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

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机构: [1]Key Laboratory of Xin’an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China [2]Institute of Biomedical Engineering, The Second Clinical Medical College of Jinan University (Shenzhen People’s Hospital), Shenzhen, 518020, Guangdong, PR China [3]The First Affiliated Hospital, Jinan University, Guangzhou, 510630, Guangdong, PR China [4]College of Acumox and Tuina, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China [5]Medical Research Center, Ningbo City First Hospital, Ningbo, Zhejiang, 315010, PR China [6]Center of Clinical Laboratory & the Key Laboratory of Clinical In Vitro Diagnostic Techniques of Zhejiang Province, The First Affiliated Hospital, School of Medicine,Zhejiang University, Hangzhou, 310003, Zhejiang, PR China
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关键词: Titanium implants Gallium (III)-Phenolic networks Pro-osteogenesis Inhibiting osteoclastogenesis Osseointegration

摘要:
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.Copyright © 2023 Elsevier Ltd. All rights reserved.

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出版当年[2022]版:
大类 | 1 区 工程技术
小类 | 1 区 工程:生物医学 1 区 材料科学:生物材料
最新[2025]版:
大类 | 1 区 医学
小类 | 1 区 工程:生物医学 1 区 材料科学:生物材料
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出版当年[2021]版:
Q1 ENGINEERING, BIOMEDICAL Q1 MATERIALS SCIENCE, BIOMATERIALS
最新[2023]版:
Q1 ENGINEERING, BIOMEDICAL Q1 MATERIALS SCIENCE, BIOMATERIALS

影响因子: 最新[2023版] 最新五年平均 出版当年[2021版] 出版当年五年平均 出版前一年[2020版] 出版后一年[2022版]

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第一作者机构: [1]Key Laboratory of Xin’an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China [2]Institute of Biomedical Engineering, The Second Clinical Medical College of Jinan University (Shenzhen People’s Hospital), Shenzhen, 518020, Guangdong, PR China [3]The First Affiliated Hospital, Jinan University, Guangzhou, 510630, Guangdong, PR China [*1]Key Laboratory of Xin’an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China
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通讯机构: [1]Key Laboratory of Xin’an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China [2]Institute of Biomedical Engineering, The Second Clinical Medical College of Jinan University (Shenzhen People’s Hospital), Shenzhen, 518020, Guangdong, PR China [3]The First Affiliated Hospital, Jinan University, Guangzhou, 510630, Guangdong, PR China [*1]Key Laboratory of Xin’an Medicine, Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, Anhui, PR China
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