化学
适体
检出限
荧光
G-四倍体
胰岛素
线性范围
转身(生物化学)
色谱法
DNA
生物化学
分子生物学
内科学
生物
医学
量子力学
物理
作者
Xiaohui Zeng,Hailong Wang,Yanbo Zeng,Yiwen Yang,Zulei Zhang,Lei Li
标识
DOI:10.1007/s10895-022-03116-9
摘要
Insulin, the only hormone regulating blood glucose level, is strongly associated with diabetes and its complications. Specific recognition and ultrasensitive detection of insulin are of clinical significance for the early diagnosis and treatment of diabetes. Inspired by aggregation-induced emission, we presented a turn-on label-free fluorescence aptasensor for insulin detection. Quaternized tetraphenylethene salt was synthesized as the fluorescence probe. Guanine-rich aptamer IGA3 was selected as recognition element. Graphene oxide was chosen as the quencher. Under optimized conditions, the fluorescence aptasensor displayed a wide linear range (1.0 pM-1.0 μM) with a low limit of detection (0.42 pM). Furthermore, the aptasensor was successfully applied to detect insulin in human serum. Spiked recoveries were obtained in the range of 96.06%-104.26%. All these results demonstrated that the proposed approach has potential application in the clinical diagnostics of diabetes.
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