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通过促进成骨和抑制破骨细胞生成来增强钛植入物骨整合的抗氧化和抗菌镓(III)-酚醛涂层。

Antioxidative and antibacterial gallium (III)-phenolic coating for enhanced osseointegration of titanium implants via pro-osteogenesis and inhibiting osteoclastogenesis.

机构信息

Key Laboratory of Xin'an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China; Institute of Biomedical Engineering, The Second Clinical Medical College of Jinan University (Shenzhen People's Hospital), Shenzhen, 518020, Guangdong, PR China; The First Affiliated Hospital, Jinan University, Guangzhou, 510630, Guangdong, PR China.

College of Acumox and Tuina, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China.

出版信息

Biomaterials. 2023 Oct;301:122268. doi: 10.1016/j.biomaterials.2023.122268. Epub 2023 Aug 7.

Abstract

Improving the ability of implants to integrate with natural bone tissue at the initial stage of implantation remains a huge challenge because bone-to-implant interfaces are often accompanied by abnormal microenvironments with infection, reactive oxygen species (ROS) and unbalanced bone homeostasis. In this study, a multifunctional coating was fabricated on the basis of gallium (III)-phenolic networks. It is easily obtained by immersing the implants into a mixed solution of tannic acids (TAs) and gallium ions. The thickness of the coating can be precisely controlled by adjusting the number and time of immersion experiments. The resulting coating displays excellent near-infrared photothermal property. As the coating degrades, TAs and gallium ions with low concentration are released from the coating, which is more rapid in acidic and oxidative stress microenvironments. Photothermal performance as well as released TAs and gallium ions give the coating outstanding broad-spectrum antibacterial ability. Furthermore, the coating effectively reduces intracellular ROS of osteoblasts. In vitro and in vivo experiments demonstrate the capability of the coating enhancing implants' osseointegration via pro-osteogenesis and inhibiting osteoclastogenesis. The findings imply that gallium (III)-phenolic coating holds great promise to promote implant osseointegration by rescuing abnormal microenvironments of infection, oxidative stress and unbalanced bone homeostasis.

摘要

在植入物初始阶段提高其与天然骨组织整合的能力仍然是一个巨大的挑战,因为骨-植入物界面通常伴随着异常的微环境,包括感染、活性氧物种(ROS)和不平衡的骨稳态。在本研究中,基于镓(III)-酚网络构建了一种多功能涂层。通过将植入物浸入单宁酸(TAs)和镓离子的混合溶液中,很容易获得该涂层。通过调整浸泡实验的次数和时间,可以精确控制涂层的厚度。所得涂层具有优异的近红外光热性能。随着涂层的降解,低浓度的 TAs 和镓离子从涂层中释放出来,在酸性和氧化应激微环境中释放速度更快。光热性能以及释放的 TAs 和镓离子赋予涂层出色的广谱抗菌能力。此外,该涂层还能有效减少成骨细胞内的 ROS。体外和体内实验证明了该涂层通过促进成骨和抑制破骨细胞形成来增强植入物骨整合的能力。这些发现表明,镓(III)-酚涂层通过挽救感染、氧化应激和不平衡的骨稳态等异常微环境,有望促进植入物的骨整合。

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