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通过重氮化学将聚-L-赖氨酸接枝到表面,以增强细胞对生物医学电极的黏附。

Surface grafting of poly-L-lysine via diazonium chemistry to enhance cell adhesion to biomedical electrodes.

机构信息

Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, Gliwice, Poland; Joint Doctoral School, Silesian University of Technology, Gliwice, Poland.

Department of Systems Biology and Engineering, Silesian University of Technology, Gliwice, Poland; Biotechnology Centre, Silesian University of Technology, Gliwice, Poland.

出版信息

Bioelectrochemistry. 2023 Aug;152:108465. doi: 10.1016/j.bioelechem.2023.108465. Epub 2023 May 15.

Abstract

The ability to study and regulate cell behavior at a biomaterial interface requires a strict control over its surface chemistry. Significance of studying cell adhesion in vitro and in vivo has become increasingly important, particularly in the field of tissue engineering and regenerative medicine. A promising surface modification route assumes using organic layers prepared by the method of electrografting of diazonium salts and their further functionalization with biologically active molecules as cell adhesion promoters. This work reports the modification of platinum electrodes with selected diazonium salts and poly-L-lysine to increase the number of sites available for cell adhesion. As-modified electrodes were characterized in terms of their chemical and morphological properties, as well as wettability. In order to monitor the process of cell attachment, biofunctionalized electrodes were used as substrates for culturing human neuroblastoma SH-SY5Y cells. The experiments revealed that cell adhesion is favored on the surface of diazonium-modified and poly-L-lysine coated electrodes, indicating proposed modification route as a valuable strategy enhancing the integration between bioelectronic devices and neural cells.

摘要

在生物材料界面研究和调节细胞行为的能力需要严格控制其表面化学性质。研究细胞在体外和体内黏附的意义变得越来越重要,特别是在组织工程和再生医学领域。一种有前途的表面改性途径是使用通过电化学接枝重氮盐的方法制备的有机层,并进一步用生物活性分子进行功能化作为细胞黏附促进剂。本工作报道了用选定的重氮盐和聚-L-赖氨酸对铂电极进行改性,以增加细胞黏附的可用位点数量。对修饰后的电极进行了化学和形态特性以及润湿性的表征。为了监测细胞附着的过程,将生物功能化的电极用作培养人神经母细胞瘤 SH-SY5Y 细胞的基底。实验表明,细胞在重氮盐修饰和聚-L-赖氨酸涂覆的电极表面上的黏附更为有利,表明所提出的改性途径是增强生物电子设备与神经细胞之间集成的有价值的策略。

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