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Glioma Therapy Using Targeted Oncolytic HSV Vectors

Glioma Therapy Using Targeted Oncolytic HSV Vectors
使用靶向溶瘤 HSV 载体进行神经胶质瘤治疗
批准号:
7774399
负责人:
Joseph C Glorioso
金额:
$36.57万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-21 至 2012-02-28
关键词:
5 fluorouridine6-methylpurineAmino AcidsAnimal ModelAnimalsAntibodiesAntineoplastic AgentsApoptosisAttenuatedBasement membraneBenchmarkingBindingBrainBrain NeoplasmsCandidate Disease GeneCellsCessation of lifeChloride IonChloridesChlorotoxinClinical TrialsCollagenCollagen Type IVCombined Modality TherapyCytochrome P450DiffusionDiseaseDorsalDoseEffectivenessEngineeringExtracellular MatrixFamilyG207GanciclovirGene CombinationsGene DeliveryGenesGenomeGlioblastomaGliomaGlycoproteinsGoalsGrowthHSV glycoprotein CHSV vectorHSV-1 vectorHerpesviridaeHumanHuman EngineeringImplantInfectionInflammatoryInterleukin-13InvestigationLabelLacZ GenesLeftLifeLigandsLuc GeneLuciferasesLyticMMP2 geneMMP9 geneMalignant - descriptorMatrix MetalloproteinasesMedicalMembraneMethodsMicroscopyModelingMutateMutationN-terminalNeoplasm MetastasisNeurogliaNeuronsNormal CellNude MiceOncolyticOutcomeOutcome StudyPathogenesisPatientsPeptidesPerformancePhasePhenotypePlaguePreventionProdrugsProteinsPurine-Nucleoside PhosphorylaseRadiation ToleranceRadioRadiosurgeryRecombinantsRecurrenceRelative (related person)Research PersonnelRoleSafetyScorpionsSevere Adverse EventSimplexvirusSiteSkinTestingTimeTransgenesTumor Necrosis Factor-alphaTumor Necrosis FactorsUrsidae FamilyVero CellsVertebral columnViralVirionVirusVirus ReceptorsVirus Replicationanti-cancer therapeuticantitumor agentbrain tissuecancer therapycell killingcell motilitycell typechemotherapycollagenasecytokinedesigngene therapyimaging modalityimprovedinhibitor/antagonistinterleukin-13 receptorkillingsluciferinmembermutantnectinneoplastic cellnovelnovel therapeuticsoncolysisoncolytic vectorparticlepre-clinicalpreventprogramspromoterreceptorresearch studytumortumor growthtwo-photonvector

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英文摘要
Glioblastoma multiforme(GBM) is a devastating disease that almost invariably leads to patient death despite best efforts using standard therapies that include surgery, radiation and chemotherapy. New therapeutic interventionsare needed which may be used in combination with standard medical practice. Among these treatments, gene therapy potentially holds promise for treatment of GBM however impediments to effective gene delivery remain. Highly attenuated replication competent HSV-1 vectors providea powerful opportunityto provide effective gene delivery in additionto the natural lytic features (oncolysis) and early phase human trials support the safety of this approach. In this proposal, experiments are outlinedto explore methodsto enhancethe potency of HSV oncolyticvectors through improvedvector distribution within the tumor mass, the testing of additional mutant vector backbones whose performance may be improved by enhanced and more specific intra-tumoralreplicationand through the use of additionaltransgenes that may be more effective in destruction of the tumor mass including locally infiltrating tumor cells into normal brain tissue. Throughout this investigationvector performanceand tumor killing will be evaluated in combinationwith radiosurgery. We will use the performance of G207 as a benchmark with which to compare any vector improvements. In four related specific aims we will: (i) Exploit the use of collagenases to enhance intra-tumoral vector distribution as visualized by advanced vital microscopy; (ii) Examine new genetic alterations in the HSV genome in a search for more active mutant oncolytic vectors that have the same or better safety profiles as vectors currently used in early phasepatient studies (e.g. G207); (iii) Develop retargeting strategies to enable tumor-specific HSV infection through recognition of tumor-cell receptors; and (iv) Introduce novel anti-tumor transgenes into the vector backbone that include (a) purine nucleoside phosphorylase (PNP) in combination with 6-methylpurine(MeP) treatment, (b) chlorotoxin (CltX), a peptide that inhibits tumor cell migration and may induce tumor cell apoptosis (c) tumor necrosis factor (TNFoc)that acts to sensitize tumor cells and the tumor vasculature to radiosurgical methods. The outcome of these studies are intended to discover new vectors, more effective transgenes and delivery strategies which together may provide gene therapy as an effective approach to at least prolong the survival of patients with recurrent GBM over currently available treatment methods.
期刊论文(1)
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会议论文
Dedifferentiation rescues senescence of progeria cells but only while pluripotent.
去分化可以挽救早衰细胞的衰老,但仅限于多能细胞。
DOI: 10.1186/scrt69
发表时间: 2011
期刊: Stem cell research & therapy
影响因子: 7.5
作者: [Niedernhofer,LauraJ, Glorioso,JosephC, Robbins,PaulD]
通讯作者: Robbins,PaulD
Arming Oncolytic HSV Vectors to Induce Anti-GBM Immune Responses in Syngeneic Mice
Arming Oncolytic HSV Vectors to Induce Anti-GBM Immune Responses in Syngeneic Mice
Project 1: Arming Oncolytic HSV Vectors to Improve Virolysis in Syngeneic Mouse Models of GBM
  • 批准号:
    10019362
  • 项目类别:
  • 资助金额:
    $33.92万
  • 财政年份:
    2013
  • 负责人:
    Joseph C Glorioso
  • 依托单位:
Project 1: Arming Oncolytic HSV Vectors to Improve Virolysis in Syngeneic Mouse Models of GBM
  • 批准号:
    10491206
  • 项目类别:
  • 资助金额:
    $34.83万
  • 财政年份:
    2013
  • 负责人:
    Joseph C Glorioso
  • 依托单位: