Search results for "cancer vaccines"

showing 10 items of 100 documents

Immunization with a Synthetic Human MUC1 Glycopeptide Vaccine against Tumor-Associated MUC1 Breaks Tolerance in Human MUC1 Transgenic Mice.

2017

Breaking tolerance is crucial for effective tumor immunotherapy. We showed that vaccines containing tumor-associated human MUC1 glycopeptides induce strong humoral antitumor responses in mice. The question remained whether such vaccines work in humans, in systems where huMUC1 is a self-antigen. To clarify the question, mice transgenic in expressing huMUC1, mimicking the self-tolerant environment, and wild-type mice were vaccinated with a synthetic vaccine. This vaccine comprised STn and Tn antigens bound to a MUC1 tandem repeat peptide coupled to tetanus toxoid. The vaccine induced strong immune responses in wild-type and huMUC1-transgenic mice without auto-aggressive side effects. All anti…

0301 basic medicineSynthetic vaccinemedicine.medical_treatmentBreast NeoplasmsMice TransgenicBiology01 natural sciencesBiochemistryCancer Vaccines03 medical and health sciencesImmune systemAntigenCancer immunotherapyDrug DiscoverymedicineTetanus ToxoidAnimalsHumansAntigens Tumor-Associated CarbohydrateGeneral Pharmacology Toxicology and PharmaceuticsPharmacologyVaccines Synthetic010405 organic chemistryTetanusOrganic ChemistryMucin-1ToxoidImmunotherapymedicine.diseaseVirologyPeptide Fragments0104 chemical sciencesMice Inbred C57BL030104 developmental biologyImmunizationImmunologyMCF-7 CellsMolecular MedicineFemaleImmunizationChemMedChem
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Targeting Neoepitopes to Treat Solid Malignancies: Immunosurgery

2020

Successful outcome of immune checkpoint blockade in patients with solid cancers is in part associated with a high tumor mutational burden (TMB) and the recognition of private neoantigens by T-cells. The quality and quantity of target recognition is determined by the repertoire of ‘neoepitope’-specific T-cell receptors (TCRs) in tumor-infiltrating lymphocytes (TIL), or peripheral T-cells. Interferon gamma (IFN-γ), produced by T-cells and other immune cells, is essential for controlling proliferation of transformed cells, induction of apoptosis and enhancing human leukocyte antigen (HLA) expression, thereby increasing immunogenicity of cancer cells. TCR αβ-dependent therapies should account f…

0301 basic medicineT-Lymphocytesmedicine.medical_treatmentprecision medicineImmunologyEpitopes T-LymphocyteReviewHuman leukocyte antigenBiologyMajor histocompatibility complexCancer Vaccines03 medical and health sciencesLymphocytes Tumor-Infiltrating0302 clinical medicineImmune systemAntigenAntigens NeoplasmantigensNeoplasmsmedicineAnimalsHumansImmunology and AllergyT-cell receptorTumor microenvironmentneoepitopesWhole Genome SequencingT-cellsT-cell receptorComputational BiologyImmunotherapyTILRC581-607vaccinationImmune checkpoint030104 developmental biology030220 oncology & carcinogenesisCancer researchbiology.proteinimmunotherapyImmunologic diseases. AllergyFrontiers in Immunology
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Cytomegalovirus vector expressing RAE-1γ induces enhanced anti-tumor capacity of murine CD8+ T cells

2017

Designing of CD8 T cell vaccines which would provide protection against tumors is still considered a great challenge in immunotherapy. Here we show a robust potential of a cytomegalovirus (CMV) vector expressing the NKG2D ligand RAE-1γ as CD8 T cell-based vaccine against malignant tumors. Immunization with the CMV vector expressing RAE-1γ delayed tumor growth or even provided complete protection against tumor challenge in both prophylactic and therapeutic settings. Moreover, a potent tumor control in mice vaccinated with this vector can be further enhanced by blocking the immune checkpoints TIGIT and PD-1. Expression of RAE-1γ by the CMV vector potentiated expansion of KLRG1+ CD8 T cells wi…

0301 basic medicineTumor vaccine [RAE-1γ]medicine.medical_treatmentT cellImmunologyGenetic VectorsProgrammed Cell Death 1 ReceptorMelanoma ExperimentalCytomegalovirusEpitopes T-LymphocyteBiologyCD8-Positive T-LymphocytesCancer VaccinesArticleCMV vectorNKG2DImmunomodulation03 medical and health sciencesMiceImmune systemTIGITKLRG1+ CD8+ T cellsNeoplasmsmedicineImmunology and AllergyCytotoxic T cellAnimalsHumansRAE-1γ : Tumor vaccineLectins C-TypeReceptors ImmunologicαTIGIT ; CMV vector ; KLRG1+ CD8+ T cells ; NKG2D ; RAE-1γ : Tumor vaccineBIOMEDICINE AND HEALTHCARE. Basic Medical Sciences.Membrane ProteinsImmunotherapyNKG2DVirology3. Good healthKiller Cells NaturalDisease Models Animal030104 developmental biologymedicine.anatomical_structureImmunizationAnimals NewbornFemaleαTIGITImmunotherapyBIOMEDICINA I ZDRAVSTVO. Temeljne medicinske znanosti.CD8
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mRNA: A Versatile Molecule for Cancer Vaccines

2016

mRNA vaccines are finally ready to assume their rightful place at the forefront of nucleic acid- based vaccines. Major achievements within the last two decades have turned this highly versatile molecule into a safe and very attractive pharmaceutical platform that combines many positive attributes able to address a broad range of diseases, including cancer. The simplicity of mRNA vaccines greatly reduces complications generally associated with the production of biological vaccines. Intrinsic costimulatory and inflammatory triggers in addition to the provision of the antigenic information makes mRNA an all- in-one molecule that does not need additional adjuvants and that does not pose the ris…

0301 basic medicineVaccinesMoleculeImmunotherapy ActiveCancerGeneral MedicineBiologymedicine.diseaseBioinformaticsmRNA:Cancer VaccinesVersatileCancer treatment03 medical and health sciences030104 developmental biologyNeoplasmsmedicineHumansRNA MessengerCancerCurrent Issues in Molecular Biology
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The Protein Corona as a Confounding Variable of Nanoparticle-Mediated Targeted Vaccine Delivery

2018

Nanocarriers (NC) are very promising tools for cancer immunotherapy. Whereas conventional vaccines are based on the administration of an antigen and an adjuvant in an independent fashion, nanovaccines can facilitate cell-specific co-delivery of antigen and adjuvant. Furthermore, nanovaccines can be decorated on their surface with molecules that facilitate target-specific antigen delivery to certain antigen-presenting cell types or tumor cells. However, the target cell-specific uptake of nanovaccines is highly dependent on the modifications of the nanocarrier itself. One of these is the formation of a protein corona around NC after in vivo administration, which may potently affect cell-speci…

0301 basic medicinelcsh:Immunologic diseases. AllergyMini Reviewmedicine.medical_treatmentImmunologyCellcell-specific targetingProtein Corona02 engineering and technology03 medical and health sciencesprotein coronaAntigenCancer immunotherapyIn vivoNeoplasmsmedicineHumansImmunology and AllergyReceptors ImmunologicnanocarriersChemistryImmunotherapy021001 nanoscience & nanotechnologyBody FluidsTreatment Outcome030104 developmental biologymedicine.anatomical_structureCancer researchNanoparticlesimmunotherapyNanocarriers0210 nano-technologylcsh:RC581-607Adjuvantcancer vaccinesProtein BindingFrontiers in Immunology
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Adjuvant MUC vaccination with tecemotide after resection of colorectal liver metastases: a randomized, double-blind, placebo-controlled, multicenter …

2020

ABSTRACT Resection of colorectal liver metastases (CRLM) is a potential curative treatment for patients with metastatic colorectal cancer (mCRC) with liver-limited disease (LLD). Although long-term survival improved considerably within the last decades, high recurrence rates of 50-75% after resection remain a major challenge.Tecemotide (L-BLP25) is an antigen-specific cancer vaccine inducing immunity against mucin-1 (MUC1). The LICC trial aimed to improve survival in patients with mCRC after R0/R1 resection of CRLM. LICC was a binational, randomized, double-blind, placebo-controlled, multicenter phase 2 study including patients with R0/R1 resected CRLM without evidence of metastatic disease…

0301 basic medicinemedicine.medical_specialtyLung Neoplasmsmucin-1 (muc1)Colorectal cancermedicine.medical_treatmentImmunologyMedizinPlaceboCancer VaccinesGastroenterologyResectionDouble blind03 medical and health sciences0302 clinical medicineCarcinoma Non-Small-Cell LungGermanyInternal medicinemedicineHumansImmunology and AllergyRC254-282Original ResearchMembrane Glycoproteinsresection of colorectal liver metastasesbusiness.industryLiver NeoplasmsVaccinationNeoplasms. Tumors. Oncology. Including cancer and carcinogenscolorectal neoplasmsRC581-607medicine.diseasedigestive system diseasesVaccination030104 developmental biologyOncologyCurative treatment030220 oncology & carcinogenesistecemotide (l-blp25)TecemotideNeoplasm Recurrence LocalImmunologic diseases. AllergybusinessAdjuvantResearch Articleliver-limited diseaseOncoImmunology
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Personalized vaccines for cancer immunotherapy

2018

Cancer is characterized by an accumulation of genetic alterations. Somatic mutations can generate cancer-specific neoepitopes that are recognized by autologous T cells as foreign and constitute ideal cancer vaccine targets. Every tumor has its own unique composition of mutations, with only a small fraction shared between patients. Technological advances in genomics, data science, and cancer immunotherapy now enable the rapid mapping of the mutations within a genome, rational selection of vaccine targets, and on-demand production of a therapy customized to a patient’s individual tumor. First-in-human clinical trials of personalized cancer vaccines have shown the feasibility, safety, and immu…

0301 basic medicinemedicine.medical_treatmentBioinformaticsmedicine.disease_causeCancer Vaccines03 medical and health sciences0302 clinical medicineCancer immunotherapyAntigens NeoplasmNeoplasmsmedicineHumansPrecision MedicineMutationMultidisciplinaryImmunodominant EpitopesCancerImmunotherapyPrecision medicinemedicine.diseaseVaccinationClinical trial030104 developmental biology030220 oncology & carcinogenesisMutationImmunotherapyCancer vaccineScience
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A liposomal RNA vaccine inducing neoantigen-specific CD4+ T cells augments the antitumor activity of local radiotherapy in mice

2020

Antigen-encoding, lipoplex-formulated RNA (RNA-LPX) enables systemic delivery to lymphoid compartments and selective expression in resident antigen-presenting cells. We report here that the rejection of CT26 tumors, mediated by local radiotherapy (LRT), is further augmented in a CD8+ T cell-dependent manner by an RNA-LPX vaccine that encodes CD4+ T cell-recognized neoantigens (CD4 neoantigen vaccine). Whereas CD8+ T cells induced by LRT alone were primarily directed against the immunodominant gp70 antigen, mice treated with LRT plus the CD4 neoantigen vaccine rejected gp70-negative tumors and were protected from rechallenge with these tumors, indicating a potent poly-antigenic CD8+ T cell r…

0301 basic medicinemedicine.medical_treatmentT cellImmunology03 medical and health sciences0302 clinical medicineAntigenmedicineImmunology and Allergyrna-lpxcd4+ t cellsradiotherapyRC254-282Antitumor activityLiposomeintegumentary systembusiness.industryNeoplasms. Tumors. Oncology. Including cancer and carcinogensRNARC581-607Radiation therapy030104 developmental biologymedicine.anatomical_structureOncologyLocal radiotherapy030220 oncology & carcinogenesisCancer researchImmunologic diseases. Allergybusinesscancer vaccinesneoantigensCD8OncoImmunology
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Immunogenicity of a Fully Synthetic MUC1 Glycopeptide Antitumor Vaccine Enhanced by Poly(I:C) as a TLR3-Activating Adjuvant.

2017

Fully synthetic MUC1 glycopeptide antitumor vaccines have a precisely specified structure and induce a targeted immune response without suppression of the immune response when using an immunogenic carrier protein. However, tumor-associated aberrantly glycosylated MUC1 glycopeptides are endogenous structures, “self-antigens”, that exhibit only low immunogenicity. To overcome this obstacle, a fully synthetic MUC1 glycopeptide antitumor vaccine was combined with poly(inosinic acid:cytidylic acid), poly(I:C), as a structurally defined Toll-like receptor 3 (TLR3)-activating adjuvant. This vaccine preparation elicited extraordinary titers of IgG antibodies which strongly bound human breast cancer…

0301 basic medicinemedicine.medical_treatmentchemical and pharmacologic phenomenaBiochemistryCancer Vaccines03 medical and health sciencesMice0302 clinical medicineImmune systemCancer immunotherapyAdjuvants ImmunologicDrug DiscoverymedicineAnimalsHumansGeneral Pharmacology Toxicology and PharmaceuticsMUC1PharmacologyVaccines SyntheticbiologyChemistryImmunogenicityOrganic ChemistryMucin-1GlycopeptidesDendritic CellsVirologyGlycopeptideToll-Like Receptor 3030104 developmental biologyPoly I-C030220 oncology & carcinogenesisTLR3biology.proteinMolecular MedicineAntibodyAdjuvantChemMedChem
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Induction of strong and persistent MelanA/MART-1-specific immune responses by adjuvant dendritic cell-based vaccination of stage II melanoma patients

2006

A significant percentage of stage II melanoma patients (tumor thickness >1 mm) remain at risk of tumor recurrence after primary tumor excision. In this study, we used tumor antigen-pulsed dendritic cells as an adjuvant for immunization of these “high-risk” melanoma patients after resection of the primary tumor. A total of 13 patients were included and vaccinated 6 times every 14 days with autologous dendritic cells pulsed with a MelanA/MART-1 peptide in combination with a recall antigen. Antigen-specific immune responses were monitored before, during and up to 1 year after the last vaccination. The majority of patients exhibited increased recall antigen-specific CD4+ T cell responses upon v…

AdultCD4-Positive T-LymphocytesCancer ResearchSkin NeoplasmsT cellCD8-Positive T-LymphocytesCancer VaccinesMART-1 AntigenImmune systemAdjuvants ImmunologicAntigens NeoplasmHumansMedicineMelanomaCell Proliferationbusiness.industryMelanomaVaccinationDendritic CellsDendritic cellmedicine.diseasePrimary tumorTumor antigenNeoplasm ProteinsTreatment Outcomemedicine.anatomical_structureddc: 610OncologyImmunizationImmunologybusinessCD8International Journal of Cancer
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