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Recent advances in nanotechnology-enhanced biosensors for α-fetoprotein detection

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MICROCHIMICA ACTA
卷 190, 期 1, 页码 -

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SPRINGER WIEN
DOI: 10.1007/s00604-022-05592-z

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alpha-Fetoprotein; Biosensor; Nanotechnology; Noble metallic nanoparticles; Quantum dot and magnetic nanoparticles; Carbon nanomaterials

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This paper reviews the research progress of AFP biosensors with enhanced sensitivity and selectivity using nanoparticles. Representative examples are presented to demonstrate the applications of nanotechnology in the early detection of AFP. The clinical application of AFP biosensors based on nanotechnology faces challenges, but also presents development opportunities in the future.
alpha-Fetoprotein (AFP) is a kind of fetal protein that is related to tumor, the increasing concentration of which gives birth to a large variety of diseases, such as liver cancer. Therefore, the detection method with super sensitivity, high selectivity, and less time consumption under trace concentrations in early stage of diseases is becoming a necessity. In recent years, nanomaterials have been regarded as significant resources for the exploration of efficient biosensors with high sensitivity, selectivity, speed, as well as simple process, due to their excellent optical, electrical, and chemical properties. In this paper, we reviewed the research progress of AFP biosensors with enhanced sensitivity and selectivity by nanoparticles. Representative examples have also been displayed in this paper to expound the nanotechnologies utilized in the early detection of AFP. Furthermore, challenges of the clinical application of AFP biosensors based on nanotechnology have been elaborated, as well as the development opportunity in this field in the future.

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