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一种使用楔形多晶硅纳米间隙芯片实验室检测临床尿液样本中人绒毛膜促性腺激素的即时检测免疫传感器。

A Point-of-Care Immunosensor for Human Chorionic Gonadotropin in Clinical Urine Samples Using a Cuneated Polysilicon Nanogap Lab-on-Chip.

作者信息

Balakrishnan S R, Hashim U, Gopinath Subash C B, Poopalan P, Ramayya H R, Iqbal Omar M, Haarindraprasad R, Veeradasan P

机构信息

Biomedical Nano Diagnostics Research Group, Institute of Nano Electronic Engineering (INEE), Universiti Malaysia Perlis (UniMAP), Kangar, Perlis, Malaysia.

School of Microelectronic Engineering, University Malaysia Perlis (UniMAP), Kuala Perlis, Perlis, Malaysia.

出版信息

PLoS One. 2015 Sep 14;10(9):e0137891. doi: 10.1371/journal.pone.0137891. eCollection 2015.

Abstract

Human chorionic gonadotropin (hCG), a glycoprotein hormone secreted from the placenta, is a key molecule that indicates pregnancy. Here, we have designed a cost-effective, label-free, in situ point-of-care (POC) immunosensor to estimate hCG using a cuneated 25 nm polysilicon nanogap electrode. A tiny chip with the dimensions of 20.5 × 12.5 mm was fabricated using conventional lithography and size expansion techniques. Furthermore, the sensing surface was functionalized by (3-aminopropyl)triethoxysilane and quantitatively measured the variations in hCG levels from clinically obtained human urine samples. The dielectric properties of the present sensor are shown with a capacitance above 40 nF for samples from pregnant women; it was lower with samples from non-pregnant women. Furthermore, it has been proven that our sensor has a wide linear range of detection, as a sensitivity of 835.88 μA mIU(-1) ml(-2) cm(-2) was attained, and the detection limit was 0.28 mIU/ml (27.78 pg/ml). The dissociation constant Kd of the specific antigen binding to the anti-hCG was calculated as 2.23 ± 0.66 mIU, and the maximum number of binding sites per antigen was Bmax = 22.54 ± 1.46 mIU. The sensing system shown here, with a narrow nanogap, is suitable for high-throughput POC diagnosis, and a single injection can obtain triplicate data or parallel analyses of different targets.

摘要

人绒毛膜促性腺激素(hCG)是一种由胎盘分泌的糖蛋白激素,是指示妊娠的关键分子。在此,我们设计了一种经济高效、无标记的原位即时检测(POC)免疫传感器,用于使用楔形25纳米多晶硅纳米间隙电极估算hCG。使用传统光刻和尺寸扩展技术制造了尺寸为20.5×12.5毫米的微小芯片。此外,传感表面用(3-氨丙基)三乙氧基硅烷进行了功能化,并定量测量了从临床获取的人类尿液样本中hCG水平的变化。对于孕妇样本,本传感器的介电性能显示电容高于40纳法;非孕妇样本的电容较低。此外,已证明我们的传感器具有广泛的检测线性范围,灵敏度达到835.88微安·毫国际单位-1·毫升-2·厘米-2,检测限为0.28毫国际单位/毫升(27.78皮克/毫升)。与抗hCG结合的特异性抗原的解离常数Kd计算为2.23±0.66毫国际单位,每个抗原的最大结合位点数为Bmax = 22.54±1.46毫国际单位。此处展示的具有狭窄纳米间隙的传感系统适用于高通量POC诊断,单次进样可获得一式三份的数据或对不同靶标的平行分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff5/4569379/d310659cfc04/pone.0137891.g001.jpg

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