Accelerated molecular probe pipeline
Accelerated molecular probe pipeline
批准号:
7798215
负责人:
Gerard A Cangelosi
金额:
$97.19万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-04-03 至 2014-03-31
关键词:
AffinityAntibodiesAntigensAvidityBindingBiological MarkersBiomedical ResearchCategoriesCell SeparationCell surfaceCellsCystDevelopmentDiagnosticDiagnostic testsEntamoeba histolyticaFecesFormalinGenerationsGrantImmunoprecipitationInstructionLibrariesMass Spectrum AnalysisMethodsMolecular ProbesMonoclonal AntibodiesPerformancePharmaceutical PreparationsProtocols documentationResearchResearch PersonnelRouteSaccharomyces cerevisiaeSamplingSolutionsSpeedSurfaceYeastsbaseenteric pathogenimprovedmodel developmentnanoparticlenovelnovel vaccinespoint-of-care diagnosticsprogramsscaffold
中文摘要
描述(由申请人提供):该基金将开发,验证和利用快速生成分子探针的新协议。分子探针(通常是单克隆抗体)的产生仍然是生物医学研究,生物标志物发现和诊断测试开发的关键瓶颈。已经开发了几种方法来克服这个问题。例如,酵母展示文库在酿酒酵母细胞的表面上表达不同的单链片段可变(scFv)抗体。通过使用荧光激活细胞分选(FACS),可以在2至3周内从幼稚文库中选择特异性结合抗原的酵母克隆。然而,在酵母细胞表面上表现良好的所选探针在溶液中通常表现不佳。为了实现更广泛的有用,加速分子探针的管道,这笔赠款将利用酵母scFv展示的速度和通量,同时克服其先天限制。酵母免疫沉淀-串联质谱(酵母IP-MS/MS)方法将用于提高生物标志物研究的速度和通量。新型纳米颗粒支架与流式细胞仪的结合将用于提高scFv与抗原结合的功能亲和力。作为开发这些方法的模型,该项目将鉴定溶组织内阿米巴(一种重要的肠道病原体和B类病原体)的新型包囊抗原。加速分子探针管道(AMPP)将首先用于鉴定和验证这些生物标志物,然后产生高活性的scFv探针,用于掺入改进的E.粪便中有溶组织囊肿。相关性(参见说明):如果成功,该项目将改变分子探针的研究,生物标志物发现和诊断测试的方式。它将有利于任何利用分子探针的研究或开发工作,并为新疫苗,药物和诊断铺平更快的道路。
英文摘要
DESCRIPTION (provided by applicant): This grant will develop, validate, and utilize novel protocols for rapid generation of molecular probes. The generation of molecular probes (usually monoclonal antibodies) remains a critical bottleneck in biomedical research, biomarker discovery, and diagnostic test development. Several approaches have been developed to overcome this problem. For example, yeast display libraries express diverse single chain-fragment variable (scFv) antibodies on the surfaces of Saccharomyces cerevisiae cells. By using fluorescent-activated cell sorting (FACS), yeast clones that bind specifically to antigens can be selected from naive libraries in 2 to 3 weeks. However, selected probes that perform well on yeast cell surfaces often perform poorly in solution. In order to achieve a more broadly useful, accelerated pipeline for molecular probes, this grant will leverage the speed and throughput of yeast scFv display, while overcoming its innate limitations. A yeast immunoprecipitation - tandem mass spectroscopy (yeast IP-MS/MS) approach will be used to improve the speed and throughput of biomarker research. Novel nanoparticle scaffolds combined with FACS will be used to improve the functional affinity of scFv binding to antigens. As a model for the development of these approaches, the project will identify novel cyst antigens of Entamoaeba histolytica, an important enteric pathogen and Category B agent. The accelerated molecular probe pipeline (AMPP) will be used first to identify and validate these biomarkers, and then to generate high-activity scFv probes for incorporation into an improved diagnostic test for E. histolytica cysts in stool. RELEVANCE (See instructions): If successful, this project will change the way molecular probes are generated for research, biomarker discovery, and diagnostic testing. It will benefit any research or development effort that utilizes molecular probes, and pave faster routes to new vaccines, drugs, and diagnostics.
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会议论文
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Point-of-care concentration and detection of pathogen antigens in samples
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财政年份:2011
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负责人:Gerard A Cangelosi
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依托单位:
In situ analysis of bacterial biosynthetic activity in subgingival plaque
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项目类别:
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财政年份:2011
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依托单位:
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依托单位:
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海外基金