Identifying antigens bound by novel scFvs targeting all subtypes of mesothelioma
Identifying antigens bound by novel scFvs targeting all subtypes of mesothelioma
批准号:
8209276
负责人:
BIN LIU
金额:
$31.1万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-03-01 至 2013-12-31
关键词:
AddressAffinityAntibodiesAntibody AffinityAntigen TargetingAntigensAsbestosBacteriophagesBehaviorBindingBiodistributionBiological AssayBlood VesselsCell membraneCell surfaceCellsClinicClinical Trials DesignCollaborationsComplementary DNADetectionDevelopmentDiagnosisDiagnosticDiseaseDrug KineticsEngineeringEnzyme-Linked Immunosorbent AssayEpitopesEukaryotic CellExhibitsExposure toFundingFutureGoalsHumanIn SituIn VitroLeadLibrariesLifeLigandsLightMCAM geneMalignant - descriptorMalignant Fibrous MesotheliomaMalignant mesotheliomaMapsMass Spectrum AnalysisMediatingMesotheliomaMesotheliumMethodsMolecularNational Cancer InstituteNational Institute for Occupational Safety and HealthOccupationsPatientsPositioning AttributePost-Translational Protein ProcessingProbabilityPropertyProteinsProteomeRadioimmunotherapyResearch PersonnelRouteScreening procedureSpecificityStagingSurfaceSurface AntigensSymptomsTherapeuticTissuesTumor AntigensWorkX-Ray Computed TomographyXenograft ModelYeastsabstractingantigen bindingassay developmentbasecombinatorialdisorder subtypeexpression cloninghuman monoclonal antibodiesimprovedin vivo Modelmembermesothelinneoplastic cellnovelnovel diagnosticsnovel therapeuticsoutcome forecastprognosticsingle photon emission computed tomographysmall moleculesoundtherapeutic developmenttherapeutic targettumor
中文摘要
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英文摘要
Project Summary/Abstract:
The objective of this proposal is to establish the molecular identities of a panel of internalizing mesothelioma
cell surface antigens that are bound by a panel of novel internalizing human single chain antibodies (scFvs)
that target both epithelioid and sarcomatoid (a particularly recalcitrant form) mesothelioma.
The proposed study is built upon our recent work where we have selected a combinatorial human
antibody library on live mesothelioma cells and identified a panel of internalizing scFvs that bind to all subtypes
of mesothelioma cells in situ with no binding to normal mesothelium, and mediate efficient intracellular delivery
of small molecule payloads to both epithelioid and sarcomatoid mesothelioma cells in vitro. We hypothesize
that these scFvs define novel mesothelioma antigens that have significantly greater specificity, subtype
coverage and therapeutic potential than currently known antigens. Identification of these novel mesothelioma
antigens would (1) allow further engineering of the lead antibodies to improve affinity, specificity,
pharmacokinetics and biodistribution, (2) allow development of additional antibodies targeting non-overlapping
epitopes of the same antigen, which is often required for diagnostic assay development, (3) enhance our
understanding of tumor behaviors that involve the cell membrane, which may lead to identification of additional
novel targets for further therapeutic development, and (4) provide a sound rationale for clinical trial design such
as pre-screening of patients based on target expression.
We are uniquely positioned to accomplish this goal as we have developed and adapted effective
methods to identify tumor antigens targeted by scFvs. Key to this proposal is our newly developed novel
antigen identification strategies based on eukaryotic cell surface display of the human proteome. In addition,
we have established functional collaborations with Drs. Burlingame and Chalkley and their National Mass
Spectrometry Facility at UCSF to identify tumor antigens that are difficult to identify by expression cloning
methods such as post-translationally modified antigens. We propose to use the methods and strategies that we
have developed and adapted to systematically identify mesothelioma cell surface antigens targeted by our
panel of internalizing human scFvs.
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会议论文
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海外基金