Jiang Chenxi, Zhu Guangxun, Liu Qian
Department of Stomatology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
School of Stomatology, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Front Bioeng Biotechnol. 2024 Mar 27;12:1375266. doi: 10.3389/fbioe.2024.1375266. eCollection 2024.
Chronic osteomyelitis remains a persistent challenge for the surgeons due to its refractory nature. Generally, treatment involves extensive debridement of necrotic bone, filling of dead space, adequate antimicrobial therapy, bone reconstruction, and rehabilitation. However, the optimal choice of bone substitute to manage the bone defect remains debatable. This paper reviewed the clinical evidence for antimicrobial biodegradable bone substitutes in the treatment of osteomyelitis in recent years. Indeed, this combination was proved to eradicate infection and facilitate bone reconstruction, which might reduce the cost and hospital stay. Handling was associated with increased risk of unwanted side effect to affect bone healing. The study provides some valuable insights into the clinical evaluation of treatment outcomes in the aspects of infection eradication, bone reconstruction, and complications caused by materials. However, achieving complete infection eradication and subsequently perfect bone reconstruction remains challenging in compromised conditions, hence advanced innovative bone substitutes are imperative. In this review, we mainly focus on the desired functional effects of advanced bone substitutes on infection eradication and bone reconstruction from the future perspective. Handling property was optimized to simplify surgery process. It is expected that this review will provide an important opportunity to enhance the understanding of the design and application of innovative biomaterials to synergistically eradicate infection and restore integrity and function of bone.
由于其难治性,慢性骨髓炎仍然是外科医生面临的一个持续挑战。一般来说,治疗包括对坏死骨进行广泛清创、填充死腔、进行充分的抗菌治疗、骨重建和康复。然而,用于处理骨缺损的最佳骨替代物选择仍存在争议。本文回顾了近年来抗菌可生物降解骨替代物治疗骨髓炎的临床证据。事实上,这种组合被证明可以根除感染并促进骨重建,这可能会降低成本和缩短住院时间。操作与影响骨愈合的不良副作用风险增加有关。该研究在根除感染、骨重建以及材料引起的并发症等方面为治疗结果的临床评估提供了一些有价值的见解。然而,在受损情况下实现完全根除感染并随后实现完美的骨重建仍然具有挑战性,因此先进的创新骨替代物势在必行。在这篇综述中,我们主要从未来的角度关注先进骨替代物对根除感染和骨重建的预期功能效果。优化了操作性能以简化手术过程。预计这篇综述将提供一个重要机会,以增进对创新生物材料的设计和应用的理解,从而协同根除感染并恢复骨的完整性和功能。