首页> 美国卫生研究院文献>Scientific Reports >An effective treatment of experimental osteomyelitis using the antimicrobial titanium/silver-containing nHP66 (nano-hydroxyapatite/polyamide-66) nanoscaffold biomaterials
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An effective treatment of experimental osteomyelitis using the antimicrobial titanium/silver-containing nHP66 (nano-hydroxyapatite/polyamide-66) nanoscaffold biomaterials

机译:使用抗菌的含钛/银的nHP66(纳米羟基磷灰石/聚酰胺-66)纳米支架生物材料有效治疗实验性骨髓炎

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摘要

Effective treatment of osteomyelitis remains a formidable clinical challenge. The rapid emergence of multidrug-resistant bacteria has renewed interest in developing antimicrobial biomaterials using antiseptic silver ions to treat osteomyelitis. However, inadequate local retention and severe cytotoxic effects have limited the clinical use of ionic silver for bone grafts. We recently developed novel porous nano-hydroxyapatite/polyamide 66 (nHP66)-based nanoscaffold materials containing varied concentrations of silver ions (Ag+) (TA-nHAPA66) and oxidized titanium (TiO2), which was added as a second binary element to enhance antibacterial activity and biocompatibility. In this study, we establish a large cohort of rabbit model of experimental osteomyelitis and investigate the in vivo antimicrobial and therapeutic effects of TA-nHP66 biomaterials and their in vivo silver release kinetics. We find the TA-nHP66 scaffolds exhibit potent antibacterial activities against E. coli and S. aureus, support cell adhesion and cell proliferation of pre-osteoblasts, and stimulate osteogenic regulator/marker expression. Moreover, the TA2-nHP66 scaffold exerts potent antibacterial/anti-inflammation effects in vivo and promotes bone formation at the lesion site of osteomyelitis. We further demonstrate that TA2-nHP66 exhibits excellent biosafety profile without apparent systemic toxicities. Therefore, the TA-nHP66 scaffold biomaterials may be further explored as an effective adjuvant therapy for infected bone defects and/or osteomyelitis debridement.
机译:有效治疗骨髓炎仍然是一个巨大的临床挑战。耐多药细菌的迅速出现,重新引起了人们对使用抗菌银离子治疗骨髓炎的抗菌生物材料开发的兴趣。但是,局部保留不足和严重的细胞毒性作用限制了离子银在骨移植物中的临床应用。我们最近开发了新颖的基于多孔纳米羟基磷灰石/聚酰胺66(nHP66)的纳米支架材料,该材料包含不同浓度的银离子(Ag + )(TA-nHAPA66)和氧化钛(TiO2),作为第二个二元元素,可增强抗菌活性和生物相容性。在这项研究中,我们建立了实验性骨髓炎的大型兔子模型,并研究了TA-nHP66生物材料的体内抗菌和治疗作用及其体内银释放动力学。我们发现TA-nHP66支架对大肠杆菌和金黄色葡萄球菌表现出有效的抗菌活性,支持成骨细胞的细胞粘附和细胞增殖,并刺激成骨调节剂/标志物的表达。此外,TA2-nHP66支架在体内发挥有效的抗菌/抗炎作用,并促进骨髓炎病变部位的骨形成。我们进一步证明TA2-nHP66表现出优异的生物安全性,而没有明显的全身毒性。因此,可以进一步探索TA-nHP66支架生物材料作为一种有效的辅助疗法,用于治疗感染的骨缺损和/或骨髓炎清创。

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