Department of Pharmaceutical Engineering, Daegu Haany University, Gyeongsan, 38610, Republic of Korea.
Department of Physiology, Keimyung University School of Medicine, Daegu, 12602, Republic of Korea.
Biosens Bioelectron. 2019 Oct 1;142:111482. doi: 10.1016/j.bios.2019.111482. Epub 2019 Jun 28.
In this study, we demonstrate a novel affinity peptide-incorporated electrochemical biosensor for the detection of acute kidney injury and the diabetic biomarker neutrophil gelatinase-associated lipocalin (NGAL). Biopanning of the M13 phage display library over immobilized NGAL led to the rapid identification of unique affinity peptide with an amino acid sequence of DRWVARDPASIF, and the peptide-displayed phage particles were found to be specific affinities for NGAL. To address the development of peptide-based electrochemical sensor, a series of synthetic peptides away from phage particles was rationally designed, chemically synthesized, and immobilized to a gold sensor layer. Among five synthetic peptide derivatives tested, NGAL BP1 was selected as most promising recognition receptor, and its binding affinity was monitored by SWV and EIS. Using EIS, the limit of detection (LOD) was 1.74 ng/mL, while SWV had a LOD of 3.93 ng/mL. The detection performance of the peptide-incorporated sensor was comparable to commercially available ELISA NGAL detection kits. In addition, the validation of the peptide sensor was also confirmed with plasma from patients, and it was observed that the sensitivity of the peptide sensor showed a statistically significant difference. Our results show that the phage and peptide sensor system could detect NGAL with high sensitivity and selectivity, and this suggests its potential use as a biosensing platform for monitoring NGAL in a miniaturized electrochemical biosensor.
在这项研究中,我们展示了一种新型的亲和肽电化学生物传感器,用于检测急性肾损伤和糖尿病生物标志物中性粒细胞明胶酶相关脂质运载蛋白(NGAL)。在固定化 NGAL 上进行 M13 噬菌体展示文库的生物淘选,迅速鉴定出具有氨基酸序列 DRWVARDPASIF 的独特亲和肽,并且发现该肽展示的噬菌体颗粒对 NGAL 具有特异性亲和力。为了解决基于肽的电化学传感器的开发问题,我们合理设计了一系列远离噬菌体颗粒的合成肽,通过化学合成并固定到金传感器层上。在测试的五个合成肽衍生物中,选择 NGAL BP1 作为最有前途的识别受体,并通过 SWV 和 EIS 监测其结合亲和力。使用 EIS,检测限(LOD)为 1.74ng/mL,而 SWV 的 LOD 为 3.93ng/mL。肽结合传感器的检测性能与市售的 ELISA NGAL 检测试剂盒相当。此外,还通过来自患者的血浆对肽传感器的验证进行了确认,并且观察到肽传感器的灵敏度表现出统计学上的显著差异。我们的结果表明,噬菌体和肽传感器系统可以高度敏感和选择性地检测 NGAL,这表明它有可能作为监测小型化电化学生物传感器中 NGAL 的生物传感平台使用。