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Graphene Oxide Interfaces in Serum Based Autoantibody Quantification

机译:基于血清的自身抗体定量中的氧化石墨烯界面

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A reliable quantification of protein markers will undoubtedly underpin profound developments in disease surveillance, diagnostics, and improved therapy. Although there potentially exist numerous means of achieving this, electrochemical impedimetric techniques offer scale of sensitivity, cost, convenience, and a flexibility with which few alternatives can compete. Though there have been marked developments in electroanalytical protein detection, the demands associated with accessing the inherent assay sensitivity in complex biological media largely remains. We report herein the use of cysteamine-graphene oxide modified gold microelectrode arrays in underpinning the ultrasensitive and entirely label free non-faradaic quantification of Parkinson's-relevant autoantibodies in human serum.
机译:蛋白质标记物的可靠定量无疑将为疾病监测,诊断和改进治疗方法的深入发展提供基础。尽管可能存在许多实现此目的的方法,但电化学阻抗技术可提供灵敏度,成本,便利性和灵活性规模,几乎没有其他选择可以与之竞争。尽管电分析蛋白检测已取得显着进展,但在复杂生物介质中获得固有检测灵敏度的相关需求仍然很大。我们在本文中报道了在人血清中帕金森氏相关自身抗体的超灵敏和完全无标记的非法拉第量化基础上,使用半胱胺-氧化石墨烯修饰的金微电极阵列。

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