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A Localized Phage-Based Antimicrobial System: Effect of Alginate on Phage Desorption from β-TCP Ceramic Bone Substitutes

机译:局部噬菌体的抗微生物系统:藻酸盐对β-TCP陶瓷骨代替氏素噬菌体解吸的影响

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摘要

Tricalcium phosphate (TCP) is a prosthetic material commonly used as a bone substitute to repair osteoarticular diseases and injuries. In this type of bone reconstruction surgery, antibiotics remain the common preventive and therapeutic treatment for bacterial infection. Nevertheless, the emergence of multi-resistant strains requires complimentary or alternative treatments. Today, one of the promising alternative approaches is phage therapy. Phages are bacterial viruses that have several advantages over chemotherapy, such as the specificity of bacterial strain, the absence of side effects, and a rapid response. In this work, we studied the impact of alginate hydrogels for overlaying λvir-phage-loaded β-TCP ceramic bone substitutes, delaying the phage desorption. The results show that the use of a 1% alginate–CaCl2 hydrogel overlapping the β-TCP ceramic pellets leads to higher initial phage concentration on the material and extends the released time of phages to two weeks when compared with control pellets. These alginate-coated biomaterials also generate faster bacterial lysis kinetics and could therefore be a good practical prosthetic device for bone and joint surgeries by allowing local treatment of bacterial infections with phage therapy for a longer period of time.
机译:磷酸三钙(TCP)是一种常用作为骨替代的假体材料,以修复骨质疾病和伤害。在这种类型的骨重建手术中,抗生素仍然是细菌感染的常见预防和治疗治疗。然而,多种抗性菌株的出现需要互补或替代治疗方法。今天,有希望的替代方法之一是噬菌体疗法。噬菌体是细菌病毒,其优于化疗,例如细菌菌株的特异性,没有副作用,以及快速反应。在这项工作中,我们研究了藻酸盐水凝胶的影响,以覆盖λvir-噬菌体负载β-TCP陶瓷骨代替,延迟噬菌体解吸。结果表明,使用重叠β-TCP陶瓷颗粒的1%藻酸盐-CaCl2水凝胶导致材料上的初始噬菌体浓度较高,与对照颗粒相比,将噬噬菌体的噬噬菌体时间延伸至两周。这些藻酸盐涂覆的生物材料也产生更快的细菌裂解动力学,因此可以是骨骼和关节手术的良好实用的假体装置,通过允许局部治疗噬菌体治疗较长的时间。

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