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卡拉胶衍生聚电解质复合物材料:磺胺甲恶唑电化学传感和抗菌活性的有效双功能材料。

Carrageenan derived polyelectrolyte complexes material: An effective bifunctional for electrochemical sensing of sulfamethazine and antibacterial activity.

机构信息

Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei 106335, Taiwan.

Department of Material Science and Engineering, National Taiwan University of Science and Technology, Taipei 106335, Taiwan; Universidad Politecnica Taiwán Paraguay (UPTP), Paraguay.

出版信息

Int J Biol Macromol. 2024 Apr;264(Pt 1):130445. doi: 10.1016/j.ijbiomac.2024.130445. Epub 2024 Feb 27.

Abstract

Biopolymer-derived polyelectrolyte complexes (PECs) are a class of materials that have emerged as promising candidates for developing advanced electrochemical sensors due to their tunable properties, biocompatibility, cost-effective production, and high surface area. PECs are formed by combining positively and negatively charged polymers, resulting in a network with intriguing properties that can be tailored for specific sensing applications. The resultant PECs-based nanocomposites were used to modify the glassy carbon electrode (GCE) to detect the sulfamethazine (SFZ) antibiotic drug. In addition, electrochemical studies using electrochemical impedance spectroscopy (EIS), cyclic voltammetry (CV), and differential pulse voltammetry (DPV) are used to evaluate the SFZ detection ability. Similarly, various microscopic and spectroscopic studies investigated the nano composite's structural features and morphological behavior. The κ-CGN/P(Am-co-DMDAAc)-GO modified GCE demonstrated excellent detection ability of SFZ with the nano molar range and without interference with similar structural components. Furthermore, the newly fabricated electrode κ-CGN/P(Am-co-DMDAAc)-GO was derived from naturally available materials, water-soluble, low cost, biocompatible, exhibits good conductivity, and excellent catalytic properties. Finally, κ-CGN/P(Am-co-DMDAAc)-GO- modified GCE has versatile, practical applications for detecting SFZ in real-time samples and determining the efficacy of an antibacterial activity.

摘要

基于生物聚合物的聚电解质复合物(PECs)是一类材料,由于其可调的性质、生物相容性、经济高效的生产和高表面积,已成为开发先进电化学传感器的有前途的候选材料。PECs 通过结合带正电荷和带负电荷的聚合物形成,具有有趣的性质网络,可以针对特定的传感应用进行定制。所得的基于 PEC 的纳米复合材料用于修饰玻碳电极(GCE)以检测磺胺甲恶唑(SFZ)抗生素药物。此外,使用电化学阻抗谱(EIS)、循环伏安法(CV)和差分脉冲伏安法(DPV)进行电化学研究,以评估 SFZ 的检测能力。同样,各种微观和光谱研究调查了纳米复合材料的结构特征和形态行为。κ-CGN/P(Am-co-DMDAAc)-GO 修饰的 GCE 具有出色的 SFZ 检测能力,检测范围为纳摩尔级,且不受类似结构成分的干扰。此外,新制备的电极κ-CGN/P(Am-co-DMDAAc)-GO 源自天然存在的材料,水溶性、低成本、生物相容性、具有良好的导电性和出色的催化性能。最后,κ-CGN/P(Am-co-DMDAAc)-GO-修饰的 GCE 具有多功能、实用的应用,可用于实时样品中 SFZ 的检测和抗菌活性功效的确定。

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