Protein Microarrays for the Humoral Response in Cancer
Protein Microarrays for the Humoral Response in Cancer
批准号:
7070540
负责人:
David M. Lubman
金额:
$29.24万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-06-15 至 2009-05-31
关键词:
benign prostate hyperplasiabioinformaticsbiomarkerbiotechnologyclinical researchgenetic screeninghigh performance liquid chromatographyhuman subjectimmune responsemalemass spectrometrymatrix assisted laser desorption ionizationmicroarray technologyneoplasm /cancer immunodiagnosisprognosisprostate neoplasmsprostate preneoplastic stateproteomicstumor antigens
中文摘要
描述(由申请人提供):在拟议的研究中,我们计划开发检测前列腺肿瘤抗原的体液反应的方法,作为疾病的诊断和预后血清生物标志物。该方法涉及使用由细胞裂解物的二维液相分馏产生的蛋白质微阵列。在第一维中,利用基于pl的色谱分离将大量蛋白质在扩展的pH范围内分离成离散的pH分数。在第二个维度,每个pH分数的非孔(NPS)反相(RP)高效液相色谱将被纯化的蛋白质从柱洗脱液中分离到硝化纤维素载玻片上。结果将是一个蛋白质微阵列,由bb50 2500个蛋白质点组成,可以与患者血清进行测试,以检查由此产生的体液反应。前列腺癌蛋白微阵列将用于询问来自健康对照个体、良性前列腺增生(BPH)患者和活检证实的前列腺癌患者的血清。使用这种方法,我们希望表征前列腺癌患者的标志性体液反应。该方法将来自实际肿瘤细胞的蛋白质排列,以便患者血浆中的抗体可以对不一定由其他方法产生的蛋白质的修饰形式作出反应。引起血清体液反应的蛋白质可以通过质谱直接从液体组分中分析,其中精确的MW值和酶促肽图分析通过CE-TOF-MS和MALDI-TOF-MS可以用于鉴定和确定当前的修饰。修饰后的蛋白质可能对血清中的抗体提供选择性反应,而未修饰的蛋白质可能不提供这种反应。液相中蛋白质的存在使这种方法适用于大量样品的自动筛选。将探讨抗体反应在筛查/诊断(即补充PSA检测)和预后(即区分惰性和侵袭性前列腺癌)中的应用。此外,生物信息学方法将用于确定是否存在前列腺癌亚类,以便更好地区分临床结果。将开发一种预测模型,根据局部前列腺癌样本的体液表达谱对临床有意义的标志物进行分类;因此,候选肿瘤抗原可用于进一步的实验研究。候选肿瘤抗原将使用组织微阵列进一步验证。
英文摘要
DESCRIPTION (provided by applicant): In the proposed research, we plan to develop methods that examine the humoral response to prostate tumor antigens as a diagnostic and prognostic serum biomarker of disease. The method involves the use of protein microarrays produced by the two-dimensional liquid phase fractionation of cell lysates. A pl-based chromatographic separation is utilized in the first dimension to fractionate large numbers of proteins into discrete pH fractions over an extended pH range. In the second dimension, nonporous (NPS) reversed phase (RP) HPLC of each pH fraction will be used to separate out purified proteins to be spotted from the column eluent onto nitrocellulose slides. The result will be a protein microarray consisting of >2500 protein spots that can be tested against patient sera to examine resulting humoral response. The prostate cancer protein microarrays will be used to interrogate serum from healthy control individuals, patients with benign prostatic hyperplasia (BPH), and those with biopsy-proven prostate cancer. Using this approach, we hope to characterize a signature humoral response for patients with prostate cancer. The method arrays proteins from actual tumor cells so that antibodies in patient plasma may react to modified forms of a protein not necessarily produced by other methods. Proteins eliciting a humoral response to serum can be analyzed directly from liquid fractions by mass spectrometry where an accurate MW value and analysis of enzymatic peptide maps by CE-TOF-MS and MALDI-TOF-MS can be used for identification and determination of present modifications. Modified proteins may provide selective response to antibodies in sera that unmodified proteins may not provide. The presence of proteins in the liquid phase makes this method amenable to automated screening of large numbers of samples. The antibody response will be explored for its utility in screening/diagnosis (i.e. to supplement PSA testing) and prognosis (i.e., distinguish between indolent and aggressive prostate cancer). In addition, bioinformatic methods will be used to determine whether subclasses of prostate cancer exist that better discriminate among clinical outcomes. A predictive model will be developed cataloguing clinically meaningful markers based on humoral expression profiles from localized prostate cancer samples; thus, candidate tumor antigens can be identified for further experimental study. Candidate tumor antigens will be further validated using tissue microarrays.
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会议论文
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