Ferrocene-Labelled Electroactive Aptamer-Based Sensors (Aptasensors) for Glycated Haemoglobin.
Xue-Qing FengYi JuWei-Tao DouQing LiZhong-Gan JinXiao-Peng HeTony David JamesBang-Ce YePublished in: Molecules (Basel, Switzerland) (2021)
Glycated haemoglobin (HbA1c) is a diagnostic biomarker for type 2 diabetes. Traditional analytical methods for haemoglobin (Hb) detection rely on chromatography, which requires significant instrumentation and is labour-intensive; consequently, miniaturized devices that can rapidly sense HbA1c are urgently required. With this research, we report on an aptamer-based sensor (aptasensor) for the rapid and selective electrochemical detection of HbA1c. Aptamers that specifically bind HbA1c and Hb were modified with a sulfhydryl and ferrocene group at the 3' and 5'-end, respectively. The modified aptamers were coated through sulfhydryl-gold self-assembly onto screen printed electrodes, producing aptasensors with built in electroactivity. When haemoglobin was added to the electrodes, the current intensity of the ferrocene in the sensor system was reduced in a concentration-dependent manner as determined by differential pulse voltammetry. In addition, electrochemical impedance spectroscopy confirmed selective binding of the analytes to the aptamer-coated electrode. This research offers new insight into the development of portable electrochemical sensors for the detection of HbA1c.
Keyphrases
- label free
- gold nanoparticles
- loop mediated isothermal amplification
- sensitive detection
- type diabetes
- low cost
- solid state
- reduced graphene oxide
- mass spectrometry
- blood pressure
- high resolution
- cardiovascular disease
- high speed
- magnetic resonance
- magnetic resonance imaging
- ionic liquid
- skeletal muscle
- insulin resistance
- high throughput
- ms ms
- real time pcr
- adipose tissue
- transcription factor
- magnetic nanoparticles
- binding protein
- energy transfer
- simultaneous determination
- high performance liquid chromatography