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Hydrogel based protein biochip for parallel detection of biomarkers for diagnosis of a Systemic Inflammatory Response Syndrome (SIRS) in human serum

机译:基于水凝胶的蛋白质生物芯片,用于诊断人血清的全身炎症反应综合征(SIRS)的生物标志物的平行检测

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摘要

The Systemic Inflammatory Response Syndrome (SIRS), a sepsis related inflammatory state, is a self-defense mechanism against specific and nonspecific stimuli. The six most extensively studied inflammatory biomarkers for the clinical diagnosis of SIRS are interleukin 4 (hIL-4), interleukin 6 (hIL-6), interleukin 10 (hIL-10), tumor necrosis factor alpha (hTNF-α), interferon gamma (hIFN-γ) and procalcitonin (hPCT). These biomarkers are naturally present (but usually only at low concentration) in SIRS infected patients [1, 2] and thus the development of a highly sensitive detection method is of major clinical interest. However, the existing analytical techniques are lacking in required analytical sensitivity and parallel determination of these biomarkers. We developed a fast, easy and cost-efficient protein microarray biochip where the capture molecules are attached on hydrogel spots, enabling SIRS diagnosis by parallel detection of these six clinically relevant biomarkers with a sample volume of 25 μl. With our hydrogel based protein microarray biochip we achieved a limit of detection for hIL-4 of 75.2 pg/ml, for hIL-6 of 45.1 pg/ml, for hIL-10 of 71.5 pg/ml, for hTNF-α of 56.7 pg/ml, for IFN-γ of 46.4 pg/ml and for hPCT of 1.1 ng/ml in spiked human serum demonstrating sufficient sensitivity for clinical usage. Additionally, we demonstrated successful detection of two relevant SIRS biomarkers in clinical patient samples with a turnaround time of the complete analysis from sample-to-answer in less than 200 minutes.
机译:全身炎症反应综合征(SIRS),脓毒症相关的炎症状态,是针对特异性和非特异性刺激的自我防御机制。为临床诊断SIRS的六个最广泛研究的炎性生物标志物是白介素4(的hIL-4),白细胞介素6(HIL-6),白细胞介素10(的hIL-10),肿瘤坏死因子α(hTNF的-α),干扰素γ (的hIFN-γ)和降钙素原(HPCT)。这些生物标记物在SIRS感染的患者[1,2],因此一个高灵敏度的检测方法的开发是重要的临床利益的天然存在(但通常仅在低浓度)。然而,现有的分析技术缺乏所需的分析灵敏度和这些生物标志物的平行测定。我们开发了一种快速,简便,并且其中所述捕获分子附着于水凝胶斑点成本效益的蛋白质微阵列生物芯片,通过用25微升的样品体积这六个临床相关的生物标记物的平行检测启用SIRS诊断。与我们的水凝胶基于蛋白质微阵列生物芯片我们实现了检测限为75.2的hIL-4微克/毫升,对人IL-6的45.1微克/毫升,对于71.5的hIL-10微克/毫升,56.7皮克的hTNF-α / ml时,为46.4微克/毫升的IFN-γ和1.1纳克/ ml,在掺料的人血清的HPCT展示用于临床使用足够的灵敏度。此外,我们表现出的临床患者样品中的两个相关的生物标志物SIRS成功检测从样品到结果在不到200分钟内完成分析的周转时间。

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