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在一种适合于即时检测的设备中平行检测多种生物标志物,用于预测慢性炎症性肺病的恶化。

Parallel detection of multiple biomarkers in a point-of-care-competent device for the prediction of exacerbations in chronic inflammatory lung disease.

机构信息

Division of Mucosal Immunology and Diagnostics, Priority Area Chronic Lung Diseases, Research Center Borstel - Leibniz Lung Center, Member of Leibniz Health Technologies, Parkallee 1-40, Borstel, Germany.

BioMaterialBank-North, Department of Medicine, Research Center Borstel - Leibniz Lung Center, Parkallee 1-40, Borstel, Germany.

出版信息

Sci Rep. 2024 Jun 4;14(1):12830. doi: 10.1038/s41598-024-62784-8.

Abstract

Sudden aggravations of chronic inflammatory airway diseases are difficult-to-foresee life-threatening episodes for which advanced prognosis-systems are highly desirable. Here we present an experimental chip-based fluidic system designed for the rapid and sensitive measurement of biomarkers prognostic for potentially imminent asthma or COPD exacerbations. As model biomarkers we chose three cytokines (interleukin-6, interleukin-8, tumor necrosis factor alpha), the bacterial infection marker C-reactive protein and the bacterial pathogen Streptococcus pneumoniae-all relevant factors in exacerbation episodes. Assay protocols established in laboratory environments were adapted to 3D-printed fluidic devices with emphasis on short processing times, low reagent consumption and a low limit of detection in order to enable the fluidic system to be used in point-of-care settings. The final device demonstrator was validated with patient sample material for its capability to detect endogenous as well as exogenous biomarkers in parallel.

摘要

慢性炎症性气道疾病的突然恶化是难以预测的危及生命的事件,因此非常需要先进的预后系统。在这里,我们展示了一种基于芯片的实验性流体系统,该系统旨在快速、灵敏地测量预测潜在哮喘或 COPD 恶化的生物标志物。作为模型生物标志物,我们选择了三种细胞因子(白细胞介素-6、白细胞介素-8、肿瘤坏死因子-α)、细菌感染标志物 C 反应蛋白和细菌病原体肺炎链球菌-所有与恶化事件相关的因素。在实验室环境中建立的测定方案被改编为 3D 打印的流体设备,重点是缩短处理时间、减少试剂消耗和降低检测下限,以便使流体系统能够在即时护理环境中使用。最终的设备演示器通过使用患者样本材料进行了验证,以证明其能够同时检测内源性和外源性生物标志物的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea9/11150478/ebcd736ac899/41598_2024_62784_Fig1_HTML.jpg

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