Hanssen Arlen D
Department of Orthopedics Mayo Clinic College of Medicine, Rochester, MN 55905, USA.
Clin Orthop Relat Res. 2005 Aug(437):91-6. doi: 10.1097/01.blo.0000175713.30506.77.
The primary benefit achieved with local antibiotic delivery vehicles is the ability to obtain extremely high levels of local antibiotics without increasing systemic toxicity. Antibiotic-loaded bone cement represents the current standard as an antibiotic delivery vehicle in orthopaedic surgery. Biodegradable alternatives to antibiotic-loaded bone cement also are being used clinically and there are many new products in the active stages of development. These alternatives can be categorized as bone graft, bone graft substitutes or extenders, natural polymers (protein-based products), and synthetic polymers. Composite biomaterials that simultaneously provide the functions of variable antibiotic delivery patterns and also contribute to the process of bone regeneration represent the most ideal class of local antibiotic delivery vehicles. High concentrations of certain antibiotics have been shown to affect the process of normal bone regeneration adversely in a dose dependent response. Considerable investigation still is required to determine the proper use of locally administered antibiotics to negotiate the balance between eradicating infection without excessively inhibiting the processes of bone regeneration.
局部抗生素递送载体的主要益处在于能够在不增加全身毒性的情况下获得极高水平的局部抗生素。载抗生素骨水泥是目前骨科手术中作为抗生素递送载体的标准。载抗生素骨水泥的可生物降解替代品也正在临床中使用,并且有许多处于积极研发阶段的新产品。这些替代品可分为骨移植材料、骨移植替代物或增量剂、天然聚合物(基于蛋白质的产品)以及合成聚合物。同时提供可变抗生素递送模式功能并有助于骨再生过程的复合生物材料代表了最理想的局部抗生素递送载体类别。已表明高浓度的某些抗生素会以剂量依赖性反应对正常骨再生过程产生不利影响。仍需要进行大量研究以确定局部应用抗生素的正确使用方法,从而在根除感染而不过度抑制骨再生过程之间取得平衡。