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1.
Cancer Immunol Immunother ; 64(7): 831-42, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-25863943

RESUMO

Dendritic cell (DC) vaccination has demonstrated potential in clinical trials as a new effective cancer treatment, but objective and durable clinical responses are confined to a minority of patients. Interferon (IFN)-α, a type-I IFN, can bolster anti-tumor immunity by restoring or increasing the function of DCs, T cells and natural killer (NK) cells. Moreover, type-I IFN signaling on DCs was found to be essential in mice for tumor rejection by the innate and adaptive immune system. Targeted delivery of IFN-α by DCs to immune cells could boost the generation of anti-tumor immunity, while avoiding the side effects frequently associated with systemic administration. Naturally circulating plasmacytoid DCs, major producers of type-I IFN, were already shown capable of inducing tumor antigen-specific T cell responses in cancer patients without severe toxicity, but their limited number complicates their use in cancer vaccination. In the present work, we hypothesized that engineering easily generated human monocyte-derived mature DCs to secrete IFN-α using mRNA electroporation enhances their ability to promote adaptive and innate anti-tumor immunity. Our results show that IFN-α mRNA electroporation of DCs significantly increases the stimulation of tumor antigen-specific cytotoxic T cell as well as anti-tumor NK cell effector functions in vitro through high levels of IFN-α secretion. Altogether, our findings mark IFN-α mRNA-electroporated DCs as potent inducers of both adaptive and innate anti-tumor immunity and pave the way for clinical trial evaluation in cancer patients.


Assuntos
Antígenos de Neoplasias/imunologia , Linfócitos T CD8-Positivos/imunologia , Células Dendríticas/imunologia , Interferon-alfa/metabolismo , Proteínas WT1/imunologia , Antígenos de Neoplasias/genética , Linfócitos T CD4-Positivos/imunologia , Proliferação de Células/genética , Células Cultivadas , Células Dendríticas/citologia , Células Dendríticas/transplante , Eletroporação , Humanos , Imunoterapia Adotiva , Interferon-alfa/genética , Células Matadoras Naturais/imunologia , Ativação Linfocitária/imunologia , Neoplasias/imunologia , RNA Mensageiro/administração & dosagem , RNA Mensageiro/genética , Proteínas WT1/genética
2.
J Cell Mol Med ; 18(7): 1372-80, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24979331

RESUMO

Cervarix™ is approved as a preventive vaccine against infection with the human papillomavirus (HPV) strains 16 and 18, which are causally related to the development of cervical cancer. We are the first to investigate in vitro the effects of this HPV vaccine on interleukin (IL)-15 dendritic cells (DC) as proxy of a naturally occurring subset of blood DC, and natural killer (NK) cells, two innate immune cell types that play an important role in antitumour immunity. Our results show that exposure of IL-15 DC to the HPV vaccine results in increased expression of phenotypic maturation markers, pro-inflammatory cytokine production and cytotoxic activity against HPV-positive tumour cells. These effects are mediated by the vaccine adjuvant, partly through Toll-like receptor 4 activation. Next, we demonstrate that vaccine-exposed IL-15 DC in turn induce phenotypic activation of NK cells, resulting in a synergistic cytotoxic action against HPV-infected tumour cells. Our study thus identifies a novel mode of action of the HPV vaccine in boosting innate immunity, including killing of HPV-infected cells by DC and NK cells.


Assuntos
Células Dendríticas/imunologia , Células Matadoras Naturais/imunologia , Papillomaviridae/imunologia , Infecções por Papillomavirus/imunologia , Vacinas contra Papillomavirus/uso terapêutico , Linfócitos T Citotóxicos/imunologia , Neoplasias do Colo do Útero/imunologia , Células Cultivadas , Células Dendríticas/metabolismo , Células Dendríticas/patologia , Feminino , Humanos , Imunidade Inata/imunologia , Imunofenotipagem , Interleucina-15/imunologia , Interleucina-15/metabolismo , Células Matadoras Naturais/metabolismo , Células Matadoras Naturais/patologia , Linfócitos/imunologia , Linfócitos/metabolismo , Linfócitos/patologia , Infecções por Papillomavirus/patologia , Infecções por Papillomavirus/prevenção & controle , Linfócitos T Citotóxicos/metabolismo , Linfócitos T Citotóxicos/patologia , Neoplasias do Colo do Útero/patologia , Neoplasias do Colo do Útero/prevenção & controle
3.
Front Immunol ; 9: 394, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29599770

RESUMO

Two decades of clinical cancer research with dendritic cell (DC)-based vaccination have proved that this type of personalized medicine is safe and has the capacity to improve survival, but monotherapy is unlikely to cure the cancer. Designed to empower the patient's antitumor immunity, huge research efforts are set to improve the efficacy of next-generation DC vaccines and to find synergistic combinations with existing cancer therapies. Immune checkpoint approaches, aiming to breach immune suppression and evasion to reinforce antitumor immunity, have been a revelation in the immunotherapy field. Early success of therapeutic antibodies blocking the programmed death-1 (PD-1) pathway has sparked the development of novel inhibitors and combination therapies. Hence, merging immunoregulatory tumor-specific DC strategies with PD-1-targeted approaches is a promising path to explore. In this review, we focus on the role of PD-1-signaling in DC-mediated antitumor immunity. In the quest of exploiting the full potential of DC therapy, different strategies to leverage DC immunopotency by impeding PD-1-mediated immune regulation are discussed, including the most advanced research on targeted therapeutic antibodies, lessons learned from chemotherapy-induced immune activation, and more recent developments with soluble molecules and gene-silencing techniques. An overview of DC/PD-1 immunotherapy combinations that are currently under preclinical and clinical investigation substantiates the clinical potential of such combination strategies.


Assuntos
Anticorpos Monoclonais/uso terapêutico , Vacinas Anticâncer/imunologia , Células Dendríticas/transplante , Imunoterapia/métodos , Neoplasias/terapia , Animais , Terapia Combinada , Células Dendríticas/imunologia , Avaliação Pré-Clínica de Medicamentos , Humanos , Neoplasias/imunologia , Receptor de Morte Celular Programada 1/imunologia
4.
Oncotarget ; 9(45): 27797-27808, 2018 Jun 12.
Artigo em Inglês | MEDLINE | ID: mdl-29963238

RESUMO

Blockade of programmed cell death protein 1 (PD-1) immune checkpoint receptor signaling is an established standard treatment for many types of cancer and indications are expanding. Successful clinical trials using monoclonal antibodies targeting PD-1 signaling have boosted preclinical research, encouraging development of novel therapeutics. Standardized assays to evaluate their bioactivity, however, remain restricted. The robust bioassays available all lack antigen-specificity. Here, we developed an antigen-specific, short-term and high-throughput T cell assay with versatile readout possibilities. A genetically modified T cell receptor (TCR)-deficient T cell line was stably transduced with PD-1. Transfection with messenger RNA encoding a TCR of interest and subsequent overnight stimulation with antigen-presenting cells, results in eGFP-positive and granzyme B-producing T cells for single cell or bulk analysis. Control antigen-presenting cells induced reproducible high antigen-specific eGFP and granzyme B expression. Upon PD-1 interaction, ligand-positive antigen-presenting immune or tumor cells elicited significantly lower eGFP and granzyme B expression, which could be restored by anti-PD-(L)1 blocking antibodies. This convenient cell-based assay shows a valuable tool for translational and clinical research on antigen-specific checkpoint-targeted therapy approaches.

5.
Front Immunol ; 9: 2503, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30464762

RESUMO

Genetic engineering of T cells with tumor specific T-cell receptors (TCR) is a promising strategy to redirect their specificity against cancer cells in adoptive T cell therapy protocols. Most studies are exploiting integrating retro- or lentiviral vectors to permanently introduce the therapeutic TCR, which can pose serious safety issues when treatment-related toxicities would occur. Therefore, we developed a versatile, non-genotoxic transfection method for human unstimulated CD8+ T cells. We describe an optimized double sequential electroporation platform whereby Dicer-substrate small interfering RNAs (DsiRNA) are first introduced to suppress endogenous TCR α and ß expression, followed by electroporation with DsiRNA-resistant tumor-specific TCR mRNA. We demonstrate that double sequential electroporation of human primary unstimulated T cells with DsiRNA and TCR mRNA leads to unprecedented levels of transgene TCR expression due to a strongly reduced degree of TCR mispairing. Importantly, superior transgenic TCR expression boosts epitope-specific CD8+ T cell activation and killing activity. Altogether, DsiRNA and TCR mRNA double sequential electroporation is a rapid, non-integrating and highly efficient approach with an enhanced biosafety profile to engineer T cells with antigen-specific TCRs for use in early phase clinical trials.


Assuntos
Linfócitos T CD8-Positivos/imunologia , Engenharia Genética/métodos , Imunoterapia Adotiva/métodos , Neoplasias/terapia , RNA/genética , Receptores de Antígenos de Linfócitos T alfa-beta/genética , Antígenos de Neoplasias/imunologia , Linfócitos T CD8-Positivos/transplante , Citotoxicidade Imunológica , Eletroporação , Epitopos de Linfócito T/imunologia , Vetores Genéticos , Humanos , Neoplasias/imunologia , RNA Interferente Pequeno/genética , Ribonuclease III/metabolismo , Especificidade do Receptor de Antígeno de Linfócitos T
6.
Oncotarget ; 8(34): 56968-56979, 2017 Aug 22.
Artigo em Inglês | MEDLINE | ID: mdl-28915646

RESUMO

Pancreatic ductal adenocarcinoma (PDAC) is the 4th leading cause of cancer-related death in Western countries with a 5-year survival rate below 5%. One of the hallmarks of this cancer is the strong desmoplastic reaction within the tumor microenvironment (TME), orchestrated by activated pancreatic stellate cells (PSC). This results in a functional and mechanical shield which causes resistance to conventional therapies. Aiming to overcome this resistance by tackling the stromal shield, we assessed for the first time the capacity of IL-15 stimulated natural killer (NK) cells to kill PSC and pancreatic cancer cells (PCC). The potency of IL-15 to promote NK cell-mediated killing was evaluated phenotypically and functionally. In addition, NK cell and immune checkpoint ligands on PSC were charted. We demonstrate that IL-15 activated NK cells kill both PCC and PSC lines (range 9-35% and 20-50%, respectively) in a contact-dependent manner and significantly higher as compared to resting NK cells. Improved killing of these pancreatic cell lines is, at least partly, dependent on IL-15 induced upregulation of TIM-3 and NKG2D. Furthermore, we confirm significant killing of primary PSC by IL-15 activated NK cells in an ex vivo autologous system. Screening for potential targets for immunotherapeutic strategies, we demonstrate surface expression of both inhibitory (PD-L1, PD-L2) and activating (MICA/B, ULBPs and Galectin-9) ligands on primary PSC. These data underscore the therapeutic potential of IL-15 to promote NK cell-mediated cytotoxicity as a treatment of pancreatic cancer and provide promising future targets to tackle remaining PSC.

7.
Cancer Immunol Res ; 5(8): 710-715, 2017 08.
Artigo em Inglês | MEDLINE | ID: mdl-28637876

RESUMO

Although allogeneic stem cell transplantation (allo-SCT) can elicit graft-versus-tumor (GVT) immunity, patients often relapse due to residual tumor cells. As essential orchestrators of the immune system, vaccination with dendritic cells (DC) is an appealing strategy to boost the GVT response. Nevertheless, durable clinical responses after DC vaccination are still limited, stressing the need to improve current DC vaccines. Aiming to empower DC potency, we engineered monocyte-derived DCs to deprive them of ligands for the immune checkpoint regulated by programmed death 1 (PD-1). We also equipped them with interleukin (IL)-15 "transpresentation" skills. Transfection with short interfering (si)RNA targeting the PD-1 ligands PD-L1 and PD-L2, in combination with IL15 and IL15Rα mRNA, preserved their mature DC profile and rendered the DCs superior in inducing T-cell proliferation and IFNγ and TNFα production. Translated into an ex vivo hematological disease setting, DCs deprived of PD-1 ligands (PD-L), equipped with IL15/IL15Rα expression, or most effectively, both, induced superior expansion of minor histocompatibility antigen-specific CD8+ T cells from transplanted cancer patients. These data support the combinatorial approach of in situ suppression of the PD-L inhibitory checkpoints with DC-mediated IL15 transpresentation to promote antigen-specific T-cell responses and, ultimately, contribute to GVT immunity. Cancer Immunol Res; 5(8); 710-5. ©2017 AACR.


Assuntos
Vacinas Anticâncer/administração & dosagem , Células Dendríticas/transplante , Interleucina-15/genética , Receptor de Morte Celular Programada 1/genética , Antígeno B7-H1/genética , Antígeno B7-H1/imunologia , Linfócitos T CD8-Positivos/imunologia , Vacinas Anticâncer/genética , Vacinas Anticâncer/imunologia , Células Dendríticas/imunologia , Efeito Enxerto vs Tumor/efeitos dos fármacos , Efeito Enxerto vs Tumor/imunologia , Humanos , Interleucina-15/antagonistas & inibidores , Monócitos/imunologia , Monócitos/transplante , Proteína 2 Ligante de Morte Celular Programada 1/genética , Proteína 2 Ligante de Morte Celular Programada 1/imunologia , Receptor de Morte Celular Programada 1/antagonistas & inibidores , RNA Interferente Pequeno/genética , Transplante de Células-Tronco , Transfecção , Transplante Homólogo , Vacinação
8.
Oncotarget ; 7(45): 73960-73970, 2016 Nov 08.
Artigo em Inglês | MEDLINE | ID: mdl-27659531

RESUMO

We formerly demonstrated that vaccination with Wilms' tumor 1 (WT1)-loaded autologous monocyte-derived dendritic cells (mo-DCs) can be a well-tolerated effective treatment in acute myeloid leukemia (AML) patients. Here, we investigated whether we could introduce the receptor for hyaluronic acid-mediated motility (RHAMM/HMMR/CD168), another clinically relevant tumor-associated antigen, into these mo-DCs through mRNA electroporation and elicit RHAMM-specific immune responses. While RHAMM mRNA electroporation significantly increased RHAMM protein expression by mo-DCs, our data indicate that classical mo-DCs already express and present RHAMM at sufficient levels to activate RHAMM-specific T cells, regardless of electroporation. Moreover, we found that RHAMM-specific T cells are present at vaccination sites in AML patients. Our findings implicate that we and others who are using classical mo-DCs for cancer immunotherapy are already vaccinating against RHAMM.


Assuntos
Apresentação de Antígeno/imunologia , Antígenos de Neoplasias/imunologia , Células Dendríticas/imunologia , Células Dendríticas/metabolismo , Proteínas da Matriz Extracelular/imunologia , Receptores de Hialuronatos/imunologia , Linfócitos T/imunologia , Vacinas Anticâncer/imunologia , Eletroporação , Proteínas da Matriz Extracelular/genética , Expressão Gênica , Antígenos HLA-A/imunologia , Humanos , Receptores de Hialuronatos/genética , Imunoterapia , Leucemia Mieloide Aguda/genética , Leucemia Mieloide Aguda/imunologia , Leucemia Mieloide Aguda/terapia , Neoplasias/genética , Neoplasias/imunologia , Neoplasias/metabolismo , Neoplasias/terapia , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Linfócitos T/metabolismo
9.
Cytokine Growth Factor Rev ; 26(1): 15-24, 2015 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-25306466

RESUMO

Interleukin (IL)-15 is one of the most promising molecules to be used in antitumor immune therapy, as it is able to stimulate the main killer cells of both the innate and adaptive immune system. Although this cytokine can be used as a stand-alone immunotherapeutic agent, IL-15 will probably be most efficient in combination with other strategies to overcome high tumor burden, immune suppression of the tumor microenvironment and/or the short half-life of IL-15. In this review, we will discuss the combination strategies with IL-15 that have been tested to date in different animal tumor models, which include chemotherapy, other immunostimulatory cytokines, targeted therapy, adoptive cell transfer and gene therapy. In addition, we give an overview of IL-15 combination therapies that are currently tested in clinical studies to treat patients with hematological or advanced solid tumors.


Assuntos
Citocinas/uso terapêutico , Neoplasias Hematológicas/terapia , Interleucina-15/uso terapêutico , Neoplasias/terapia , Transferência Adotiva , Animais , Terapia Combinada , Terapia Genética , Meia-Vida , Humanos , Imunoterapia
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