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LABEL-FREE DIRECT DETECTION OF SINGLE OLIGONUCLEOTIDE AND ANTIBODY INTERACTIONS WITH A NANOTRANSISTOR

机译:无标记直接检测单寡核苷酸和纳米晶体管的抗体相互作用

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The pharmacogenomic paradigm of "personalized medicine" promises to provide more effective, more efficient medical care that is tailored to the physiological idiosyncrasies of each patient. These differences are based on each persons genetic and proteomic makeup, in ways that are yet to be fully understood. A major bottleneck to uncovering this information is the complexity and expense of current technologies for studying biological interactions. Nanotechnology offers tools that provide molecular-level information by coupling the biology to an electronic signal. Described in this paper are simplified bioassays for exploring genetic and proteomic binding using "chemically gated" single electron transistors.
机译:“个性化医学”的药物替补范式承诺提供更有效,更有效的医疗保健,这些医疗保健量身定制的每位患者的生理特质。这些差异基于每个人遗传和蛋白质组学构成,以尚未完全理解。揭示此信息的主要瓶颈是研究生物互动的当前技术的复杂性和费用。纳米技术提供通过将生物学耦合到电子信号来提供分子级信息的工具。本文中描述的是使用“化学门控”单电子晶体管探索遗传和蛋白质组学结合的简化生物测定。

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