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Nanoliter-droplet thermophoresis for biomedical applications

机译:Nanoliter液滴热泳用于生物医学应用

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摘要

Specific interactions of biomolecules are central to cellular processes, drug discovery and immunodiagnostics. Such biological binding events are quantifiable via thermophoresis, the directed molecule movement driven by a temperature gradient. Biomolecule thermophoresis can be induced by infrared laser heating and analyzed using fluorescence. The objective of this thesis was to enhance and optimize these all-optical measurements, regarding instrumentation, assay design and biomedical applications.ududIn the first part, a novel measurement device and approach are presented, which cut down sample consumption 50-fold compared to established capillary thermophoresis. Instead of capillaries, analysis was performed in 10 nl-sample droplets transferred into standard 1536-well plates with a non-contact liquid handler (Labcyte). To prevent evaporation, the aqueous sample droplets were stabilized in an oil-surfactant mix. Temperature induced effects in this water-in-oil system were experimentally characterized and the results agreed with numerical simulation. The system’s applicability for biomolecular interaction analysis was confirmed with a DNA aptamer. The achieved miniaturization and the easy-to-handle multi-well plate format promote automated high-throughput screens. Besides aptamers, proteins should also be measurable very well when judging from the application depth of capillary measurements.ududThis versatility of protein investigation via capillary thermophoresis is demonstrated in the second part. Successful experiments were not only conducted in diverse liquids including crude cell lysate, but also for binding partners with a broad range of molecular weight ratios. Affinities between protein and protein, protein and peptide, as well as protein and small molecule were determined with high accuracy. Further flexibility arises from the herein presented label free approach which utilizes protein intrinsic UV fluorescence. It is caused by aromatic amino acids with tryptophan being the major intrinsic fluorophore. This approach exempts from the need to attach a dye, which saves time and excludes labeling artifacts.udThe wide variety of proteins that can be analyzed with thermophoresis also includes anti-bodies. ududTwo applications of such thermophoretic immunoassays are introduced in the third part. Firstly, the therapeutically interesting antibody MCPR3-7 was assessed. MCPR3-7 binds proteinase 3 (PR3), the major autoimmune target in granulomatosis with polyangiitis. Thermophoresis allowed to quantified MCPR3-7’s affinity and selectivity for different PR3 forms. In addition, it revealed that the antibody interferes with the complexation of PR3 and alpha-1-proteinase inhibitor (alpha-1PI). Secondly, a diagnostic autocompetition assay is described, which directly determines affinity and concentration of disease related biomarkers. It was applied for autoantibodies against the cardiac β1-adrenoceptor found in patients suffering from dilated cardiomyopathy. To detect these autoantibodies, the small peptide COR1 mimicking the adrenoceptor’s dominant epitope served as an artificial antigen. This tracer was labeled with a red-fluorescent dye, which ensured selectivity for measurements directly in untreated human blood serum. The results prove that thermophoresis is a valuable tool to characterize antibodies including those of diagnostic value and those with a therapeutic potential. ududTaken together, the presented innovations in assay design and the novel nl-droplet approach can be expected to considerably widen the application spectrum of thermophoresis in fundamental research, industrial drug discovery and clinical laboratory diagnostics.
机译:生物分子的特异性相互作用对于细胞过程,药物发现和免疫诊断至关重要。此类生物结合事件可通过热泳来定量,该热泳是由温度梯度驱动的定向分子运动。可以通过红外激光加热诱导生物分子热泳,并使用荧光进行分析。本文的目的是在仪器,化验设计和生物医学应用方面增强和优化这些全光学测量。 ud ud在第一部分中,提出了一种新颖的测量设备和方法,可将样品消耗减少50倍。与已建立的毛细管热泳相比。代替毛细管,使用非接触液体处理器(Labcyte)在转移到标准1536孔板中的10个nl样品液滴中进行分析。为了防止蒸发,将含水样品液滴稳定在油表面活性剂混合物中。对油包水系统中温度引起的影响进行了实验表征,结果与数值模拟吻合。 DNA适体证实了该系统在生物分子相互作用分析中的适用性。实现的小型化和易于操作的多孔板形式促进了自动化的高通量筛选。除了适体,从毛细管测量的应用深度来看,蛋白质也应能很好地测量。 ud ud通过毛细管热泳进行蛋白质研究的多功能性在第二部分中得到了证明。成功的实验不仅在包括粗细胞裂解液在内的多种液体中进行,而且还针对具有广泛分子量比的结合伴侣进行。蛋白质和蛋白质,蛋白质和肽之间的亲和力以及蛋白质和小分子之间的亲和力得到了高精度的测定。进一步的灵活性来自本文提出的利用蛋白质固有的UV荧光的无标记方法。它是由芳香族氨基酸引起的,其中色氨酸是主要的固有荧光团。这种方法无需附加染料,从而节省了时间并消除了标记伪影。 ud可以通过热泳分析的多种蛋白质还包括抗体。在第三部分中介绍了这种热泳免疫测定法的两个应用。首先,评估了具有治疗意义的抗体MCPR3-7。 MCPR3-7结合蛋白酶3(PR3),这是肉芽肿合并多血管炎的主要自身免疫靶标。通过热泳可以量化MCPR3-7对不同PR3形式的亲和力和选择性。另外,它揭示了该抗体干扰PR3和α-1-蛋白酶抑制剂(α-1PI)的复合。其次,描述了诊断性自动竞争测定法,其直接确定疾病相关生物标志物的亲和力和浓度。它被用于抗扩张型心肌病患者心脏β1-肾上腺素受体的自身抗体。为了检测这些自身抗体,模仿肾上腺素受体显性表位的小肽COR1充当了人工抗原。该示踪剂用红色荧光染料标记,可确保直接在未经处理的人血清中进行测量的选择性。结果证明,热泳是表征抗体的有价值的工具,包括具有诊断价值的抗体和具有治疗潜力的抗体。综上所述,在分析设计和新的nl-droplet方法方面的创新成果有望大大拓宽热泳在基础研究,工业药物发现和临床实验室诊断中的应用范围。

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    Seidel Susanne;

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