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02731nam a2200481Ia 4500 |
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220421s2022 CNT 000 0 und d |
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|a 14248220 (ISSN)
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|a Electrochemical Cytosensor Based on a Gold Nanostar-Decorated Graphene Oxide Platform for Gastric Cancer Cell Detection
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|b MDPI
|c 2022
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|z View Fulltext in Publisher
|u https://doi.org/10.3390/s22072783
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|a Effectively capturing and sensitively detecting cancer cells are critical to clinical diagnosis and cancer therapy. In this work, we prepared gold nanostar-decorated graphene oxide (GO-AuNSs) nanocomposites using a ultraviolet (UV)-induced strategy, and then modified them with a layer of bio-complex rBSA-FA (coupled reduced bovine serum albumin with folic acid) to generate GO-AuNSs@rBSA-FA nanocomposites. Herein, the application of GO and AuNSs not only strengthened the conductivity of the sensing platform but also guaranteed nanocomposites with biocompatible performance. Moreover, the adopted rBSA-FA layer could effectively enhance the stability and specificity towards gastric cancer cells (MGC-803). According to a systemic construc-tion procedure, a novel electrochemical cytosensor based on GO-AuNSs@rBSA-FA was fabricated for MGC-803 cell detection. With the assistance of cyclic voltammetry (CV) and differential pulse voltammetry (DPV), the cytosensor reached a detection limit of 100 cell/mL in a wide linear range of 3 × 102 ~7 × 106 cell/mL towards MGC-803 cells. The good electrochemical characteristics for the cancer cell analysis indicate a promising prospect of this electrochemical cytosensor in clinical cancer diagnosis. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
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|a Biocompatibility
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|a Bovine serum albumins
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|a Cancer cell analyse
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|a cancer cell analysis
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|a Cancer cells
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|a Cell analysis
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|a Cells
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|a Cyclic voltammetry
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|a Cytology
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|a Diagnosis
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|a Differential pulse voltammetry
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|a Diseases
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|a DPV
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|a electrochemical cytosensor
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|a Electrochemical cytosensor
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|a Electrochemicals
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|a Folic acids
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|a GO-AuNS@coupled reduced bovine serum albumin with folic acid
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|a GO-AuNSs@rBSA-FA
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|a Gold compounds
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|a Gold nanostars
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|a Graphene
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|a Mammals
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|a Nanocomposites
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|a Cui, D.
|e author
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|a Huang, Z.
|e author
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|a Liu, Q.
|e author
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|a Wang, R.
|e author
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|a Zhang, A.
|e author
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|a Zhang, Q.
|e author
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|t Sensors
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