Wang Shuaishuai 1† , Zhu Tongtong1† , Wang Dapeng2 ,
Zhang Mingran1 , Wang Xukai 1 , Yu Yue1 , Dong Hengliang1 ,
Wu Guangzhi 1 * and Zhang Minglei 1 *
1 Department of Orthopedics, China-Japan Union Hospital of Jilin University, Changchun, China,
2 Department of Orthopedics, Siping Central Hospital, Siping, China
EDITED BY
Xiaoyuan Li,
Northeast Normal University, China
REVIEWED BY
Fuzeng Ren,
Southern University of Science and
Technology, China
Gong Cheng,
Harvard University, United States
Ruogu Qi,
Nanjing University of Chinese Medicine,
China
*CORRESPONDENCE
Wu Guangzhi,
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Zhang Minglei,
†
These authors have contributed equally to this work
SPECIALTY SECTION
This article was submitted to Biomaterials, a section of the journal
Frontiers in Bioengineering and Biotechnology
RECEIVED 27 October 2022
ACCEPTED 18 January 2023
PUBLISHED 30 January 2023
CITATION
Shuaishuai W, Tongtong Z, Dapeng W, Mingran Z, Xukai W, Yue Y, Hengliang D, Guangzhi W and Minglei Z (2023), Implantable biomedical materials for treatment of bone infection.
Front. Bioeng. Biotechnol. 11:1081446.
doi: 10.3389/fbioe.2023.1081446
COPYRIGHT
© 2023 Shuaishuai, Tongtong, Dapeng, Mingran, Xukai, Yue, Hengliang, Guangzhi and Minglei. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY).
The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
The treatment of bone infections has always been difficult. The emergence of drugresistant bacteria has led to a steady decline in the effectiveness of antibiotics. It is also especially important to fight bacterial infections while repairing bone deffects and cleaning up dead bacteria to prevent biofilm formation. The development of biomedical materials has provided us with a research direction to address this issue.
We aimed to review the current literature, and have summarized multifunctional antimicrobial materials that have long-lasting antimicrobial capabilities that promote angiogenesis, bone production, or “killing and releasing.” This review provides a comprehensive summary of the use of biomedical materials in the treatment of bone infections and a reference thereof, as well as encouragement to perform further research in this field.
KEYWORDS
biological materials, bone infection, multifunctional material, implantable material, treatment of bone infection, progress of infection treatment, multifunctionalization of materials
This article is excerpted from the 《 Frontiers in Endocrinology》 by Wound World
管理治疗了大量烧烫伤、冻伤、电击伤、压疮及瘢痕患者,多次参与成批危重烧伤患者的救治工作。曾于国内外多所权威激光及整形治疗机构进修学习。
擅长: 各种烧伤治疗、表皮肿物去除和皮瓣成形、体表瘢痕防治,糖尿病足、褥疮、慢性难愈性创面的治疗;面部、胸部整形,自体脂肪移植。
从事整形、烧伤临床、教学、科研10年。2016年在中国科学院整形外科医院进修整1年,系统的学习了整形美容理论知识和临床手术技能。在国内第一作者发表论文6篇,参与发表论文20余篇,多篇为核心期刊。
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伤口世界平台生态圈,以“关爱人间所有伤口患者”为愿景,连接、整合和拓展线上和线下的管理慢性伤口的资源,倡导远程、就近和居家管理慢性伤口,解决伤口专家的碎片化时间的价值创造、诊疗经验的裂变复制、和患者的就近、居家和低成本管理慢性伤口的问题。
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