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Pyrroloquinoline quinone (PQQ) labeling moieties for the sensitive detection of biomolecules.

机译:吡咯并喹啉醌(PQQ)标记部分可用于生物分子的灵敏检测。

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摘要

Since the development of the immunoassay, biomolecule detection via binding assays has become vitally important in many fields. High sensitivity in such assays usually requires low molecular weight labeling species (i.e., tracers) that typically must be detected using complex instrumentation (fluorimeter, etc.). In this thesis, the use of a specific enzyme cofactor reconstitution reaction employing pyrroloquinoline quinone (PQQ) with apo-glucose dehydrogenase (apo-GDH) is explored as a simple and high sensitivity tracer system for detecting DNA and antimicrobial peptides, either visually or using conventional spectrophotometry.;First, PQQ is encapsulated in liposomes, which are tagged with DNA and used in a sandwich-type heterogeneous assay for the detection of single-stranded DNA. After the binding reaction, the bound liposomes are lysed to release the PQQ. This assay has a detection limit of 62 fmol of single-stranded DNA, and thus rivals more conventional fluorescence-based DNA detection systems, even though only a visual read is required to detect the presence of target DNA. PQQ-loaded liposomes are also utilized in the homogeneous detection of the membrane bilayer permeabilization induced by antimicrobial peptides. Detection of such peptides at nM levels is possible using this assay scheme. Further, PQQ is doped into polymeric nanospheres, which are subsequently tagged with DNA, and also employed in a sandwich-type assay for single-stranded DNA detection. The nanoparticles show enhanced PQQ-loading capacity compared to the liposomes, and could eventually exhibit even lower limits of detection than the liposome-based assay. Lastly, initial results with a PQQ-linked oligonucleotide probe for homogeneous endpoint PCR detection of target DNA at levels of 15 molecules with only 40 PCR cycles are demonstrated, along with initial work to optimize the synthesis of the required probe. With further optimization, the PQQ-based reconstitution assay could be adapted as a tracer system to devise a variety of high-sensitivity field test devices to monitor important biomolecules.
机译:自免疫测定法发展以来,通过结合测定法进行生物分子检测在许多领域已变得至关重要。在这种测定中,高灵敏度通常需要低分子量的标记物(即示踪剂),通常必须使用复杂的仪器(荧光计等)进行检测。在本文中,探索了使用吡咯并喹啉醌(PQQ)和脱辅基葡萄糖脱氢酶(apo-GDH)的特定酶辅因子重建反应作为一种简单,高灵敏度的示踪剂系统,可通过肉眼或视觉检测DNA和抗菌肽的方法。常规分光光度法。首先,将PQQ包裹在脂质体中,脂质体用DNA标记并用于三明治型异质检测中以检测单链DNA。结合反应后,裂解结合的脂质体以释放PQQ。该测定法的检测极限为62 fmol单链DNA,因此可以与更常规的基于荧光的DNA检测系统相媲美,即使只需要视觉读取即可检测目标DNA的存在。载有PQQ的脂质体还用于均质检测由抗菌肽诱导的膜双层通透性。使用该测定方案可以以nM水平检测此类肽。此外,将PQQ掺入聚合物纳米球中,然后用DNA标记,然后也用于三明治型测定法中进行单链DNA检测。与基于脂质体的纳米颗粒相比,纳米颗粒显示出更高的PQQ负载能力,并且最终可能显示出甚至更低的检测限。最后,证明了使用PQQ连接的寡核苷酸探针以15个分子的水平进行均质终点PCR检测,仅需40个PCR循环的初步结果,以及优化所需探针合成的初步工作。通过进一步优化,可以将基于PQQ的重组测定法用作示踪剂系统,以设计出各种高灵敏度的现场测试设备来监测重要的生物分子。

著录项

  • 作者

    Zimmerman, Laura B.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Biochemistry.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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