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用3D打印框架增强的胶原银掺杂羟基磷灰石支架用于预防感染和促进承重骨缺损的修复。

Collagen silver-doped hydroxyapatite scaffolds reinforced with 3D printed frameworks for infection prevention and enhanced repair of load-bearing bone defects.

作者信息

Genoud Katelyn J, Sadowska Joanna M, Power Rachael N, Costard Lara S, Ryan Emily J, Matherson Austyn R, Gonzalez-Vazquez Arlyng G, Lemoine Mark, Eichholz Kian, Pitacco Pierluca, Chen Gang, Cavanagh Brenton, Garcia Orquidea, Murphy Ciara M, Curtin Caroline M, Kelly Daniel J, O'Brien Fergal J

机构信息

Tissue Engineering Research Group (TERG), Department of Anatomy and Regenerative Medicine, RCSI University of Medicine and Health Sciences, Dublin, Ireland.

Trinity Centre for Biomedical Engineering, Trinity College Dublin, Dublin, Ireland.

出版信息

Biofabrication. 2025 Feb 7;17(2). doi: 10.1088/1758-5090/adaf59.

Abstract

Osteomyelitis, a severe bone infection, is an extremely challenging complication in the repair of traumatic bone defects. Furthermore, the use of long-term high-dose antibiotics in standard treatment increases the risks of antibiotic resistance. Herein, an antibiotic-free, collagen silver-doped hydroxyapatite (coll-AgHA) scaffold reinforced with a 3D printed polycaprolactone (PCL) framework was developed with enhanced mechanical properties to be used in the repair of load-bearing defects with antimicrobial properties as a preventative measure against osteomyelitis. The AgHA particles were fabricated in varying Ag doses and loaded within freeze-dried collagen scaffolds at two concentrations. The optimised Ag dose (1.5 mol% Ag) and AgHA concentration (200 wt%) within the collagen scaffold demonstratedosteogenic and antibacterial properties againstthe main causative pathogen of osteomyelitis. The addition of the PCL framework to the coll-AgHA scaffolds significantly enhanced the compressive modulus from 4 to 12 MPa while maintaining high porosity as well as both pro-osteogenic and antibacterial properties. The reinforced coll-AgHA scaffolds were implantedand demonstrated enhanced bone repair, significantly greater vessel formation, and calcified tissue in a load-bearing critical sized defect in rats. Taken together, these results confirm the capacity of this novel biomaterial scaffold as a preventative measure against infection in bone repair for use in load-bearing defects, without the use of antibiotics.

摘要

骨髓炎是一种严重的骨感染,是创伤性骨缺损修复中极具挑战性的并发症。此外,标准治疗中使用长期大剂量抗生素会增加抗生素耐药性的风险。在此,开发了一种无抗生素、用3D打印聚己内酯(PCL)框架增强的胶原银掺杂羟基磷灰石(coll-AgHA)支架,其机械性能得到增强,用于修复具有抗菌性能的承重缺损,作为预防骨髓炎的措施。AgHA颗粒以不同的Ag剂量制备,并以两种浓度负载在冻干胶原支架内。胶原支架内优化的Ag剂量(1.5 mol% Ag)和AgHA浓度(200 wt%)对骨髓炎的主要致病病原体具有成骨和抗菌性能。在coll-AgHA支架中添加PCL框架可将压缩模量从4 MPa显著提高到12 MPa,同时保持高孔隙率以及成骨和抗菌性能。植入增强的coll-AgHA支架后,在大鼠承重临界尺寸缺损中显示出增强的骨修复、明显更多的血管形成和钙化组织。综上所述,这些结果证实了这种新型生物材料支架作为一种预防措施,可用于承重缺损的骨修复中预防感染,而无需使用抗生素。

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