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1.
J Immunother Cancer ; 11(11)2023 11.
Article in English | MEDLINE | ID: mdl-37918917

ABSTRACT

BACKGROUND: Peritoneal carcinomatosis is an advanced stage of cancer in which the disease has spread to the peritoneal cavity. In order to restore antitumor immunity subverted by tumor cells in this location, we evaluated intraperitoneal administrations of modified vaccinia virus Ankara (MVA) engineered to express single-chain interleukin 12 (scIL-12) to increase antitumor immune responses. METHODS: MVA encoding scIL-12 (MVA.scIL-12) was evaluated against peritoneal carcinomatosis models based on intraperitoneal engraftment of tumor cells. CD8-mediated immune responses, elucidated antitumor efficacy, and safety were evaluated following intravenous, intratumoral, or intraperitoneal administration of the viral vector. The immune response was measured by ELISpot (enzyme-linked immunosorbent spot), RNA sequencing, flow cytometry, intravital microscopy, and depletion of lymphocyte subsets with monoclonal antibodies. Safety was assessed by body-weight follow-up and blood testing. Tissue tropism on intravenous or intraperitoneal administration was assessed by bioluminescence analysis using a reporter MVA encoding luciferase. RESULTS: Intraperitoneal or locoregional administration, but not other routes of administration, resulted in a potent immune response characterized by increased levels of tumor-specific CD8+ T lymphocytes with the ability to produce both interferon-γ and tumor necrosis factor-α. The antitumor immune response was detectable not only in the peritoneal cavity but also systemically. As a result of intraperitoneal treatment, a single administration of MVA.scIL-12 encoding scIL-12 completely eradicated MC38 tumors implanted in the peritoneal cavity and also protected cured mice from subsequent subcutaneous rechallenges. Bioluminescence imaging using an MVA encoding luciferase revealed that intraperitoneal administration targets transgene to the omentum. The omentum is considered a key tissue in immune protection of the peritoneal cavity. The safety profile of intraperitoneal administration was also better than that following intravenous administration since no weight loss or hematological toxicity was observed when the vector was locally delivered into the peritoneal cavity. CONCLUSION: Intraperitoneal administration of MVA vectors encoding scIL-12 targets the omentum, which is the tissue where peritoneal carcinomatosis usually begins. MVA.scIL-12 induces a potent tumor-specific immune response that often leads to the eradication of experimental tumors disseminated to the peritoneal cavity.


Subject(s)
Interleukin-12 , Peritoneal Neoplasms , Animals , Mice , Interleukin-12/genetics , Omentum , Vaccinia virus/genetics , Luciferases
2.
Int Rev Cell Mol Biol ; 379: 87-142, 2023.
Article in English | MEDLINE | ID: mdl-37541728

ABSTRACT

Cancer immunotherapy relies on unleashing the patient´s immune system against tumor cells. Cancer vaccines aim to stimulate both the innate and adaptive arms of immunity to achieve durable clinical responses. Some roadblocks for a successful cancer vaccine in the clinic include the tumor antigen of choice, the adjuvants employed to strengthen antitumor-specific immune responses, and the risks associated with enhancing immune-related adverse effects in patients. Modified vaccinia Ankara (MVA) belongs to the family of poxviruses and is a versatile vaccine platform that combines several attributes crucial for cancer therapy. First, MVA is an excellent inducer of innate immune responses leading to type I interferon secretion and induction of T helper cell type 1 (Th1) immune responses. Second, it elicits robust and durable humoral and cellular immunity against vector-encoded heterologous antigens. Third, MVA has enormous genomic flexibility, which allows for the expression of multiple antigenic and costimulatory entities. And fourth, its replication deficit in human cells ensures a excellent safety profile. In this review, we summarize the current understanding of how MVA induces innate and adaptive immune responses. Furthermore, we will give an overview of the tumor-associated antigens and immunomodulatory molecules that have been used to armor MVA and describe their clinical use. Finally, the route of MVA immunization and its impact on therapeutic efficacy depending on the immunomodulatory molecules expressed will be discussed.


Subject(s)
Neoplasms , Vaccinia , Humans , Neoplasms/therapy , Vaccinia virus/genetics , Vaccination , Immunity, Innate
3.
Sci Rep ; 13(1): 5162, 2023 03 30.
Article in English | MEDLINE | ID: mdl-36997583

ABSTRACT

The induction of antiviral innate immunity by systemic immunization with live virus can be employed to positively impact the response to therapeutic vaccination. We previously demonstrated that systemic immunization with a non-replicating MVA encoding CD40 ligand (CD40L) enhances innate immune cell activation and function, and triggers potent antitumor CD8+ T cell responses in different murine tumor models. Antitumor efficacy was increased when combined with tumor targeting antibodies. Here we report the development of TAEK-VAC-HerBy (TVH), a first-in-class human tumor antibody enhanced killing (TAEK) vaccine based on the non-replicating MVA-BN viral vector. It encodes the membrane bound form of human CD40L, HER2 and the transcription factor Brachyury. TVH is designed for therapeutic use in HER2- or Brachyury-expressing cancer patients in combination with tumor targeting antibodies. To preclude possible oncogenic activities in infected cells and to prevent binding of vaccine-encoded HER2 by monoclonal antibodies trastuzumab and pertuzumab, genetic modifications of HER2 were introduced in the vaccine. Brachyury was genetically modified to prevent nuclear localization of the protein thereby inhibiting its transcriptional activity. CD40L encoded in TVH enhanced human leukocyte activation and cytokine secretion in vitro. Lastly, TVH intravenous administration to non-human primates was proven immunogenic and safe in a repeat-dose toxicity study. Nonclinical data presented here highlight TVH as a first-in-class immunotherapeutic vaccine platform currently under clinical investigation.


Subject(s)
Cancer Vaccines , Neoplasms , Humans , Mice , Animals , CD40 Ligand/genetics , Neoplasms/drug therapy , CD8-Positive T-Lymphocytes , Antibodies, Neoplasm , Vaccinia virus/genetics
4.
Oncoimmunology ; 11(1): 2098657, 2022.
Article in English | MEDLINE | ID: mdl-35859732

ABSTRACT

Recombinant-modified vaccinia virus Ankara (rMVA) is known to elicit potent antitumor immune responses in preclinical models due to its inherent ability to activate the innate immune system and the activation of adaptive responses mediated by the expression of tumor antigens and costimulus-providing molecules, such as CD40L and CD137L. Here, we evaluated different rMVA vectors in preclinical peritoneal carcinomatosis models (ID8.OVA-Vegf/GFP and MC38). We compared rMVA vectors expressing a tumor antigen (OVA or gp70) either alone or co-expressed with CD40L or/and CD137L. In tumor-free mice, the vector coding for the triple combination was only slightly superior, whereas, in tumor-bearing animals, we observed a synergistic induction of T lymphocytes specific against vector-encoded and non-encoded tumor-associated antigens. The enhanced activation of the immune response was associated with improved survival in mice with peritoneal carcinomatosis treated with a rMVA vector encoding both CD40L and CD137L. Thus, the triple transgene combination in vaccinia viral vectors represents a promising strategy for the treatment of peritoneal carcinomatosis.


Subject(s)
4-1BB Ligand/metabolism , Peritoneal Neoplasms , Vaccinia , Animals , CD40 Ligand/genetics , Immunity , Mice , Peritoneal Neoplasms/therapy , Vaccinia virus/genetics
5.
Nat Commun ; 12(1): 7296, 2021 12 15.
Article in English | MEDLINE | ID: mdl-34911975

ABSTRACT

CD137 (4-1BB; TNFSR9) is an activation-induced surface receptor that through costimulation effects provide antigen-primed T cells with augmented survival, proliferation and effector functions as well as metabolic advantages. These immunobiological mechanisms are being utilised for cancer immunotherapy with agonist CD137-binding and crosslinking-inducing agents that elicit CD137 intracellular signaling. In this study, side-by-side comparisons show that provision of CD137 costimulation in-cis with regard to the TCR-CD3-ligating cell is superior to that provided in-trans in terms of T cell activation, proliferation, survival, cytokine secretion and mitochondrial fitness in mouse and human. Cis ligation of CD137 relative to the TCR-CD3 complex results in more intense canonical and non-canonical NF-κB signaling and provides a more robust induction of cell cycle and DNA damage repair gene expression programs. Here we report that the superiority of cis versus trans CD137-costimulation is readily observed in vivo and is relevant for understanding the immunotherapeutic effects of CAR T cells and CD137 agonistic therapies currently undergoing clinical trials, which may provide costimulation either in cis or in trans.


Subject(s)
CD3 Complex/immunology , CD8-Positive T-Lymphocytes/immunology , Receptor-CD3 Complex, Antigen, T-Cell/immunology , Tumor Necrosis Factor Receptor Superfamily, Member 9/immunology , Animals , CD3 Complex/genetics , Cell Proliferation , Cytokines/genetics , Cytokines/immunology , Humans , Lymphocyte Activation , Mice , Mice, Inbred C57BL , Receptor-CD3 Complex, Antigen, T-Cell/genetics , Tumor Necrosis Factor Receptor Superfamily, Member 9/genetics
6.
J Immunother Cancer ; 9(7)2021 07.
Article in English | MEDLINE | ID: mdl-34321273

ABSTRACT

BACKGROUND: Modified vaccinia virus Ankara (MVA) are genetically engineered non-replicating viral vectors. Intratumoral administration of MVA induces a cyclic GMP-AMP synthase-mediated type I interferon (IFN) response and the production of high levels of the transgenes engineered into the viral genome such as tumor antigens to construct cancer vaccines. Although type I IFNs are essential for establishing CD8-mediated antitumor responses, this cytokine family may also give rise to immunosuppressive mechanisms. METHODS: In vitro assays were performed to evaluate the activity of simvastatin and atorvastatin on type I IFN signaling and on antigen presentation. Surface levels of IFN α/ß receptor 1, endocytosis of bovine serum albumin-fluorescein 5 (6)-isothiocyanate, signal transducer and activator of transcription (STAT) phosphorylation, and real-time PCR of IFN-stimulated genes were assessed in the murine fibroblast cell line L929. In vivo experiments were performed to characterize the effect of simvastatin on the MVA-induced innate immune response and on the antitumor effect of MVA-based antitumor vaccines in B16 melanoma expressing ovalbumin (OVA) and Lewis lung carcinoma (LLC)-OVA tumor models. RNAseq analysis, depleting monoclonal antibodies, and flow cytometry were used to evaluate the MVA-mediated immune response. RESULTS: In this work, we identified commonly prescribed statins as potent IFNα pharmacological inhibitors due to their ability to reduce surface expression levels of IFN-α/ß receptor 1 and to reduce clathrin-mediated endocytosis. Simvastatin and atorvastatin efficiently abrogated for 8 hours the transcriptomic response to IFNα and enhanced the number of dendritic cells presenting an OVA-derived peptide bound to major histocompatibility complex (MHC) class I. In vivo, intraperitoneal or intramuscular administration of simvastatin reduced the inflammatory response mediated by peritumoral administration of MVA and enhanced the antitumor activity of MVA encoding tumor-associated antigens. The synergistic antitumor effects critically depend on CD8+ cells, whereas they were markedly improved by depletion of CD4+ lymphocytes, T regulatory cells, or NK cells. Either MVA-OVA alone or combined with simvastatin augmented B cells, CD4+ lymphocytes, CD8+ lymphocytes, and tumor-specific CD8+ in the tumor-draining lymph nodes. However, only the treatment combination increased the numbers of these lymphocyte populations in the tumor microenvironment and in the spleen. CONCLUSION: In conclusion, blockade of IFNα functions by simvastatin markedly enhances lymphocyte infiltration and the antitumor activity of MVA, prompting a feasible drug repurposing.


Subject(s)
Cancer Vaccines/therapeutic use , Genetic Vectors/therapeutic use , Hydroxymethylglutaryl-CoA Reductase Inhibitors/therapeutic use , Interferon Type I/antagonists & inhibitors , Vaccinia virus/drug effects , Animals , Cancer Vaccines/pharmacology , Disease Models, Animal , Female , Genetic Vectors/pharmacology , Humans , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Mice
7.
Cancers (Basel) ; 13(5)2021 Feb 25.
Article in English | MEDLINE | ID: mdl-33669017

ABSTRACT

Peritoneal carcinomatosis of primary tumors originating in gastrointestinal (e.g., colorectal cancer, gastric cancer) or gynecologic (e.g., ovarian cancer) malignancies is a widespread type of tumor dissemination in the peritoneal cavity for which few therapeutic options are available. Therefore, reliable preclinical models are crucial for research and development of efficacious treatments for this condition. To date, a number of animal models have attempted to reproduce as accurately as possible the complexity of the tumor microenvironment of human peritoneal carcinomatosis. These include: Syngeneic tumor cell lines, human xenografts, patient-derived xenografts, genetically induced tumors, and 3D scaffold biomimetics. Each experimental model has its own strengths and limitations, all of which can influence the subsequent translational results concerning anticancer and immunomodulatory drugs under exploration. This review highlights the current status of peritoneal carcinomatosis mouse models for preclinical development of anticancer drugs or immunotherapeutic agents.

8.
J Immunother Cancer ; 9(2)2021 02.
Article in English | MEDLINE | ID: mdl-33579736

ABSTRACT

Background Human cancers are extraordinarily heterogeneous in terms of tumor antigen expression, immune infiltration and composition. A common feature, however, is the host's inability to mount potent immune responses that prevent tumor growth effectively. Often, naturally primed CD8+ T cells against solid tumors lack adequate stimulation and efficient tumor tissue penetration due to an immune hostile tumor microenvironment.Methods To address these shortcomings, we cloned tumor-associated antigens (TAA) and the immune-stimulatory ligand 4-1BBL into the genome of modified vaccinia Ankara (MVA) for intratumoral virotherapy.Results Local treatment with MVA-TAA-4-1BBL resulted in control of established tumors. Intratumoral injection of MVA localized mainly to the tumor with minimal leakage to the tumor-draining lymph node. In situ infection by MVA-TAA-4-1BBL triggered profound changes in the tumor microenvironment, including the induction of multiple proinflammatory molecules and immunogenic cell death. These changes led to the reactivation and expansion of antigen-experienced, tumor-specific cytotoxic CD8+ T cells that were essential for the therapeutic antitumor effect. Strikingly, we report the induction of a systemic antitumor immune response including tumor antigen spread by local MVA-TAA-4-1BBL treatment which controlled tumor growth at distant, untreated lesions and protected against local and systemic tumor rechallenge. In all cases, 4-1BBL adjuvanted MVA was superior to MVA.Conclusion Intratumoral 4-1BBL-armed MVA immunotherapy induced a profound reactivation and expansion of potent tumor-specific CD8+ T cells as well as favorable proinflammatory changes in the tumor microenvironment, leading to elimination of tumors and protective immunological memory.


Subject(s)
4-1BB Ligand/genetics , Antigens, Neoplasm/genetics , Melanoma, Experimental/therapy , Oncolytic Virotherapy/methods , Vaccinia virus/physiology , 4-1BB Ligand/metabolism , Animals , Antigens, Neoplasm/metabolism , CD8-Positive T-Lymphocytes/metabolism , Cell Line, Tumor , Cloning, Molecular , Combined Modality Therapy , Drug Synergism , Female , Immunologic Memory , Melanoma, Experimental/immunology , Mice , Treatment Outcome , Tumor Microenvironment , Vaccinia virus/genetics
9.
Nat Commun ; 10(1): 5041, 2019 11 06.
Article in English | MEDLINE | ID: mdl-31695037

ABSTRACT

Virus-based vaccines and appropriate costimulation potently enhance antigen-specific T cell immunity against cancer. Here we report the use of recombinant modified vaccinia virus Ankara (rMVA) encoding costimulatory CD40L against solid tumors. Therapeutic treatment with rMVA-CD40L-expressing tumor-associated antigens results in the control of established tumors. The expansion of tumor-specific cytotoxic CD8+ T cells is essential for the therapeutic antitumor effects. Strikingly, rMVA-CD40L also induces strong natural killer (NK) cell activation and expansion. Moreover, the combination of rMVA-CD40L and tumor-targeting antibodies results in increased therapeutic antitumor efficacy relying on the presence of Fc receptor and NK cells. We describe a translationally relevant therapeutic synergy between systemic viral vaccination and CD40L costimulation. We show strengthened antitumor immune responses when both rMVA-CD40L-induced innate and adaptive immune mechanisms are exploited by combination with tumor-targeting antibodies. This immunotherapeutic approach could translate into clinical cancer therapies where tumor-targeting antibodies are employed.


Subject(s)
Adaptive Immunity , Antibodies, Neoplasm/immunology , CD40 Ligand/pharmacology , Cancer Vaccines/immunology , Immunity, Innate , Immunotherapy/methods , Neoplasms/therapy , Viral Vaccines/therapeutic use , Adjuvants, Immunologic/therapeutic use , Animals , Antineoplastic Agents/therapeutic use , CD8-Positive T-Lymphocytes/immunology , Cell Line, Tumor , Drug Synergism , Female , Humans , Immunization , Killer Cells, Natural/immunology , Mice, Inbred BALB C , Mice, Inbred C57BL , Neoplasms/immunology , Vaccination , Vaccines, Synthetic/immunology , Vaccines, Synthetic/therapeutic use
10.
Cancer Cell ; 30(4): 533-547, 2016 10 10.
Article in English | MEDLINE | ID: mdl-27728804

ABSTRACT

Oncogene-induced senescence causes hepatocytes to secrete cytokines, which induce their immune-mediated clearance to prevent tumor initiation, a process termed "senescence surveillance." However, senescent hepatocytes give rise to hepatocellular carcinomas (HCCs), if the senescence program is bypassed or if senescent cells are not cleared. Here, we show context-specific roles for CCR2+ myeloid cells in liver cancer. Senescence surveillance requires the recruitment and maturation of CCR2+ myeloid cells, and CCR2 ablation caused outgrowth of HCC. In contrast, HCC cells block the maturation of recruited myeloid precursors, which, through NK cell inhibition, promote growth of murine HCC and worsen the prognosis and survival of human HCC patients. Thus, while senescent hepatocyte-secreted chemokines suppress liver cancer initiation, they may accelerate the growth of fully established HCC.


Subject(s)
Carcinoma, Hepatocellular/immunology , Liver Neoplasms/immunology , Animals , Carcinoma, Hepatocellular/pathology , Cellular Senescence/immunology , Disease Progression , Female , Humans , Immunologic Surveillance , Liver Neoplasms/pathology , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Mice, Knockout
11.
Oncotarget ; 7(34): 54137-54156, 2016 Aug 23.
Article in English | MEDLINE | ID: mdl-27494838

ABSTRACT

Lung adenocarcinoma patients harboring kinase domain mutations in Epidermal growth factor receptor (EGFR) have significant clinical benefit from EGFR-targeted tyrosine kinase inhibitors (TKIs). Although a majority of patients experience clinical symptomatic benefit immediately, an objective response can only be demonstrated after 6-8 weeks of treatment. Evaluation of patient response by imaging shows that 30-40% of patients do not respond due to intrinsic resistance to these TKIs. We investigated immediate-early effects of EGFR-TKI treatment in mutant EGFR-driven transgenic mouse models by FDG-PET and MRI and correlated the effects on the tumor and the tumor microenvironment. Within 24 hours of erlotinib treatment we saw approximately 65% tumor regression in mice with TKI-sensitive EGFRL858R lung adenocarcinoma. However, mice with EGFRL858R/T790M-driven tumors did not respond to either erlotinib or afatinib monotherapy, but did show a significant tumor response to afatinib-cetuximab combination treatment. The imaging responses correlated with the inhibition of downstream EGFR signaling, increased apoptosis, and decreased proliferation in the tumor tissues. In EGFRL858R-driven tumors, we saw a significant increase in CD45+ leukocytes, NK cells, dendritic cells, macrophages and lymphocytes, particularly CD8+ T cells. In response to erlotinib, these dendritic cells and macrophages had significantly higher MHC class II expression, indicating increased antigen-presenting capabilities. Together, results of our study provide novel insight into the immediate-early therapeutic response to EGFR TKIs in vivo.


Subject(s)
Adenocarcinoma/drug therapy , ErbB Receptors/antagonists & inhibitors , Lung Neoplasms/drug therapy , Mutation , Protein Kinase Inhibitors/therapeutic use , Adenocarcinoma/diagnostic imaging , Adenocarcinoma/genetics , Adenocarcinoma/pathology , Adenocarcinoma of Lung , Animals , Apoptosis/drug effects , Cetuximab/therapeutic use , ErbB Receptors/genetics , ErbB Receptors/physiology , Erlotinib Hydrochloride/therapeutic use , Humans , Lung Neoplasms/diagnostic imaging , Lung Neoplasms/genetics , Lung Neoplasms/pathology , Mice , Positron-Emission Tomography , Xenograft Model Antitumor Assays
12.
Clin Cancer Res ; 22(15): 3924-36, 2016 08 01.
Article in English | MEDLINE | ID: mdl-26957562

ABSTRACT

PURPOSE: Myeloid-derived suppressor cells (MDSC) are considered an important T-cell immunosuppressive component in cancer-bearing hosts. The factors that attract these cells to the tumor microenvironment are poorly understood. IL8 (CXCL8) is a potent chemotactic factor for neutrophils and monocytes. EXPERIMENTAL DESIGN: MDSC were characterized and sorted by multicolor flow cytometry on ficoll-gradient isolated blood leucokytes from healthy volunteers (n = 10) and advanced cancer patients (n = 28). In chemotaxis assays, sorted granulocytic and monocytic MDSC were tested in response to recombinant IL8, IL8 derived from cancer cell lines, and patient sera. Neutrophil extracellular traps (NETs) formation was assessed by confocal microscopy, fluorimetry, and time-lapse fluorescence confocal microscopy on short-term MDSC cultures. RESULTS: IL8 chemoattracts both granulocytic (GrMDSC) and monocytic (MoMDSC) human MDSC. Monocytic but not granulocytic MDSC exerted a suppressor activity on the proliferation of autologous T cells isolated from the circulation of cancer patients. IL8 did not modify the T-cell suppressor activity of human MDSC. However, IL8 induced the formation of NETs in the GrMDSC subset. CONCLUSIONS: IL8 derived from tumors contributes to the chemotactic recruitment of MDSC and to their functional control. Clin Cancer Res; 22(15); 3924-36. ©2016 AACR.


Subject(s)
Chemotaxis, Leukocyte/immunology , Extracellular Traps/immunology , Interleukin-8/metabolism , Myeloid-Derived Suppressor Cells/immunology , Myeloid-Derived Suppressor Cells/metabolism , Neutrophils/immunology , Animals , Biomarkers , Cell Line, Tumor , Chemotaxis, Leukocyte/drug effects , Disease Models, Animal , Humans , Interleukin-8/pharmacology , Mice , Mice, Knockout , Myeloid-Derived Suppressor Cells/drug effects , Neoplasms/immunology , Neoplasms/metabolism , Neoplasms/pathology , Sulfonamides/pharmacology , T-Lymphocyte Subsets/drug effects , T-Lymphocyte Subsets/immunology , T-Lymphocyte Subsets/metabolism
13.
Nature ; 531(7593): 253-7, 2016 Mar 10.
Article in English | MEDLINE | ID: mdl-26934227

ABSTRACT

Hepatocellular carcinoma (HCC) is the second most common cause of cancer-related death. Non-alcoholic fatty liver disease (NAFLD) affects a large proportion of the US population and is considered to be a metabolic predisposition to liver cancer. However, the role of adaptive immune responses in NAFLD-promoted HCC is largely unknown. Here we show, in mouse models and human samples, that dysregulation of lipid metabolism in NAFLD causes a selective loss of intrahepatic CD4(+) but not CD8(+) T lymphocytes, leading to accelerated hepatocarcinogenesis. We also demonstrate that CD4(+) T lymphocytes have greater mitochondrial mass than CD8(+) T lymphocytes and generate higher levels of mitochondrially derived reactive oxygen species (ROS). Disruption of mitochondrial function by linoleic acid, a fatty acid accumulated in NAFLD, causes more oxidative damage than other free fatty acids such as palmitic acid, and mediates selective loss of intrahepatic CD4(+) T lymphocytes. In vivo blockade of ROS reversed NAFLD-induced hepatic CD4(+) T lymphocyte decrease and delayed NAFLD-promoted HCC. Our results provide an unexpected link between lipid dysregulation and impaired anti-tumour surveillance.


Subject(s)
CD4-Positive T-Lymphocytes/pathology , Carcinogenesis , Carcinoma, Hepatocellular/immunology , Carcinoma, Hepatocellular/pathology , Liver Neoplasms/immunology , Liver Neoplasms/pathology , Non-alcoholic Fatty Liver Disease/immunology , Animals , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/metabolism , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/pathology , Carcinogenesis/immunology , Carcinogenesis/pathology , Carcinoma, Hepatocellular/metabolism , Case-Control Studies , Choline/metabolism , Diet , Disease Models, Animal , Genes, myc , Hepatocytes/metabolism , Hepatocytes/pathology , Humans , Linoleic Acid/metabolism , Lipid Metabolism , Liver/immunology , Liver/pathology , Liver Neoplasms/metabolism , Male , Methionine/deficiency , Mice , Mice, Inbred C57BL , Mitochondria/metabolism , Mitochondria/pathology , Non-alcoholic Fatty Liver Disease/metabolism , Non-alcoholic Fatty Liver Disease/pathology , Oxidative Stress , Reactive Oxygen Species/metabolism
14.
Cancer Immunol Immunother ; 64(8): 931-40, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26133122

ABSTRACT

Myeloid-derived suppressor cells are key components of tumor-induced immune suppression. They are composed of a heterogeneous population of immature myeloid cells that abrogates innate and adaptive immune responses. Myeloid-derived suppressor cells accumulate not only in peripheral blood, secondary lymphoid organs and tumors, but also in the liver in preclinical tumor models and in hepatocellular carcinoma patients. The liver, continuously exposed to food and microbial antigens from the intestine, avoids autoimmune damage through the use of specialized mechanisms of immune tolerance. In the context of cancer, myeloid-derived suppressor cells profit the intrinsic tolerogenic properties of the liver to accumulate and exert various immune-suppressive and tumor-promoting mechanisms which go from inducing immune cell dysfunction to supporting the generation of liver metastases. In this review, we seek to describe the phenotype, function, accumulation and therapeutic targeting of hepatic myeloid-derived suppressor cells both in preclinical settings and in the context of human hepatocellular carcinoma.


Subject(s)
Carcinoma, Hepatocellular/immunology , Immune Tolerance , Immunosuppression Therapy , Liver Neoplasms/immunology , Myeloid Cells/immunology , Animals , Carcinoma, Hepatocellular/pathology , Humans , Liver/immunology , Liver/pathology , Liver Neoplasms/pathology , Myeloid Cells/pathology , Neoplasm Metastasis , Tumor Escape
15.
J Hepatol ; 62(6): 1420-9, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25733155

ABSTRACT

Current systemic treatment options for patients with hepatocellular carcinoma (HCC) are limited to sorafenib. With the recent FDA approval of the second PD1-PD-L1 pathway inhibitor, immunotherapy has gained even more interest as a potential novel treatment option for patients with HCC. This is due not only because of the failure of other treatment approaches in the past, but also because immunological mechanisms have been shown to play an important role during tumor development, growth, and treatment. Here we present a review of immunological mechanisms in the liver relevant for tumor progression and treatment. We summarize our current knowledge on immune activating and immune suppressing mechanisms during tumor initiation, development, and treatment. We try to explain the paradox of how inflammatory responses in a setting of chronic infection promote tumor development, while the primary aim of immunotherapy is to activate immunity. Finally we summarize recent advances in addition to providing an outlook for the immunotherapy of HCC.


Subject(s)
Carcinoma, Hepatocellular/immunology , Carcinoma, Hepatocellular/therapy , Immunotherapy/methods , Liver Neoplasms/immunology , Liver Neoplasms/therapy , Adoptive Transfer , Cancer Vaccines/therapeutic use , Clinical Trials as Topic , Cytokines/therapeutic use , Humans , Immune Tolerance , Immunosuppression Therapy
16.
Cancer Immunol Immunother ; 64(6): 717-25, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25795134

ABSTRACT

Transforming growth factor beta (TGF-ß) promotes tumor growth, invasion and metastasis in established tumors. In this study, we analyzed the effect of overexpressing an anti-TGF-ß peptide fused to apolipoprotein A-I (ApoA-I) as a scaffold molecule. We generated and characterized stable MC38 colon carcinoma clones expressing ApoA-I fused to the anti-TGF-ß peptide P144 and ApoA-I as control cells. We evaluated in vitro the gene expression profile, cell cycle and anchorage-independent growth. The in vivo tumorigenic potential and immunogenicity were analyzed inoculating the MC38 clones into C57BL/6 mice, recombination-activating gene 1 knockout mice or mice deficient in NK cells either subcutaneously or intrasplenically to generate hepatic metastases. While overexpression of ApoA-I had no effect on the parameters analyzed, ApoA-I fused to P144 markedly diminished the tumorigenic capacity and metastatic potential of MC38 in vitro and in vivo, thus generating a highly immunogenic cell line. MC38 cells transfected with ApoA-I fused to P144 triggered memory T cell responses able to eliminate the parental cell line upon re-challenge. In summary, expression of ApoA-I fused to P144 is a novel strategy to modulate TGF-ß in tumor cells. These results highlight the potential of TGF-ß as a target in the development of new antitumor treatments.


Subject(s)
Apolipoprotein A-I/biosynthesis , Colonic Neoplasms/therapy , Peptide Fragments/biosynthesis , Receptors, Transforming Growth Factor beta/biosynthesis , Recombinant Fusion Proteins/biosynthesis , Transforming Growth Factor beta/antagonists & inhibitors , Animals , Apolipoprotein A-I/genetics , Apolipoprotein A-I/immunology , Cell Line, Tumor , Colonic Neoplasms/genetics , Colonic Neoplasms/immunology , Colonic Neoplasms/pathology , Female , Genetic Therapy , Immunotherapy , Mice , Mice, Inbred C57BL , Mice, Knockout , Peptide Fragments/genetics , Peptide Fragments/immunology , Receptors, Transforming Growth Factor beta/genetics , Receptors, Transforming Growth Factor beta/immunology , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/immunology , Transfection , Transforming Growth Factor beta/metabolism , Tumor Cells, Cultured
17.
Cancer Immunol Res ; 3(5): 557-66, 2015 May.
Article in English | MEDLINE | ID: mdl-25637366

ABSTRACT

Immune-stimulatory mAbs are currently being evaluated as antitumor agents. Although overall toxicity from these agents appears to be moderate, liver toxicities have been reported and are not completely understood. We studied the effect of systemic CD40 antibody treatment on myeloid cells in the spleen and liver. Naïve and tumor-bearing mice were treated systemically with agonistic anti-CD40 antibody. Immune cell subsets in the liver and spleen, serum transaminases, and liver histologies were analyzed after antibody administration. Nox2(-/-), Cd40(-/-), and bone marrow chimeric mice were used to study the mechanism by which agonistic anti-CD40 mediates its effects in vivo. Suppressor function of murine and human tumor-induced myeloid-derived suppressor cells (MDSC) was studied upon CD40 ligation. Agonistic CD40 antibody caused liver damage within 24 hours after injection in two unrelated tumor models and mice strains. Using bone marrow chimeras, we demonstrate that CD40 antibody-induced hepatitis in tumor-bearing mice was dependent on the presence of CD40-expressing hematopoietic cells. Agonistic CD40 ligation-dependent liver damage was induced by the generation of reactive oxygen species. Furthermore, agonistic CD40 antibody resulted in increased CD80-positive and CD40-positive liver CD11b(+)Gr-1(+) immature myeloid cells. CD40 ligation on tumor-induced murine and human CD14(+)HLA-DR(low) peripheral blood mononuclear cells from patients with cancer reduced their immune suppressor function. Collectively, agonistic CD40 antibody treatment activated tumor-induced myeloid cells, caused myeloid-dependent hepatotoxicity, and ameliorated the suppressor function of murine and human MDSC. Collectively, our data suggest that CD40 may mature immunosuppressive myeloid cells and thereby cause liver damage in mice with an accumulation of tumor-induced hepatic MDSC.


Subject(s)
Antibodies, Monoclonal , CD40 Antigens/antagonists & inhibitors , Myeloid Cells/drug effects , Alanine Transaminase/blood , Animals , Antibodies, Monoclonal/adverse effects , Antibodies, Monoclonal/pharmacology , Antibodies, Monoclonal/therapeutic use , Aspartate Aminotransferases/blood , CD40 Antigens/immunology , Cell Line, Tumor , Chemical and Drug Induced Liver Injury/blood , Chemical and Drug Induced Liver Injury/immunology , Female , Humans , Liver/cytology , Liver/drug effects , Mice, Inbred BALB C , Mice, Inbred C57BL , Mice, Transgenic , Myeloid Cells/immunology , Neoplasms/blood , Neoplasms/drug therapy , Neoplasms/immunology , Spleen/cytology , Spleen/drug effects
18.
Eur J Immunol ; 45(4): 1148-58, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25616156

ABSTRACT

Immunosuppressive CD11b(+) Gr-1(+) myeloid-derived suppressor cells (MDSCs) accumulate in the livers of tumor-bearing (TB) mice. We studied hepatic MDSCs in two murine models of immune-mediated hepatitis. Unexpectedly, treatment of TB mice with Concanavalin A (Con A) or α-galactosylceramide resulted in increased alanine aminotransferase (ALT) and aspartate aminotransferase (AST) serum levels in comparison to tumor-free mice. Adoptive transfer of hepatic MDSCs into naïve mice exacerbated Con A induced liver damage. Hepatic CD11b(+) Gr-1(+) cells revealed a polarized proinflammatory gene signature after Con A treatment. An IFN-γ-dependent upregulation of CD40 on hepatic CD11b(+) Gr-1(+) cells along with an upregulation of CD80, CD86, and CD1d after Con A treatment was observed. Con A treatment resulted in a loss of suppressor function by tumor-induced CD11b(+) Gr-1(+) MDSCs as well as enhanced reactive oxygen species (ROS)-mediated hepatotoxicity. CD40 knockdown in hepatic MDSCs led to increased arginase activity upon Con A treatment and lower ALT/AST serum levels. Finally, blockade of arginase activity in Cd40(-/-) tumor-induced myeloid cells resulted in exacerbation of hepatitis and increased ROS production in vivo. Our findings indicate that in a setting of acute hepatitis, tumor-induced hepatic MDSCs act as proinflammatory immune effector cells capable of killing hepatocytes in a CD40-dependent manner.


Subject(s)
CD40 Antigens/metabolism , Hepatitis/immunology , Myeloid Cells/immunology , Adoptive Transfer , Alanine Transaminase/blood , Animals , Antigens, CD1d/biosynthesis , Arginase/antagonists & inhibitors , Arginase/biosynthesis , Arginase/metabolism , Aspartate Aminotransferases/blood , B7-1 Antigen/biosynthesis , B7-2 Antigen/biosynthesis , CD11b Antigen/metabolism , CD40 Antigens/biosynthesis , CD40 Antigens/genetics , Cell Line , Concanavalin A/pharmacology , Female , Galactosylceramides/pharmacology , Hepatitis/genetics , Hepatocytes/immunology , Hepatocytes/pathology , Liver/cytology , Liver/injuries , Liver Neoplasms/immunology , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Mice, Knockout , Mitogens/pharmacology , Myeloid Cells/transplantation , Reactive Oxygen Species/metabolism , Receptors, Chemokine/metabolism
19.
PLoS One ; 9(11): e112717, 2014.
Article in English | MEDLINE | ID: mdl-25401795

ABSTRACT

Subcutaneous tumors induce the accumulation of myeloid derived suppressor cells (MDSC) not only in blood and spleens, but also in livers of these animals. Unexpectedly, we observed a moderate increase in serum transaminases in mice with EL4 subcutaneous tumors, which prompted us to study the relationship of hepatic MDSC accumulation and liver injury. MDSC were the predominant immune cell population expanding in livers of all subcutaneous tumor models investigated (RIL175, B16, EL4, CT26 and BNL), while liver injury was only observed in EL4 and B16 tumor-bearing mice. Elimination of hepatic MDSC in EL4 tumor-bearing mice using low dose 5-fluorouracil (5-FU) treatment reversed transaminase elevation and adoptive transfer of hepatic MDSC from B16 tumor-bearing mice caused transaminase elevation indicating a direct MDSC mediated effect. Surprisingly, hepatic MDSC from B16 tumor-bearing mice partially lost their damage-inducing potency when transferred into mice bearing non damage-inducing RIL175 tumors. Furthermore, MDSC expansion and MDSC-mediated liver injury further increased with growing tumor burden and was associated with different cytokines including GM-CSF, VEGF, interleukin-6, CCL2 and KC, depending on the tumor model used. In contrast to previous findings, which have implicated MDSC only in protection from T cell-mediated hepatitis, we show that tumor-induced hepatic MDSC themselves can cause moderate liver damage.


Subject(s)
Liver/immunology , Liver/pathology , Myeloid Cells/immunology , Neoplasms/immunology , Animals , Antigens, Surface/metabolism , Cell Line, Tumor , Cytokines/metabolism , Disease Models, Animal , Female , Immunophenotyping , Liver/metabolism , Melanoma, Experimental , Mice , Myeloid Cells/metabolism , Neoplasms/blood , Neoplasms/metabolism , Phenotype , Transaminases/blood
20.
J Immunol ; 193(10): 5181-9, 2014 Nov 15.
Article in English | MEDLINE | ID: mdl-25326025

ABSTRACT

Intravenous Igs (IVIg) therapy is widely used as an immunomodulatory strategy in inflammatory pathologies and is suggested to promote cancer regression. Because progression of tumors depends on their ability to redirect the polarization state of tumor-associated macrophages (from M1/immunogenic/proinflammatory to M2/anti-inflammatory), we have evaluated whether IVIg limits tumor progression and dissemination through modulation of macrophage polarization. In vitro, IVIg inhibited proinflammatory cytokine production from M1 macrophages and induced a M2-to-M1 polarization switch on human and murine M2 macrophages. In vivo, IVIg modified the polarization of tumor-associated myeloid cells in a Fcεr1γ chain-dependent manner, modulated cytokine blood levels in tumor-bearing animals, and impaired tumor progression via FcγRIII (CD16), FcγRIV, and FcRγ engagement, the latter two effects being macrophage mediated. Therefore, IVIg immunomodulatory activity is dependent on the polarization state of the responding macrophages, and its ability to trigger a M2-to-M1 macrophage polarization switch might be therapeutically useful in cancer, in which proinflammatory or immunogenic functions should be promoted.


Subject(s)
Antineoplastic Agents/pharmacology , Gene Expression Regulation, Neoplastic , Immunoglobulins, Intravenous/pharmacology , Immunologic Factors/pharmacology , Lung Neoplasms/drug therapy , Macrophages/drug effects , Melanoma, Experimental/drug therapy , Animals , Cell Differentiation/drug effects , Cell Differentiation/immunology , Cells, Cultured , Cytokines/genetics , Cytokines/immunology , Humans , Lung/drug effects , Lung/immunology , Lung/pathology , Lung Neoplasms/genetics , Lung Neoplasms/immunology , Lung Neoplasms/pathology , Macrophages/classification , Macrophages/immunology , Macrophages/pathology , Melanoma, Experimental/genetics , Melanoma, Experimental/immunology , Melanoma, Experimental/pathology , Mice , Neoplasm Transplantation , Receptors, IgE/genetics , Receptors, IgE/immunology , Receptors, IgG/genetics , Receptors, IgG/immunology , Signal Transduction , Tumor Burden/drug effects
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