United States Army Institute of Surgical Research, Extremity Trauma and Regenerative Medicine Task Area, Fort Sam Houston, San Antonio, TX, USA.
Biomaterials. 2013 Oct;34(30):7533-43. doi: 10.1016/j.biomaterials.2013.06.026. Epub 2013 Jul 5.
Infectious complications of open fractures continue to be a significant factor contributing to non-osseous union and extremity amputation. The persistence of bacteria within biofilms despite meticulous debridement and antibiotic therapy is believed to be a major cause of chronic infection. Considering the difficulties in treating biofilm-associated infections, the use of biofilm dispersal agents as a therapeutic strategy for the prevention of biofilm-associated infections has gained considerable interest. In this study, we investigated whether local delivery of D-Amino Acids (D-AAs), a biofilm dispersal agent, protects scaffolds from contamination and reduces microbial burden within contaminated rat segmental defects in vivo. In vitro testing on biofilms of clinical isolates of Staphylococcus aureus demonstrated that D-Met, D-Phe, D-Pro, and D-Trp were highly effective at dispersing and preventing biofilm formation individually, and the effect was enhanced for an equimolar mixture of D-AAs. Incorporation of D-AAs into polyurethane scaffolds as a mixture (1:1:1 D-Met:D-Pro:D-Trp) significantly reduced bacterial contamination on the scaffold surface in vitro and within bone when implanted into contaminated femoral segmental defects. Our results underscore the potential of local delivery of d-AAs for reducing bacterial contamination by targeting bacteria within biofilms, which may represent a treatment strategy for improving healing outcomes associated with open fractures.
开放性骨折的感染并发症仍然是导致非骨愈合和肢体截肢的重要因素。尽管进行了精心的清创和抗生素治疗,但生物膜内细菌的持续存在被认为是慢性感染的主要原因。考虑到治疗生物膜相关感染的困难,生物膜分散剂作为一种预防生物膜相关感染的治疗策略引起了广泛关注。在这项研究中,我们研究了局部递送 D-氨基酸(D-AAs)——一种生物膜分散剂——是否可以保护支架免受污染,并减少体内污染的大鼠节段性缺损中的微生物负担。对金黄色葡萄球菌临床分离株生物膜的体外测试表明,D-Met、D-Phe、D-Pro 和 D-Trp 单独使用时非常有效地分散和防止生物膜形成,而等摩尔混合物的效果更强。将 D-AAs 混合(1:1:1 D-Met:D-Pro:D-Trp)掺入聚氨酯支架中,可显著减少体外支架表面和植入污染性股骨干节段性缺损时骨内的细菌污染。我们的结果强调了局部递送 D-AAs 通过靶向生物膜内的细菌来减少细菌污染的潜力,这可能代表着改善开放性骨折相关愈合结果的一种治疗策略。