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核壳结构鸟苷-硼酸盐水凝胶的自愈机制及生物电化学界面性质

Self-healing mechanism and bioelectrochemical interface properties of core-shell guanosine-borate hydrogels.

作者信息

Wang Hai, Xie Xiao-Qiao, Peng Yu, Li Jingjing, Liu Chun-Sen

机构信息

Henan Provincial Key Lab of Surface & Interface Science, Zhengzhou University of Light Industry, Zhengzhou 450002, China.

School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou 450001, China.

出版信息

J Colloid Interface Sci. 2021 May 15;590:103-113. doi: 10.1016/j.jcis.2021.01.034. Epub 2021 Jan 15.

Abstract

The self-healing mechanism and bioelectrochemical interface properties of supramolecular gels have been rarely explored. In this context, we propose a constitutive "fibril-reorganization" model to reveal the self-healing mechanism of a series of core-shell structured guanosine-borate (GB) hydrogels and emphasize that interfibrillar interactions at the supramolecular polymer scale (G-quadruplex nanowires) drive the self-healing process of GB hydrogels. Structure-electrochemical sensing performance studies reveal that GB hydrogel nanofibers with relatively strong biomolecular affinity such as -SH modified GB hydrogel (GB-SH) show a high sensitivity of response and low limit of detection for tumour marker alpha-fetoprotein sensing (AFP; 0.076 pg mL). Guanosine/ferroceneboronic acid (GB-Fc) hydrogel nanofibers with superior conductivity and redox activity display the widest linear detection range for AFP (0.0005-100 ng mL). Structure-property correlations of GB hydrogels provide useful insight for the future design of advanced self-healing materials and electrochemical biosensors.

摘要

超分子凝胶的自愈机制和生物电化学界面性质鲜有研究。在此背景下,我们提出了一个本构性的“原纤维重组”模型,以揭示一系列核壳结构的鸟苷-硼酸盐(GB)水凝胶的自愈机制,并强调超分子聚合物尺度(G-四链体纳米线)上的原纤维间相互作用驱动了GB水凝胶的自愈过程。结构-电化学传感性能研究表明,具有相对较强生物分子亲和力的GB水凝胶纳米纤维,如-SH修饰的GB水凝胶(GB-SH),对肿瘤标志物甲胎蛋白传感(AFP;0.076 pg mL)表现出高响应灵敏度和低检测限。具有优异导电性和氧化还原活性的鸟苷/二茂铁硼酸(GB-Fc)水凝胶纳米纤维对AFP显示出最宽的线性检测范围(0.0005-100 ng mL)。GB水凝胶的结构-性质相关性为未来先进自愈材料和电化学生物传感器的设计提供了有益的见解。

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