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Dual chemical bonding construction of electrochemical peptide sensor based on GDY/MOFs(Fe) composite for ultra-low determination of prostate-specific antigen

TALANTA [2024]
Yaofei Ren, Jialing Li, Weixuan Wu, Xin Yu, Mengying Tao, Yanhu Han, Yintong Lin, Zhongfeng Shi, Liqin Zhou, Zhenxia Zhao, Zhongxing Zhao
ABSTRACT

A novel “double chemical bonding” electrochemical peptide biosensor 2FcP-GA-GDY(Fe)@NMIL-B was developed for highly selective, ultrasensitive, and ultrastable identification of prostate-specific antigen (PSA). The C–Fe–O chemical bond linking Fe-Graphdiyne (Fe-GDY) with NH 2 -MIL88B(Fe) (NMIL88B) as the first chemical bonding of electrode carrier Fe-GDY@NH 2 -MIL88B(Fe) (GDY(Fe)@NMIL) significantly accelerates electron transport. With glutaraldehyde (GA) as a crosslinking agent, the Schiff-base –N C- formed by GDY(Fe)@NMIL nanocomposites links the two Fc molecules labeled peptides (2FcP) as the second chemical bonding, facilitating high-density attachment of peptides to the electrode carrier in a firm manner. When the PSA analyte is introduced to identify and cleave the specific peptide, the release of ferrocene from its head leads to a decrease in the electrical signal, enabling sensitive detection. The prepared sensing platform exhibits exceptional analytical performance for PSA with an extended linear response range from 10 fg mL −1 to 50 ng mL −1 . Additionally, the detection limit has been significantly reduced to an ultra-low level of only 0.94 fg mL −1 , surpassing those reported in most literature by several orders of magnitude. Moreover, the 2FcP-GA-GDY(Fe)@NMIL-B sensor has excellent selectivity and stability while also showcasing great potential for practical application of PSA detection in human serum using the standard addition method.

MATERIALS

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