Bionanotechnology Group, School of Biomedical Science, University of Leeds, Leeds LS2 9JT, UK.
School of Chemical and Process Engineering, University of Leeds, Leeds LS2 9JT, UK.
Sensors (Basel). 2021 Jan 27;21(3):831. doi: 10.3390/s21030831.
The protein biomarker measurement has been well-established using ELISA (enzyme-linked immunosorbent assay), which offers good sensitivity and specificity, but remains slow and expensive. Certain clinical conditions, where rapid measurement or immediate confirmation of a biomarker is paramount for treatment, necessitate more rapid analysis. Biosensors offer the prospect of reagent-less, processing-free measurements at the patient's bedside. Here, we report a platform for biosensing based on chelated Eu against a range of proteins including biomarkers of cardiac injury (human myoglobin), stroke (glial fibrillary acidic protein (GFAP)), inflammation (C-reactive protein (CRP)) and colorectal cancer (carcinoembryonic antigen (CEA)). The Eu ions are chelated by modified synthetic binding proteins (Affimers), which offer an alternative targeting strategy to existing antibodies. The fluorescence characteristics of the Eu complex with modified Affimers against human myoglobin, GFAP, CRP and CEA were measured in human serum using λ = 395 nm, λ = 590 and 615 nm. The Eu-Affimer based complex allowed sensitive detection of human myoglobin, GFAP, CRP and CEA proteins as low as 100 fM in (100-fold) diluted human serum samples. The unique dependence on Eu fluorescence in the visible region (590 and 615 nm) was exploited in this study to allow rapid measurement of the analyte concentration, with measurements in 2 to 3 min. These data demonstrate that the Affimer based Eu complexes can function as nanobiosensors with potential analytical and diagnostic applications.
蛋白质生物标志物的测量已经通过 ELISA(酶联免疫吸附测定)得到了很好的确立,它具有良好的灵敏度和特异性,但仍然较慢且昂贵。在某些临床情况下,快速测量或立即确认生物标志物对于治疗至关重要,因此需要更快速的分析。生物传感器提供了在患者床边进行无试剂、无处理测量的前景。在这里,我们报告了一种基于螯合 Eu 的生物传感平台,该平台可用于检测一系列蛋白质,包括心脏损伤标志物(人肌红蛋白)、中风标志物(神经胶质纤维酸性蛋白(GFAP))、炎症标志物(C 反应蛋白(CRP))和结直肠癌标志物(癌胚抗原(CEA))。Eu 离子通过修饰的合成结合蛋白(Affimers)螯合,这为现有抗体提供了一种替代的靶向策略。使用 λ = 395nm、λ = 590nm 和 λ = 615nm,在人血清中测量了针对人肌红蛋白、GFAP、CRP 和 CEA 的修饰 Affimer 对 Eu 离子的荧光特性。Eu-Affimer 基复合物允许在(100 倍稀释)人血清样本中以低至 100fM 的浓度灵敏检测人肌红蛋白、GFAP、CRP 和 CEA 蛋白。本研究利用 Eu 荧光在可见区(590nm 和 615nm)的独特依赖性,实现了对分析物浓度的快速测量,测量时间为 2 至 3 分钟。这些数据表明,基于 Affimer 的 Eu 配合物可以作为纳米生物传感器发挥作用,具有潜在的分析和诊断应用。