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首页> 外文期刊>Industrial and organizational psychology >Nanocrystalline Diamond Electrolyte-Gates in Field Effect Transistor for a Prolific Aptasensing HIV-1 Tat on Hydrogen-terminated Surface
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Nanocrystalline Diamond Electrolyte-Gates in Field Effect Transistor for a Prolific Aptasensing HIV-1 Tat on Hydrogen-terminated Surface

机译:纳米晶金刚石电解质电解质晶体管用于氢封端表面上的多产Aptasensing HIV-1 TAT

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Nanocrystalline diamonds have recently gained great attention to circumvent the current hurdles, with their appealing properties such as high-surface-area to volume ratio, low-background current, wide potential window, biocompatibility, and chemical stability. The nanocrystalline diamonds electrolyte-gated field-effect transistor (NCD-EGFET) can operate directly in solution without involving gate oxides in bringing the hydrogen-tethered moieties and facilitates the p-type surface conductivity. This research investigated on Trans-activator of transcription ( Tat) protein; a powerful viral gene activator that plays a pivotal role in the primary stage of the human immunodeficiency virus type 1 (HIV-1) replication. Dose-dependent interactions of HIV-1 Tat on NCD-EGFET-based RNA aptamer sensing surface were monitored and attained the detection down to 10 fM. The linear regression curve with 3 sigma estimation professed the sensitivity range to be 31.213 mV/log(10) [Tat Concentration]M and the limit of detection of 6.18 fM. The selectivity analysis of NCD-EGFET was conducted with different proteins from HIV (Nef and p24) and Bovine Serum Albumin. Furthermore, to practice in the clinical application, HIV-1 Tat was spiked into the human blood serum and it displayed the genuine non-fouling interaction with the aptamer. The attained high-performance signal enhancement with nanocrystalline diamond-biosensing aids to circumvent the issues in the current diagnosis.
机译:纳米晶钻石最近越来越重视当前的障碍,其吸引力的性质如高表面积,低背景电流,潜在窗口,生物相容性和化学稳定性。纳米晶金刚石电解质门控场效应晶体管(NCD-EGFET)可以直接在溶液中操作,而不涉及浇氧化物的栅极氧化物,并促进p型表面电导率。该研究研究了转录(TAT)蛋白的转移剂;一种强大的病毒基因活化剂,在人免疫缺陷病毒类型1(HIV-1)复制的初级阶段中起枢转作用。监测HIV-1 TAT对基于NCD-EGFET的RNA适体感测表面的剂量依赖性相互作用,并达到了下降至10 fm的检测。线性回归曲线具有3个Sigma估计,敏感范围为31.213 mV / log(10)[TAT浓度] m以及6.18 fm的检测限。 NCD-EGFET的选择性分析用来自HIV(NEF和P24)和牛血清白蛋白的不同蛋白质进行。此外,在临床应用中实践,将HIV-1 TAT掺入人血清中,并展示了与适体的真正的非结垢相互作用。达到高性能信号增强,纳米晶金刚石生物传感辅助助剂旨在规避目前诊断中的问题。

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