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In vitro detection of adrenocorticotropic hormone levels by fluorescence correlation spectroscopy immunoassay for mathematical modeling of glucocorticoid-mediated feedback mechanisms

机译:荧光相关光谱免疫测定法体外检测促肾上腺皮质激素水平对糖皮质激素介导的反馈机制的数学建模

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摘要

Performing quantitative, highly sensitive measurements at a single molecule level is often necessary to address specific issues related to complex molecular and biochemical systems. For that purpose, we present a technique exploiting both the flexibility of immunoassays as well as the low operating costs and high throughput rates of the fluorescence correlation spectroscopy (FCS) method. That way we have established a quantitative measurement technique providing accurate and flexibly time resolved data of single molecules. Nanomolar changes in adrenocorticotropic hormone (ACTH) levels have been detected in a short time-frame that are caused by fast feedback actions in AtT-20 anterior pituitary glands in vitro. Especially with respect to clinical diagnostic or mathematical modeling this improved FCS setup may be of high relevance in order to accurately quantify the amounts of peptide hormones—such as ACTH—as well as signaling molecules, transcription factors, etc., being involved in intra- and extracellular reaction networks.
机译:为了解决与复杂分子和生化系统有关的特定问题,通常需要在单个分子水平上进行定量,高度敏感的测量。为此,我们提出了一种利用免疫分析的灵活性以及荧光相关光谱(FCS)方法的低运行成本和高吞吐率的技术。这样,我们建立了定量测量技术,可提供准确且灵活的时间分辨的单分子数据。已在短时间内检测到促肾上腺皮质激素(ACTH)水平的纳摩尔变化,这是由AtT-20垂体前叶体外的快速反馈作用引起的。尤其是在临床诊断或数学建模方面,这种改进的FCS设置可能具有很高的相关性,以便准确定量参与内源性免疫反应的肽激素(例如ACTH)以及信号分子,转录因子等的数量。和细胞外反应网络。

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