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石墨烯量子点在生物医学传感器中的应用。

Applications of Graphene Quantum Dots in Biomedical Sensors.

机构信息

Technical University of Berlin, Straße des 17. Juni 124, 10623 Berlin, Germany.

出版信息

Sensors (Basel). 2020 Feb 16;20(4):1072. doi: 10.3390/s20041072.

Abstract

Due to the proliferative cancer rates, cardiovascular diseases, neurodegenerative disorders, autoimmune diseases and a plethora of infections across the globe, it is essential to introduce strategies that can rapidly and specifically detect the ultralow concentrations of relevant biomarkers, pathogens, toxins and pharmaceuticals in biological matrices. Considering these pathophysiologies, various research works have become necessary to fabricate biosensors for their early diagnosis and treatment, using nanomaterials like quantum dots (QDs). These nanomaterials effectively ameliorate the sensor performance with respect to their reproducibility, selectivity as well as sensitivity. In particular, graphene quantum dots (GQDs), which are ideally graphene fragments of nanometer size, constitute discrete features such as acting as attractive fluorophores and excellent electro-catalysts owing to their photo-stability, water-solubility, biocompatibility, non-toxicity and lucrativeness that make them favorable candidates for a wide range of novel biomedical applications. Herein, we reviewed about 300 biomedical studies reported over the last five years which entail the state of art as well as some pioneering ideas with respect to the prominent role of GQDs, especially in the development of optical, electrochemical and photoelectrochemical biosensors. Additionally, we outline the ideal properties of GQDs, their eclectic methods of synthesis, and the general principle behind several biosensing techniques.

摘要

由于全球范围内癌症发病率、心血管疾病、神经退行性疾病、自身免疫性疾病和大量感染的不断增加,引入能够快速、特异性地检测生物基质中相关生物标志物、病原体、毒素和药物超低浓度的策略至关重要。考虑到这些病理生理学,需要进行各种研究工作来制造用于早期诊断和治疗的生物传感器,使用量子点 (QD) 等纳米材料。这些纳米材料通过提高传感器的重现性、选择性和灵敏度,有效地改善了传感器的性能。特别是石墨烯量子点 (GQD),它是理想的纳米级石墨烯碎片,由于其光稳定性、水溶性、生物相容性、无毒性和盈利性,具有作为有吸引力的荧光团和出色的电催化剂的独特特征,使其成为各种新型生物医学应用的理想候选者。在此,我们回顾了过去五年中报道的大约 300 项生物医学研究,这些研究涉及到 GQD 的突出作用的最新进展和一些开创性的想法,特别是在光学、电化学和光电化学生物传感器的发展方面。此外,我们概述了 GQD 的理想特性、它们的多种合成方法以及几种生物传感技术背后的一般原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da37/7070974/80f2efa8ce42/sensors-20-01072-g001.jpg

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