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10 Sep 08:50

[ASAP] Precision Cancer Theranostic Platform by In Situ Polymerization in Perylene Diimide-Hybridized Hollow Mesoporous Organosilica Nanoparticles

by Zhen Yang†§#, Wenpei Fan§#, Jianhua Zou§, Wei Tang§, Ling Li§, Liangcan He§, Zheyu Shen§, Zhantong Wang§, Orit Jacobson§, Maria A. Aronova?, Pengfei Rong*†‡, Jibin Song?, Wei Wang*†‡, and Xiaoyuan Chen*§

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Journal of the American Chemical Society
DOI: 10.1021/jacs.9b06086
06 Sep 02:59

[ASAP] Placeholder Strategy with Upconversion Nanoparticles-Eriochrome Black T Conjugate for a Colorimetric Assay of an Anthrax Biomarker

by Zi-Han Cheng†, Xun Liu†, Shang-Qing Zhang, Ting Yang, Ming-Li Chen*, and Jian-Hua Wang*

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Analytical Chemistry
DOI: 10.1021/acs.analchem.9b03342
10 Apr 12:41

Molecularly imprinted polymer-decorated signal on-off ratiometric electrochemical sensor for selective and robust dopamine detection

Publication date: 15 June 2019

Source: Biosensors and Bioelectronics, Volume 135

Author(s): Jiao Yang, Yue Hu, Yingchun Li

Abstract

Dopamine (DA), as one of the central neurotransmitters, plays an important role in many physiological and pathological processes. Detection of DA is critical to diagnose and monitor some neurological diseases. In this work, a novel on-off ratiometric electrochemical sensor with molecularly imprinted polymers (MIPs) as target molecule recognizer has been developed for selective and accurate detection of DA. Nanoporous gold (NPG) was electrodeposited on bare gold electrode, which not only benefited the output signal amplification, but also provided enlarged surface for immobilization of polythionine (pThi) and MIPs. Oxidation of DA and pThi served as response signal and internal reference signal, respectively. The oxidation peak currents of DA at +0.12 V increased with increasing the concentration of DA, while the peak currents of pThi at −0.2 V decreased simultaneously. Due to the specificity from MIPs and the built-in correction from pThi, the fabricated sensor showed excellent performance in view of selectivity and reproducibility. It's worth to mention that even if the surface area and morphology of working electrode underwent huge variation deliberately, the assay deviation among these ratiometric sensors was largely reduced around 10 times. The proposed sensor demonstrated a broad dynamic range of 0.3–100 μM, as well as a low detection limit of 0.1 μM (S/N = 3). Moreover, superior anti-interfering ability toward DA detection was obtained despite the presence of interferents at high concentration in artificial cerebrospinal fluid (aCSF). Therefore, this work is expected to provide an alternative pathway for constructing ratiometric electrochemical sensor and offer reliable determination of small molecules with high selectivity and stability.

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