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作为杀菌骨再生植入物的压电异质结

Piezoelectric Heterojunctions as Bacteria-Killing Bone-Regenerative Implants.

作者信息

Fan Youzhun, Zhai Jinxia, Wang Zhengao, Yin Zhaoyi, Chen Haoyan, Ran Maofei, Zhu Zurong, Ma Yubin, Ning Chengyun, Yu Peng, Mao Chuanbin

机构信息

School of Materials Science and Engineering, Guang Dong Engineering Technology Research Center of Metallic Materials Surface Functionalization, National Engineering Research Center for Tissue Restoration and Reconstruction, Medical Devices Research and Testing Center, South China University of Technology, Guangzhou, 510641, P. R. China.

Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Kunming, 650093, P. R. China.

出版信息

Adv Mater. 2025 Jan;37(1):e2413171. doi: 10.1002/adma.202413171. Epub 2024 Oct 25.

Abstract

Heterojunctions are widely used in energy conversion, environmental remediation, and photodetection, but have not been fully explored in regenerative medicine. In particular, piezoelectric heterojunctions have never been examined in tissue regeneration. Here the development of piezoelectric heterojunctions is shown to promote bone regeneration while eradicating pathogenic bacteria through light-cellular force-electric coupling. Specifically, an array of heterojunctions (TiO/BiWO), made of piezoelectric nanocrystals (BiWO) decorating TiO nanowires, is fabricated as a biocompatible implant. Upon exposure to near-infrared light, the piezoelectric heterojunctions generate reactive oxygen species and heat to kill bacteria through photodynamic and photothermal therapy, respectively. Meanwhile, the mechanical forces of the stem cells grown on the implant trigger the heterojunctions to produce electric fields that further promote osteogenesis to achieve osteointegration. The heterojunctions effectively suppress postoperative recurrent infections while promoting osseointegration through the local electric fields induced by cells. Therefore, the piezoelectric heterojunctions represent a promising antibacterial tissue-regenerative implant.

摘要

异质结在能量转换、环境修复和光探测领域有着广泛应用,但在再生医学中尚未得到充分探索。特别是,压电异质结从未在组织再生中得到研究。本文展示了压电异质结的发展,它能通过光-细胞力-电耦合促进骨再生,同时根除病原菌。具体而言,由装饰在TiO纳米线上的压电纳米晶体(BiWO)制成的异质结阵列(TiO/BiWO)被制作为生物相容性植入物。在近红外光照射下,压电异质结分别通过光动力和光热疗法产生活性氧和热量来杀死细菌。同时,生长在植入物上的干细胞的机械力触发异质结产生电场,进一步促进成骨作用以实现骨整合。异质结通过细胞诱导的局部电场有效抑制术后复发性感染,同时促进骨整合。因此,压电异质结是一种很有前景的抗菌组织再生植入物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abd2/11707579/4af03cac10b2/ADMA-37-2413171-g006.jpg

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