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首页> 外文期刊>Acta biomaterialia >3D scaffold with effective multidrug sequential release against bacteria biofilm
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3D scaffold with effective multidrug sequential release against bacteria biofilm

机译:3d脚手架与有效的多药顺序释放对细菌生物膜

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Bone infection is a feared complication following surgery or trauma that remains as an extremely difficult disease to deal with. So far, the outcome of therapy could be improved with the design of 3D implants, which combine the merits of osseous regeneration and local multidrug therapy so as to avoid bacterial growth, drug resistance and the feared side effects. Herein, hierarchical 3D multidrug scaffolds based on nanocomposite bioceramic and polyvinyl alcohol (PVA) prepared by rapid prototyping with an external coating of gelatin-glutaraldehyde (Gel-Glu) have been fabricated. These 3D scaffolds contain three antimicrobial agents (rifampin, levofloxacin and vancomycin), which have been localized in different compartments of the scaffold to obtain different release kinetics and more effective combined therapy. Levofloxacin was loaded into the mesopores of nanocomposite bioceramic part, vancomycin was localized into PVA biopolymer part and rifampin was loaded in the external coating of Gel-Glu. The obtained results show an early and fast release of rifampin followed by sustained and prolonged release of vancomycin and levofloxacin, respectively, which are mainly governed by the progressive in vitro degradability rate of these scaffolds. This combined therapy is able to destroy Gram-positive and Gram-negative bacteria biofilms as well as inhibit the bacteria growth. In addition, these multifunctional scaffolds exhibit excellent bioactivity as well as good biocompatibility with complete cell colonization of preosteoblast in the entire surface, ensuring good bone regeneration. These findings suggest that these hierarchical 3D multidrug scaffolds are promising candidates as platforms for local bone infection therapy.
机译:骨感染是手术或创伤后的令人担忧的并发症,仍然是一个极其困难的疾病。到目前为止,可以随着3D植入物的设计而改善治疗的结果,其结合了骨质再生和局部多药治疗的优点,以避免细菌生长,耐药性和令人担忧的副作用。这里,已经制造了通过通过快速原型制备的基于纳米复合体生物陶瓷和聚乙烯醇(PVA)的分层3D多药支架,并制备了通过具有明胶 - 戊二醛(GEL-Glu-glu)的外涂层制备的。这些3D支架含有三种抗微生物剂(利福平,左氧氟沙星和万古霉素),其已经在支架的不同室内定位,得到不同的释放动力学和更有效的联合治疗。将左氧氟沙星装载到纳米复合生物陶瓷部分的中孔中,万古霉素局部化成PVA生物聚合物部分,并且在凝胶胶的外涂层中装载了利福平。所得结果分别显示了利福平的早期和快速释放,然后分别持续和长期释放万古霉素和左氧氟沙星,其主要由这些支架的逐步的体外降解率治理。这种组合的疗法能够破坏革兰氏阳性和革兰氏阴性细菌生物膜,并抑制细菌生长。此外,这些多功能支架表现出优异的生物活性以及具有整个表面的预细胞细胞的完全细胞定植的良好生物相容性,确保了良好的骨再生。这些研究结果表明,这些分层3D多药脚手架是候选人作为局部骨感染治疗的平台。

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