Targeted and global proteomic strategies for early breast cancer detection
Targeted and global proteomic strategies for early breast cancer detection
批准号:
7920551
负责人:
SUSAN J. FISHER
金额:
$39.34万
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:
2009-09-28 至 2012-08-31
关键词:
AccountingAddressAntibodiesBenignBiologicalBiological MarkersBiopsyBloodBreast Cancer CellBreast Cancer Early DetectionBreast DiseasesBritish ColumbiaCancer PatientClassificationClinicalCommunitiesDataData AnalysesData SetEarly DiagnosisElementsFundingHumanInflammatoryInstitutesMalignant NeoplasmsMass Spectrum AnalysisMethodsMiningMusPhasePhosphorylationPlasmaPost-Translational Protein ProcessingProcessProtein ArrayProteinsProteolysisProteomicsProtocols documentationRNA SplicingResearchResearch PersonnelResourcesRheumatoid ArthritisSamplingScientistSoftware ToolsSpecimenStatistical MethodsTechnologyTestingUniversity HospitalsWomanWorkbaseglycosylationinstrumentmalignant breast neoplasmoxidative damagetooltumor
中文摘要
描述(由申请人提供):我们建议与由U24机制资助的其他研究人员合作,以评估蛋白质组学技术,这些技术将通过应用基于血液的检测来早期检测几种肿瘤类型。我们的团队由LBNL,UCSF,Buck研究所,MD安德森医院和不列颠哥伦比亚省大学的科学家组成,拥有该项目所需的广泛专业知识。我们将专注于乳腺癌。最初,我们将研究全球策略和基于靶向质谱(MS)的方法,以开发用于识别小鼠血浆中人乳腺癌细胞蛋白质特征的最佳工作流程。全球战略将利用强调定量比较的多个工作流程。靶向方法将集中在由异常RNA剪接产生的癌症特异性蛋白质上。候选生物标志物将使用反相蛋白阵列进行验证。所需的抗体将由Epitomics产生。该项目的下一阶段将使用人类临床样本。具体而言,我们将应用一种类似的优化方法来分析从乳腺癌患者(n = 200)中前瞻性收集的血浆样本。将从患有良性乳腺疾病的健康女性和患有类风湿性关节炎的女性中获得对照样品,以说明与炎症过程相关的蛋白质的贡献。我们的候选方法靶向剪接体和翻译后修饰(例如,糖基化、磷酸化、蛋白水解和氧化损伤)。我们还包括一个计划,建立一个系统的方法来标准化蛋白质组学协议和数据分析的群体,利用可治愈性来分析在众多平台上生成的质谱和强大的统计方法,我们将采用挖掘这些大型数据集。还讨论了RFA的其他几个要素。例如,我们总结了我们的仪器的分析能力和我们共享项目产生的资源,包括生物标本,协议,数据,软件工具和智力资源的战略。最后,我们设想,我们的团队,与其他CPTAC团队和NCI一起,将为研究界开发方法,工具和参考样本,使基于MS的癌症生物标志物发现的承诺成为现实。
英文摘要
DESCRIPTION (provided by applicant): We propose to work cooperatively with other investigators funded by this U24 mechanism to evaluate proteomic technologies that will enable the early detection of several tumor types through the application of blood-based tests. Our group, consisting of scientists at LBNL, UCSF, The Buck Institute, MD Anderson Hospital, and the University of British Columbia, has the broad expertise that this project requires. We will focus on breast cancer. Initially, we will examine both global strategies and targeted mass spectrometry (MS)-based approaches to develop optimal workflows for the identification of protein signatures of human breast cancer cells in murine plasma. The global strategies will utilize multiple workflows that emphasize quantitative comparisons. The targeted approaches will focus on cancer-specific proteins that result from aberrant RNA splicing. Candidate biomarkers will be validated using reverse phase protein arrays. The requisite antibodies will be generated by Epitomics. The next phase of the project will employ human clinical samples. Specifically, we will apply an analogous, optimized approach for analyzing plasma samples that will be prospectively collected from breast cancer patients (n = 200). Control samples will be obtained from healthy women with benign breast disease and from women with rheumatoid arthritis to account for the contribution of proteins associated with inflammatory processes. Our candidate approach targets both the spliceome, which will be profiled using breast cancer biopsies from the plasma donors, and posttranslational modifications (e.g., glycosylation, phosphorylation, proteolysis and oxidative damage). We also include a plan for establishing a systematic way to standardize proteomic protocols and data analysis among the groups that exploits curability to analyze mass spectra generated on numerous platforms and the robust statistical methods we will employ to mine these large data sets. Several other elements of the RFA are also addressed. For example, we summarize the analysis capacity of our instruments and our strategy for sharing project-generated resources including biological specimens, protocols, data, software tools, and intellectual resources. In the end, we envision that our group, in conjunction with the other CPTAC teams and the NCI, will develop methods, tools and reference samples for the research community that will make the promise of MS-based cancer biomarker discovery a reality.
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会议论文
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海外基金