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压电刺激通过巨噬细胞的代谢重编程促进牙槽骨缺损中的骨再生。

Piezoelectric stimulation enhances bone regeneration in alveolar bone defects through metabolic reprogramming of macrophages.

作者信息

Sui Baiyan, Ding Tingting, Wan Xingyi, Chen Yuxiao, Zhang Xiaodi, Cui Yuanbo, Pan Jie, Li Linlin, Liu Xin

机构信息

Department of Dental Materials Shanghai Biomaterials Research and Testing Center Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine; College of Stomatology, Shanghai Jiao Tong University; National Center for Stomatology; National Clinical Research Center for Oral Diseases; Shanghai Key Laboratory of Stomatology Shanghai China.

Beijing Institute of Nanoenergy and Nanosystems Chinese Academy for Sciences Beijing China.

出版信息

Exploration (Beijing). 2024 Jun 10;4(6):20230149. doi: 10.1002/EXP.20230149. eCollection 2024 Dec.

Abstract

Immunomodulation has emerged as a promising strategy for promoting bone regeneration. However, designing osteoimmunomodulatory biomaterial that can respond to mechanical stress in the unique microenvironment of alveolar bone under continuous occlusal stress remains a significant challenge. Herein, a wireless piezoelectric stimulation system, namely, piezoelectric hydrogel incorporating BaTiO nanoparticles (BTO NPs), is successfully developed to generate piezoelectric potentials for modulating macrophage reprogramming. The piezoelectric stimulation reprograms macrophages towards the M2 phenotype, which subsequently induces osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs). RNA sequencing analysis reveals that piezoelectricity-modulated macrophage M2 polarization is closely associated with metabolic reprogramming, including increased amino acid biosynthesis and fatty acid oxidation. The composite hydrogel with excellent biocompatibility exhibits immunomodulatory and osteoinductive activities. In a rat model of alveolar bone defects, the piezoelectric hydrogel effectively promotes endogenous bone regeneration at the load-bearing sites. The piezoelectric-driven osteoimmunomodulation proposed in this study not only broadens understanding of the mechanism underlying piezoelectric biomaterials for tissue regeneration but also provides new insights into the design and development of next-generation immunomodulatory biomaterials.

摘要

免疫调节已成为促进骨再生的一种有前景的策略。然而,设计一种能在持续咬合压力下的牙槽骨独特微环境中响应机械应力的骨免疫调节生物材料仍然是一项重大挑战。在此,成功开发了一种无线压电刺激系统,即掺入钛酸钡纳米颗粒(BTO NPs)的压电水凝胶,以产生压电电位来调节巨噬细胞重编程。压电刺激将巨噬细胞重编程为M2表型,随后诱导骨髓间充质干细胞(BMSC)的成骨分化。RNA测序分析表明,压电调节的巨噬细胞M2极化与代谢重编程密切相关,包括氨基酸生物合成增加和脂肪酸氧化增加。具有优异生物相容性的复合水凝胶表现出免疫调节和骨诱导活性。在牙槽骨缺损的大鼠模型中,压电水凝胶有效地促进了承重部位的内源性骨再生。本研究提出的压电驱动的骨免疫调节不仅拓宽了对压电生物材料用于组织再生机制的理解,也为下一代免疫调节生物材料的设计和开发提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c0c/11657998/c4460914d3c0/EXP2-4-20230149-g004.jpg

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