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Sensitive and In Situ Hemoglobin Detection Based on a Graphene Oxide Functionalized Microfiber

机译:基于石墨烯官能化超细纤维的敏感和原位血红蛋白检测

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摘要

The determination of hemoglobin (Hb) level is indispensable in the pathological study of many blood diseases. Graphene oxide (GO), with its excellent optical properties and great biocompatibility, has attracted significant attention and been widely utilized in biochemical detection. Here, we report an ultrasensitive Hb sensor based on a graphene oxide (GO)-coated microfiber. The GO was utilized as a linking layer deposited on the microfiber surface, which can provide an enhanced local evanescent light field and abundant bonding sites for Hb molecules. The optical microfiber with a compact structure and a strong evanescent light field served as the platform for biosensing. The surface morphology characterized by optical microscope, scanning electron microscope, and Raman spectroscopy offers detailed evidence for the success of GO deposition. The dynamic bonding between GO and target Hb molecules was monitored in real-time through an optical spectrum analyzer. An ultrahigh sensitivity of 6.02 nm/(mg/mL) with a detection limit of 0.17 μg/mL was achieved by tracking the resonant wavelength shift of spectra. It is important to highlight that the detection limit of GO-coated microfiber is 1–2 orders of magnitude lower than other reported fiber optic Hb sensors. Benefiting from high sensitivity, low cost, small size, and fast response, the proposed sensing microfiber coated with GO could be a competitive alternative in the diagnosis of blood diseases and a subject of further research in the medical field.
机译:在许多血液疾病的病理研究中,血红蛋白(HB)水平的测定是必不可少的。氧化石墨烯(GO),具有优异的光学性质和大型生物相容性,引起了显着的关注并被广泛用于生化检测。这里,我们基于石墨烯(GO)涂覆的微纤维来报告超敏HB传感器。 Go被用作沉积在微纤维表面上的连接层,其可以提供增强的局部渐逝光场和Hb分子的丰富键合位点。具有紧凑结构的光学微纤维和强大的蒸发光场作为生物沉积的平台。通过光学显微镜,扫描电子显微镜和拉曼光谱特征的表面形态提供了Go Siposition成功的详细证据。通过光谱分析仪实时监测去和靶HB分子之间的动态键合。通过跟踪光谱的谐振波长偏移来实现具有0.17μg/ mL的检出限的6.02nm /毫升)的超高敏感性。重要的是要强调,去涂层微纤维的检测限是比其他报告的光纤HB传感器低1-2个数量级。受益于高灵敏度,低成本,小尺寸和快速反应,涂有Go的提议的传感超细纤维可能是患有血液疾病的竞争替代方案,以及医学领域进一步研究的主题。

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