanded a novel subset of immunostimulatory IL27+ macrophages and neutralizing IL27 impaired BI efficacy in vivo. Moreover, BI directly induced IL27 secretion in macrophages where single agent treatment did not. Finally, BI extended mouse survival in a chemoresistant model and significantly improved chemotherapy response in a chemo-sensitive model. In summary, we propose a new therapeutic strategy for the treatment of metastatic OvCa.

Funding
Macrophage metabolism in diabetes and tuberculosis comorbidityW.W. Smith Charitable Trust Grant C2205Characterizing the sources, mechanisms, and translational relevance of microbial TMAO in driving anti-tumor immunity in pancreatic cancer.Characterizing the sources, mechanisms, and translational relevance of microbial TMAO in driving anti-tumor immunity in pancreatic cancer.Integrative Approach to Comprehensive Analysis of High Throughput Data on a Cancer Center LevelThe role of gut microbe-derived choline metabolites in driving the pro-inflammatory macrophage phenotype and restricting pancreatic cancerMetabolic and molecular regulation of myeloid cell functions in brain cancerTraining Program in Basic Cancer ResearchMetabolic and molecular regulation of myeloid cell functions in brain cancerJapan Society for the Promotion of Science Grant 202360517Animal Shared ResourcePurchase of a SARRP 200 Platform for IrradiationProject 3: Investigating new treatment approaches based on DNA repair vulnerability in ARID1A mutated type I ovarian cancerProject 3: Investigating new treatment approaches based on DNA repair vulnerability in ARID1A mutated type I ovarian cancerHost defense mechanisms of resident peritoneal macrophagesDepartment of Defense Grant HT94252410206Host defense mechanisms of resident peritoneal macrophagesProject 3: Investigating new treatment approaches based on DNA repair vulnerability in ARID1A mutated type I ovarian cancerTraining Program in Basic Cancer ResearchAnimal Shared ResourceMacrophage metabolism in diabetes and tuberculosis comorbidityMetabolic and molecular regulation of myeloid cell functions in brain cancerCharacterizing the sources, mechanisms, and translational relevance of microbial TMAO in driving anti-tumor immunity in pancreatic cancer.The role of gut microbe-derived choline metabolites in driving the pro-inflammatory macrophage phenotype and restricting pancreatic cancer

NIAID NIH HHS

R21 AI175738

NCI NIH HHS

1R37CA280869

NCI NIH HHS

R37 CA280869

NCI NIH HHS

R50 CA211199

NCI NIH HHS

R21 CA259240

NINDS NIH HHS

1R01NS131912

NCI NIH HHS

T32 CA009171

NINDS NIH HHS

R01 NS131912

NCI NIH HHS

P30 CA010815

NIH HHS

S10 OD030244

NCI NIH HHS

P50 CA228991

NIH HHS

P50CA228991

NIAID NIH HHS

K99 AI151198

National Institute of Allergy and Infectious Diseases

K99AI151198

National Institutes of Health

P50CA228991

National Institutes of Health

T32 CA009171

National Institutes of Health

P30CA010815

National Institute of Allergy and Infectious Diseases

5R21AI175738

National Institute of Neurological Disorders and Stroke

1R01NS131912

National Cancer Institute

1R37CA280869

National Cancer Institute

1R21CA259240