Nanobiosensors and Bioanalytical Applications Group, Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC, CIBER-BBN and BIST, Campus UAB, 08193, Bellaterra (Barcelona), Spain.
ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, 08860, Castelldefels (Barcelona), Spain.
Anal Chim Acta. 2019 Oct 24;1077:232-242. doi: 10.1016/j.aca.2019.05.038. Epub 2019 May 20.
Sepsis is a condition characterized by a severe stage of blood-infection often leading to tissue damage, organ failure and finally death. Fast diagnosis and identification of the sepsis stage (sepsis, severe sepsis or septic shock) is critical for the patient's evolution and could help in defining the most adequate treatment in order to reduce its mortality. The combined detection of several biomarkers in a timely, specific and simultaneous way could ensure a more accurate diagnosis. We have designed a new optical point-of-care (POC) device based on a phase-sensitive interferometric biosensor with a label-free microarray configuration for potential high-throughput evaluation of specific sepsis biomarkers. The sensor chip, which relies on the use of metallic nanostructures, provides versatility in terms of biofunctionalization, allowing the efficient immobilization of different kind of receptors such as antibodies or oligonucleotides. We have focused on two structurally different types of biomarkers: proteins, including C-reactive protein (CRP) and Interleukin 6 (IL6), and miRNAs, using miRNA-16 as an example. Limits of Detection (LoD) of 18 μg mL, 88 μg mL and 1 μM (6 μg mL) have been respectively obtained for CRP, IL6 and miRNA-16 in individual assays, with high accuracy and reproducibility. The multiplexing capabilities have also been assessed with the simultaneous analysis of both protein biomarkers.
败血症是一种以血液感染严重阶段为特征的病症,通常会导致组织损伤、器官衰竭,最终导致死亡。快速诊断和识别败血症阶段(败血症、严重败血症或败血症性休克)对患者的病情发展至关重要,有助于确定最合适的治疗方法,以降低死亡率。及时、特异性和同时检测多种生物标志物可以确保更准确的诊断。我们设计了一种新的光学即时检测(POC)设备,该设备基于具有无标记微阵列配置的相敏干涉生物传感器,可用于高通量评估特定败血症生物标志物。传感器芯片依赖于使用金属纳米结构,在生物功能化方面具有多功能性,允许高效固定不同类型的受体,如抗体或寡核苷酸。我们专注于两种结构不同的生物标志物:蛋白质,包括 C 反应蛋白(CRP)和白细胞介素 6(IL6),并以 miRNA-16 为例。在单独的测定中,CRP、IL6 和 miRNA-16 的检测限(LoD)分别为 18μg/mL、88μg/mL 和 1μM(6μg/mL),具有很高的准确性和重现性。还通过同时分析两种蛋白质生物标志物评估了多重分析能力。