2004
Restoration of tumor specific human leukocyte antigens class I-restricted cytotoxicity by dendritic cell stimulation of tumor infiltrating lymphocytes in patients with advanced ovarian cancer
Santin A, Bellone S, Palmieri M, Bossini B, Cane' S, Bignotti E, Roman J, Cannon M, Pecorelli S. Restoration of tumor specific human leukocyte antigens class I-restricted cytotoxicity by dendritic cell stimulation of tumor infiltrating lymphocytes in patients with advanced ovarian cancer. International Journal Of Gynecological Cancer 2004, 14: 64-75. DOI: 10.1136/ijgc-00009577-200401000-00008.Peer-Reviewed Original ResearchPeripheral blood lymphocytesAdvanced ovarian cancerAdvanced ovarian cancer patientsDendritic cellsOvarian cancer patientsOvarian cancerT cellsCancer patientsClass ILymphoblastoid cell linesTumor antigen-loaded dendritic cellsTumor lysate-pulsed dendritic cellsTumor-specific T-cell responsesAutologous ovarian cancer cellsAutologous tumor target cellsDC stimulationLysate-pulsed dendritic cellsType 1 cytokine biasAntigen-loaded dendritic cellsAnti-HLA class IAutologous Epstein-Barr virusSpecific human leukocyte antigenProfessional antigen presenting cellsAdoptive T-cell immunotherapyAutologous tumor cellsRestoration of tumor specific human leukocyte antigens class I‐restricted cytotoxicity by dendritic cell stimulation of tumor infiltrating lymphocytes in patients with advanced ovarian cancer
Santin AD, Bellone S, Palmieri M, Bossini B, Cane' S, Bignotti E, Roman JJ, Cannon MJ, Pecorelli S. Restoration of tumor specific human leukocyte antigens class I‐restricted cytotoxicity by dendritic cell stimulation of tumor infiltrating lymphocytes in patients with advanced ovarian cancer. International Journal Of Gynecological Cancer 2004, 14: 64-75. PMID: 14764031, DOI: 10.1111/j.1048-891x.2004.014175.x.Peer-Reviewed Original ResearchConceptsPeripheral blood lymphocytesAdvanced ovarian cancerAdvanced ovarian cancer patientsDendritic cellsOvarian cancer patientsOvarian cancerT cellsCancer patientsClass ILymphoblastoid cell linesTumor antigen-loaded dendritic cellsTumor lysate-pulsed dendritic cellsTumor-specific T-cell responsesAutologous ovarian cancer cellsAutologous tumor target cellsDC stimulationLysate-pulsed dendritic cellsType 1 cytokine biasAntigen-loaded dendritic cellsAnti-HLA class IAutologous Epstein-Barr virusIFN-gamma-positive cellsSpecific human leukocyte antigenProfessional antigen presenting cellsAdoptive T-cell immunotherapy
2003
In vitro induction of tumor-specific HLA class I-restricted CD8+ cytotoxic T lymphocytes from patients with locally advanced breast cancer by tumor antigen-pulsed autologous dendritic cells11Supported in part by grants from the Arkansas Breast Cancer Research Program, the Arkansas Special Population Network (A-SPAN), and the Camillo Golgi Foundation, Brescia, Italy (to A.S.).
Kass R, Agha J, Bellone S, Palmieri M, Canè S, Bignotti E, Henry-Tillman R, Hutchins L, Cannon MJ, Klimberg S, Santin AD. In vitro induction of tumor-specific HLA class I-restricted CD8+ cytotoxic T lymphocytes from patients with locally advanced breast cancer by tumor antigen-pulsed autologous dendritic cells11Supported in part by grants from the Arkansas Breast Cancer Research Program, the Arkansas Special Population Network (A-SPAN), and the Camillo Golgi Foundation, Brescia, Italy (to A.S.). Journal Of Surgical Research 2003, 112: 189-197. PMID: 12888337, DOI: 10.1016/s0022-4804(03)00147-1.Peer-Reviewed Original ResearchConceptsAutologous tumor cellsAdvanced breast cancerHLA class IAntigen-pulsed dendritic cellsIntracellular cytokine expressionDendritic cellsBreast cancerFlow cytometric analysisTumor cellsCytokine expressionClass IT lymphocytesAutologous Epstein-Barr virus-transformed lymphoblastoid cell linesTumor antigen-pulsed dendritic cellsTumor lysate-pulsed dendritic cellsLysate-pulsed dendritic cellsPowerful antigen-presenting cellsTwo-color flow cytometric analysisCytometric analysisPeripheral blood mononuclear cellsSurface markersVirus-transformed lymphoblastoid cell linesEpstein-Barr virus-transformed lymphoblastoid cell linesColor flow cytometric analysisBreast Cancer Research Program
2000
In vitro induction of tumor-specific human lymphocyte antigen class I–restricted CD8+ cytotoxic T lymphocytes by ovarian tumor antigen–pulsed autologous dendritic cells from patients with advanced ovarian cancer
Santin A, Hermonat P, Ravaggi A, Bellone S, Pecorelli S, Cannon M, Parham G. In vitro induction of tumor-specific human lymphocyte antigen class I–restricted CD8+ cytotoxic T lymphocytes by ovarian tumor antigen–pulsed autologous dendritic cells from patients with advanced ovarian cancer. American Journal Of Obstetrics And Gynecology 2000, 183: 601-609. PMID: 10992180, DOI: 10.1067/mob.2000.107097.Peer-Reviewed Original ResearchConceptsAutologous tumor cellsAdvanced ovarian cancerTumor lysate-pulsed dendritic cellsLysate-pulsed dendritic cellsCytotoxic T lymphocytesDendritic cellsAntigen class IT lymphocytesOvarian cancerTumor cellsAutologous Epstein-Barr virus-transformed lymphoblastoid cell linesTumor-specific cytotoxic T-cell responseAutologous ovarian cancer cellsAutologous ovarian tumor cellsHuman leukocyte antigen (HLA) class IAdvanced stage ovarian cancerCytotoxic T lymphocyte responsesClass I monoclonal antibodiesCytotoxic T cell responsesVirus-transformed lymphoblastoid cell linesEpstein-Barr virus-transformed lymphoblastoid cell linesClass IHuman lymphocyte antigen class IAutologous dendritic cellsHigh cytotoxic activityInduction of Ovarian Tumor-Specific CD8+ Cytotoxic T Lymphocytes by Acid-Eluted Peptide-Pulsed Autologous Dendritic Cells
SANTIN A, BELLONE S, RAVAGGI A, PECORELLI S, CANNON M, PARHAM G. Induction of Ovarian Tumor-Specific CD8+ Cytotoxic T Lymphocytes by Acid-Eluted Peptide-Pulsed Autologous Dendritic Cells. Obstetrics And Gynecology 2000, 96: 422-430. DOI: 10.1097/00006250-200009000-00019.Peer-Reviewed Original ResearchConceptsAutologous tumor cellsAdvanced ovarian cancerT lymphocyte responsesCytotoxic T lymphocytesDendritic cellsT lymphocytesOvarian cancerTumor cellsLymphocyte responsesTumor-specific cytotoxic T-cell responseTumour peptide-pulsed dendritic cellsAutologous ovarian cancer cellsAutologous ovarian tumor cellsPeptide-pulsed dendritic cellsAnti-HLA class ICytotoxic T lymphocyte responsesCytotoxic T cell responsesTwo-color flow cytometric analysisPeripheral blood mononuclear cellsHLA-A2 monoclonal antibodyClass IAutologous dendritic cellsTumor-specific CD8T cell responsesStrong cytolytic activityInduction of ovarian tumor-specific CD8+ cytotoxic T lymphocytes by acid-eluted peptide-pulsed autologous dendritic cells.
Santin A, Bellone S, Ravaggi A, Pecorelli S, Cannon M, Parham G. Induction of ovarian tumor-specific CD8+ cytotoxic T lymphocytes by acid-eluted peptide-pulsed autologous dendritic cells. Obstetrics And Gynecology 2000, 96: 422-30. PMID: 10960637, DOI: 10.1016/s0029-7844(00)00916-9.Peer-Reviewed Original ResearchConceptsAutologous tumor cellsAdvanced ovarian cancerPeptide-pulsed dendritic cellsT lymphocyte responsesDendritic cellsT lymphocytesOvarian cancerTumor cellsLymphocyte responsesTumor-specific cytotoxic T-cell responsePeptide-pulsed autologous dendritic cellsTumour peptide-pulsed dendritic cellsAutologous ovarian cancer cellsAutologous ovarian tumor cellsAnti-HLA class ICytotoxic T lymphocyte responsesCytotoxic T cell responsesTwo-color flow cytometric analysisPeripheral blood mononuclear cellsHLA-A2 monoclonal antibodyClass IAutologous dendritic cellsTumor-specific CD8T cell responsesStrong cytolytic activity
1998
Radiation‐enhanced expression of E6/E7 transforming oncogenes of human papillomavirus‐16 in human cervical carcinoma
Santin A, Hermonat P, Ravaggi A, Chiriva‐Internati M, Pecorelli S, Parham G. Radiation‐enhanced expression of E6/E7 transforming oncogenes of human papillomavirus‐16 in human cervical carcinoma. Cancer 1998, 83: 2346-2352. PMID: 9840534, DOI: 10.1002/(sici)1097-0142(19981201)83:11<2346::aid-cncr14>3.0.co;2-g.Peer-Reviewed Original ResearchConceptsE6/E7 oncoproteinsMHC class ICervical carcinoma cell linesCarcinoma cell linesCervical carcinomaDose-dependent mannerE6/E7High dosesE7 oncoproteinsSiHa cell lineClass IRadiation therapyMajor histocompatibility complex restriction elementCell linesRadiation-induced drug resistanceHigh-risk HPV genotypesHPV-positive cervical carcinoma cell linesTumor cellsE6/E7 oncogenesE7 oncoprotein expressionE7 viral proteinsHuman papillomavirus infectionImportant risk factorTumor rejection antigensHuman papillomavirus 16Retinoic acid up-regulates the expression of major histocompatibility complex molecules and adhesion/costimulation molecules (specifically, intercellular adhesion molecule ICAM-1) in human cervical cancer
Santin A, Hermonat P, Ravaggi A, Chiriva-Internati M, Pecorelli S, Parham G. Retinoic acid up-regulates the expression of major histocompatibility complex molecules and adhesion/costimulation molecules (specifically, intercellular adhesion molecule ICAM-1) in human cervical cancer. American Journal Of Obstetrics And Gynecology 1998, 179: 1020-1025. PMID: 9790391, DOI: 10.1016/s0002-9378(98)70209-1.Peer-Reviewed Original ResearchMeSH KeywordsBlotting, NorthernFemaleFlow CytometryFluorescent Antibody Technique, IndirectGene Expression Regulation, NeoplasticHistocompatibility Antigens Class IHistocompatibility Antigens Class IIHumansIntercellular Adhesion Molecule-1RNA, MessengerTretinoinTumor Cells, CulturedUterine Cervical NeoplasmsConceptsMajor histocompatibility complex class IHistocompatibility complex class IComplex class IICAM-1 antigenCervical cancerCervical carcinoma cell linesSurface antigenClass IHuman cervical carcinoma cell lineRetinoic acidCarcinoma cell linesTherapeutic dosesHuman leukocyte antigen (HLA) class IClass II surface antigensCell linesAdhesion molecules ICAM-1Fluorescence-activated cell sorter analysisIntercellular adhesion molecule ICAM-1Additional clinical researchHuman leukocyte antigenMajor histocompatibility complex moleculesAntigen class IMolecules ICAM-1Use of retinoidsUntreated tumor cellsEffects of Retinoic Acid Combined with Irradiation on the Expression of Major Histocompatibility Complex Molecules and Adhesion/Costimulation Molecules ICAM-1 in Human Cervical Cancer
Santin A, Hermonat P, Ravaggi A, Chiriva-Internati M, Hiserodt J, Pecorelli S, Parham G. Effects of Retinoic Acid Combined with Irradiation on the Expression of Major Histocompatibility Complex Molecules and Adhesion/Costimulation Molecules ICAM-1 in Human Cervical Cancer. Gynecologic Oncology 1998, 70: 195-201. PMID: 9740690, DOI: 10.1006/gyno.1998.5060.Peer-Reviewed Original ResearchConceptsIntercellular adhesion molecule-1Class II surface antigensICAM-1 antigenSurface antigenMHC class ICervical cancer cellsClass IRetinoic acidCervical cancerHigh dosesUpregulated HLA class ITumor cellsSiHa cervical cancer cellsMajor histocompatibility complex class ICancer cellsHistocompatibility complex class IMajor histocompatibility complex moleculesMolecules ICAM-1Adhesion molecule-1HLA class IICAM-1 moleculesUntreated tumor cellsHuman cervical cancerCervical cancer therapyComplex class I
1997
Effects of irradiation on the expression of major histocompatibility complex class I antigen and adhesion costimulation molecules ICAM-1 in human cervical cancer
Santin A, Hermonat P, Hiserodt J, Chiriva-Internati M, Woodliff J, Theus J, Barclay D, Pecorelli S, Parham G. Effects of irradiation on the expression of major histocompatibility complex class I antigen and adhesion costimulation molecules ICAM-1 in human cervical cancer. International Journal Of Radiation Oncology • Biology • Physics 1997, 39: 737-742. PMID: 9336157, DOI: 10.1016/s0360-3016(97)00372-6.Peer-Reviewed Original ResearchConceptsMHC class ISurface antigenClass IAntigen expressionICAM-1High dosesClass II surface antigensCell linesSiHa cervical cancer cellsMajor histocompatibility complex class IHistocompatibility complex class IICAM-1 antigenMolecules ICAM-1Cell replicationSurface antigen expressionHuman cervical cancerComplex class ICervical cancer cellsCervical carcinoma cell linesCervical cell linesHuman cervical carcinoma cell lineDifferent time pointsCervical cancerCarcinoma cell linesHigh radiation doses
1996
Development and characterization of a clinically useful animal model of epithelial ovarian cancer in the Fischer 344 rat
Government. T, Rose, Tocco, Granger, DiSaia, Hamilton, Santin, Hiserodt. Development and characterization of a clinically useful animal model of epithelial ovarian cancer in the Fischer 344 rat. American Journal Of Obstetrics And Gynecology 1996, 175: 593-599. PMID: 8828419, DOI: 10.1053/ob.1996.v175.a73595.Peer-Reviewed Original ResearchMeSH KeywordsAdenocarcinomaAnimalsDisease Models, AnimalEpitheliumFemaleFlow CytometryHistocompatibility Antigens Class IHistocompatibility Antigens Class IIInjections, IntraperitonealIntercellular Adhesion Molecule-1MiceMice, NudeNeoplasm TransplantationOvarian NeoplasmsRatsRats, Inbred F344Tumor Cells, CulturedConceptsNuTu-19 cellsMajor histocompatibility complex class IEpithelial ovarian cancerHistocompatibility complex class IFischer 344 ratsComplex class IOvarian cancerCell surface antigensAnimal modelsAnimal survivalSurface antigenMajor histocompatibility complex class II antigensOvarian cancer animal modelKaplan-Meier survival analysisHuman ovarian epithelial carcinomaTumor cellsCell linesClass IClass II antigensExperimental animal modelsViable tumor cellsFemale athymic miceOvarian epithelial carcinomaParental tumor cellsUseful animal modelEffects of Irradiation on the Expression of Surface Antigens in Human Ovarian Cancer
Santin A, Hiserodt J, Fruehauf J, DiSaia P, Pecorelli S, Granger G. Effects of Irradiation on the Expression of Surface Antigens in Human Ovarian Cancer. Gynecologic Oncology 1996, 60: 468-474. PMID: 8774659, DOI: 10.1006/gyno.1996.0075.Peer-Reviewed Original ResearchConceptsMHC class ISurface antigenHER2-neuHigh dosesClass IITumor cellsCell linesClass IICAM-1 antigenHuman ovarian cancerHuman ovarian carcinoma cell linesOvarian carcinoma cell linesCA 125Carcinoma cell linesOvarian cancerICAM-1Radiation therapyIrradiation-induced upregulationImmune recognitionTumor tissueAntigenDosesCellsExposureExpression