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载万古霉素双相磷酸钙骨替代物在促进新骨生长及预防术后感染方面的疗效。

The efficacy of vancomycin-loaded biphasic calcium phosphate bone substitute in the promotion of new bone growth and the prevention of postoperative infection.

作者信息

Wang Shi-Yong, Yao Ru-Bin, Yang Kai-Shun, Liang Huang-Chien, Su Chen-Ying, Fang Hsu-Wei, Lim Sher-Wei

机构信息

Department of Spinal Surgery, First Affiliated Hospital of Dali University, Dali, China.

Department of Materials Engineering, Ming Chi University of Technology, New Taipei City, Taiwan.

出版信息

Front Bioeng Biotechnol. 2022 Nov 1;10:988436. doi: 10.3389/fbioe.2022.988436. eCollection 2022.

Abstract

Due to the increasing need for suitable alternatives to bone grafts, artificial bones made of biphasic calcium phosphate (BCP) are currently being extensively researched. These porous bone substitutes have also demonstrated considerable incorporation with the host bone, and new bone is able to grow within the porous structure. They therefore offer a potential therapeutic approach for bone defects. Vancomycin-loaded Bicera™, a BCP bone substitute, was investigated in order to prevent implant-associated osteomyelitis and postoperative infection after orthopedic surgery. The loading capacity of Bicera™ was measured to understand its potential antibiotic adsorption volume. An antibiotic susceptibility test was also carried out to analyze the effect of Bicera™ loaded with different concentrations of vancomycin on the growth inhibition of methicillin-resistant (MRSA). Vancomycin-loaded Bicera™ was implanted into rabbits with bone defects, and general gross, radiographic, and histological evaluation was undertaken at 4, 12, and 24 weeks after implantation. The maximum loading capacity of vancomycin-loaded Bicera™ was 0.9 ml of liquid regardless of the vancomycin concentration. Antibiotic susceptibility tests showed that vancomycin-loaded Bicera™ inhibited the growth of MRSA for 6 weeks. In addition, animal studies revealed that new bone grew into the vancomycin-loaded Bicera™. The percentage of new bone formation from 4 to 24 weeks after implantation increased from 17% to 36%. Vancomycin-loaded Bicera™ could effectively inhibit the growth of MRSA . It was found to incorporate into the host bone well, and new bone was able to grow within the bone substitute. The results of this study indicate that vancomycin-loaded Bicera™ is a potential bone substitute that can prevent implant-associated osteomyelitis and postoperative infection.

摘要

由于对合适的骨移植替代物的需求不断增加,目前正在广泛研究由双相磷酸钙(BCP)制成的人工骨。这些多孔骨替代物也已证明与宿主骨有相当程度的融合,并且新骨能够在多孔结构内生长。因此,它们为骨缺损提供了一种潜在的治疗方法。为了预防骨科手术后的植入相关骨髓炎和术后感染,对载有万古霉素的Bicera™(一种BCP骨替代物)进行了研究。测量了Bicera™的负载能力,以了解其潜在的抗生素吸附量。还进行了抗生素敏感性试验,以分析载有不同浓度万古霉素的Bicera™对耐甲氧西林金黄色葡萄球菌(MRSA)生长抑制的影响。将载有万古霉素的Bicera™植入有骨缺损的兔子体内,并在植入后4周、12周和24周进行大体、影像学和组织学评估。无论万古霉素浓度如何,载有万古霉素的Bicera™的最大负载能力为0.9毫升液体。抗生素敏感性试验表明,载有万古霉素的Bicera™在6周内抑制了MRSA的生长。此外,动物研究表明新骨长入了载有万古霉素的Bicera™中。植入后4周至24周新骨形成的百分比从17%增加到36%。载有万古霉素的Bicera™可有效抑制MRSA的生长。发现它能很好地融入宿主骨,并且新骨能够在骨替代物内生长。这项研究的结果表明,载有万古霉素的Bicera™是一种潜在的骨替代物,可预防植入相关骨髓炎和术后感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e98/9663797/5c219fe165bc/fbioe-10-988436-g001.jpg

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