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基于摩擦纳米发电机的电刺激促进MC3T3-E1细胞在钛表面的成骨作用

[Electrical stimulation based on triboelectric nanogenerator promotes osteogenesis of MC3T3-E1 cells on titanium surfaces].

作者信息

Pang Bo, Yang Shu, Han Hongyang, Zhang Xingwei, Song Tao

机构信息

NHC Key Laboratory of Cell Transplantation, The First Affiliated Hospital of Harbin Medical University, Harbin 150000, P. R. China.

Oral and Maxillofacial Surgery, The First Affiliated Hospital of Harbin Medical University, Harbin 150000, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2025 Apr 25;42(2):366-373. doi: 10.7507/1001-5515.202501056.

Abstract

This paper aims to explore the effect of electrical stimulation of triboelectric nanogenerators (TENGs) on the osteogenic and other biological behaviors of mouse embryonic osteoblast precursor cells (MC3T3-E1 cells) on titanium surfaces. First, an origami-type TENG was fabricated, and its electrical output performance was tested. The optimal current of the generator and the feasibility of the experiment were verified by the CCK-8 assay and scratch assay. At the optimal current, the osteogenic conditions of the cells in each group were determined by quantitative analysis of the total protein content, alkaline phosphatase (ALP) activity, and alizarin red staining (ARS) on the titanium surface. Finally, the adhesion and spreading of cells on the titanium surface after electrical stimulation were observed. The results showed that the TENG had good electrical output performance, with an open-circuit voltage of 65 V and a short-circuit current of 42 μA. Compared with the rest of the current, a current strength of 30 μA significantly improved cell proliferation and migration, osteogenesis, and adhesion and spreading capabilities. The above results confirm the safety and operability of TENG in biomedical applications, laying the foundation for future TENG applications in reducing the time of bone integration around titanium implants after surgery.

摘要

本文旨在探讨摩擦纳米发电机(TENGs)的电刺激对钛表面小鼠胚胎成骨前体细胞(MC3T3-E1细胞)的成骨及其他生物学行为的影响。首先,制备了一种折纸型TENG,并测试了其电输出性能。通过CCK-8测定法和划痕试验验证了发生器的最佳电流及实验的可行性。在最佳电流下,通过对钛表面总蛋白含量、碱性磷酸酶(ALP)活性和茜素红染色(ARS)进行定量分析,确定每组细胞的成骨条件。最后,观察电刺激后细胞在钛表面的黏附与铺展情况。结果表明,该TENG具有良好的电输出性能,开路电压为65 V,短路电流为42 μA。与其他电流相比,30 μA的电流强度显著提高了细胞增殖与迁移、成骨以及黏附与铺展能力。上述结果证实了TENG在生物医学应用中的安全性和可操作性,为未来TENG应用于缩短术后钛植入物周围骨整合时间奠定了基础。

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