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氧化还原活性肽的自组装:合成与电化学电容行为。

The self-assembly of redox active peptides: Synthesis and electrochemical capacitive behavior.

作者信息

Piccoli Julia P, Santos Adriano, Santos-Filho Norival A, Lorenzón Esteban N, Cilli Eduardo M, Bueno Paulo R

机构信息

Department of Biochemistry and Technological Chemistry, , Institute of Chemistry, UNESP-Univ Estadual Paulista, São Paulo, Brazil.

Department of Physical Chemistry, Nanobionics Research Group, Institute of Chemistry, UNESP-Univ Estadual Paulista, São Paulo, Brazil.

出版信息

Biopolymers. 2016 May;106(3):357-67. doi: 10.1002/bip.22815.

Abstract

The present work reports on the synthesis of a redox-tagged peptide with self-assembling capability aiming applications in electrochemically active capacitive surfaces (associated with the presence of the redox centers) generally useful in electroanalytical applications. Peptide containing ferrocene (fc) molecular (redox) group (Ac-Cys-Ile-Ile-Lys(fc)-Ile-Ile-COOH) was thus synthesized by solid phase peptide synthesis (SPPS). To obtain the electrochemically active capacitive interface, the side chain of the cysteine was covalently bound to the gold electrode (sulfur group) and the side chain of Lys was used to attach the ferrocene in the peptide chain. After obtaining the purified redox-tagged peptide, the self-assembly and redox capability was characterized by cyclic voltammetry (CV) and electrochemical impedance-based capacitance spectroscopy techniques. The obtained results confirmed that the redox-tagged peptide was successfully attached by forming an electroactive self-assembled monolayer onto gold electrode. The design of redox active self-assembly ferrocene-tagged peptide is predictably useful in the development of biosensor devices precisely to detect, in a label-free platform, those biomarkers of clinical relevance. © 2016 Wiley Periodicals, Inc. Biopolymers (Pept Sci) 106: 357-367, 2016.

摘要

本工作报道了一种具有自组装能力的氧化还原标记肽的合成,旨在应用于电化学活性电容表面(与氧化还原中心的存在相关),这种表面通常在电分析应用中很有用。因此,通过固相肽合成(SPPS)合成了含有二茂铁(fc)分子(氧化还原)基团的肽(Ac-Cys-Ile-Ile-Lys(fc)-Ile-Ile-COOH)。为了获得电化学活性电容界面,半胱氨酸的侧链与金电极(硫基团)共价结合,赖氨酸的侧链用于在肽链中连接二茂铁。获得纯化的氧化还原标记肽后,通过循环伏安法(CV)和基于电化学阻抗的电容光谱技术对其自组装和氧化还原能力进行了表征。所得结果证实,氧化还原标记肽通过在金电极上形成电活性自组装单分子层而成功附着。氧化还原活性自组装二茂铁标记肽的设计可预见地有助于生物传感器设备的开发,以便在无标记平台上精确检测那些具有临床相关性的生物标志物。© 2016威利期刊公司。生物聚合物(肽科学)106: 357 - 367,2016。

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