College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming, 650500, PR China.
Key Laboratory of Luminescence Analysis and Molecular Sensing, Ministry of Education, School of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, PR China.
Anal Chim Acta. 2022 Nov 15;1233:340515. doi: 10.1016/j.aca.2022.340515. Epub 2022 Oct 13.
Sensitive and selective detection of neutrophil gelatinase-associated lipocalin (NGAL) is critical for the prediction and early diagnosis of acute renal injury. In this work, the establishment of an aptamer-based, highly sensitive and label-free method for detecting NGAL in diluted human serums via metal ion-dependent DNAzyme- and exonuclease III (Exo III)-triggered recycling signal amplification cascades is described. NGAL binds with the aptamer strands in the DNAzyme/aptamer duplexes and results in the liberation of the metal ion-dependent DNAzyme sequences to cleave the hairpin signal probes on the electrode to liberate the G-quadruplex and intermediate strands. The released intermediate strands further complement with the DNAzyme/aptamer duplexes to form favorable substrate for Exo III, which digests the duplexes to release the DNAzyme strands to initiate the cascaded recycling cycles for the yield of plenty of G-quadruplex strands. Hemin can associate with G-quadruplex strands to produce many G-quadruplex/hemin complexes and electrochemical reduction of hemin thus generates highly amplified current for detecting NGAL with the detection limit of 4.45 ng mL. Such biosensor also shows high selectivity and can be utilized for monitoring NGAL spiked in diluted serum, indicating its extension potential for detecting various protein biomarkers with different aptamers for disease diagnosis.
灵敏且选择性地检测中性粒细胞明胶酶相关脂质运载蛋白(NGAL)对于急性肾损伤的预测和早期诊断至关重要。在这项工作中,描述了一种基于适体的、高灵敏度和无标记方法,用于通过金属离子依赖性 DNA 酶和外切酶 III(Exo III)触发的循环信号放大级联来检测稀释人血清中的 NGAL。NGAL 与 DNA 酶/适体双链体中的适体链结合,导致释放金属离子依赖性 DNA 酶序列,以在电极上切割发夹信号探针,释放 G-四链体和中间链。释放的中间链进一步与 DNA 酶/适体双链体互补,形成 Exo III 的有利底物,其消化双链体以释放 DNA 酶链,从而引发级联循环以产生大量 G-四链体链。血红素可以与 G-四链体链结合,产生许多 G-四链体/血红素复合物,血红素的电化学还原因此产生用于检测 NGAL 的高度放大电流,检测限为 4.45ng mL。该生物传感器还表现出高选择性,可用于监测稀释血清中添加的 NGAL,表明其具有用于通过不同适体检测各种蛋白质生物标志物以用于疾病诊断的扩展潜力。