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Engineered Self-Assembling Fvs for Piezoimmunosensors

Engineered Self-Assembling Fvs for Piezoimmunosensors
用于压电免疫传感器的工程自组装 Fv
批准号:
6935938
负责人:
XIANGQUN ZENG
金额:
$31.84万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-12 至 2007-08-31

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中文摘要
翻译
描述(由申请人提供):压电免疫传感器(PZs)是一种生物传感器,其中将抗体置于石英晶体微量天平(QCM)上,以检测抗体与抗原结合时的微小质量变化。然而,由于完整抗体的复杂性质,在生物传感器中使用PZ技术是有问题的,这会导致非特异性相互作用和分子捕获的问题。为了克服这些问题,提出了一种方法,其中重组抗体可变片段(Fv)在自组装单分子膜(SAM)作为生物识别剂。工程化的Fv将形成涂覆QCM表面的抗原结合位点的“草坪”,提供化学稳定的、含有大量结合位点并形成薄的均匀表面的传感层。初步研究将集中于开发α-人/山羊IgG Fv-SAM以测试基本原理。将使用四种生物工程方法来创建具有必要属性的Fv-SAM。 将并行使用电化学、网络阻抗分析和原子力显微镜(AFM)来表征固定化的Fv-SAM层的缺陷/针孔结构、刚性、取向、稳定性和表面覆盖。与其他免疫测定和/或传统方法(GC/LC或GC/MS、LC/MS)相比,将对Fv-SAM压电免疫传感器的灵敏度、选择性、线性、稳定性、检测限和可靠性进行评价和验证。对各种抗原/毒素具有特异性的传感器阵列可以自动化或与流动注射系统组合,以测定复杂样品中的不同分析物,并在线显示结果。该项目可能导致生产一种廉价,易于使用的生物传感器,可快速,精确地识别生物制剂
英文摘要
DESCRIPTION (provided by applicant): Piezoimmunosensors (PZs) are biosensors in which antibodies are placed on a quartz crystal microbalance (QCM) to detect minute changes in mass as the antibodies bind with antigens. However, use of PZ technology in biosensors is problematic due to the complex nature of whole antibodies, which cause problems with non-specific interactions and molecule trapping. To overcome these problems, an approach in which recombinant antibody variable fragments (Fv) in self assembling monolayers (SAM) serve as the biorecognition agent is proposed. Engineered Fvs will form a "lawn" of antigen-binding sites coating the surface of the QCM, providing a sensing layer which is chemically stable, contains high numbers of binding sites, and forms a thin uniform surface. The initial study will focus on developing an a-human/goat IgG Fv- SAM to test the underlying principle. Four bioengineering methods will be used to create an Fv-SAM that possesses the necessary attributes. Electrochemistry, network impedance analysis, and Atomic Force Microscope (AFM) will be used in parallel to characterize the immobilized Fv-SAM layers for defects/pin hole structure, rigidity, orientation, stability, and surface coverage. The Fv-SAM piezoimmunosensor will be evaluated and validated for sensitivity, selectivity, linearity, stability, detection limits, and reliability in comparison to other immunoassays and/or traditional methods (GC/LC or GC/MS, LC/MS). An array of sensors specific for various antigens/toxins could be automated or combined with flow injection systems to assay different analytes in complex samples with on-line display of results. The project could lead to production of an inexpensive, easy-to-use biosensor which provides fast, precise identification of biological agents
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