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离子电渗疗法作为将抗生素输送到同种异体骨中的一种手段。

Iontophoresis as a means of delivering antibiotics into allograft bone.

作者信息

Day R E, Megson S, Wood D

机构信息

Department of Medical Engineering and Physics, Royal Perth Hospital, Wellington Street, Perth 6001, Western Australia, Australia.

出版信息

J Bone Joint Surg Br. 2005 Nov;87(11):1568-74. doi: 10.1302/0301-620X.87B11.16384.

Abstract

Allograft bone is widely used in orthopaedic surgery, but peri-operative infection of the graft remains a common and disastrous complication. The efficacy of systemic prophylactic antibiotics is unproven, and since the graft is avascular it is likely that levels of antibiotic in the graft are low. Using an electrical potential to accelerate diffusion of antibiotics into allograft bone, high levels were achieved in specimens of both sheep and human allograft. In human bone these ranged from 187.1 mg/kg in endosteal (sd 15.7) to 124.6 (sd 46.2) in periosteal bone for gentamicin and 31.9 (sd 8.9) in endosteal and 2.9 (sd 1.1) in periosteal bone for flucloxacillin. The antibiotics remained active against bacteria in vitro after iontophoresis and continued to elute from the allograft for up to two weeks. Structural allograft can be supplemented directly with antibiotics using iontophoresis. The technique is simple and inexpensive and offers a potential means of reducing the rate of peri-operative infection in allograft surgery. Iontophoresis into allograft bone may also be applicable to other therapeutic compounds.

摘要

同种异体骨在骨科手术中广泛应用,但移植物的围手术期感染仍是常见且灾难性的并发症。全身预防性使用抗生素的效果尚未得到证实,而且由于移植物无血管,移植物中的抗生素水平可能较低。利用电势加速抗生素向同种异体骨中的扩散,在绵羊和人类同种异体骨标本中都达到了较高水平。在人类骨中,庆大霉素在内皮质骨中的含量为187.1mg/kg(标准差15.7),在骨膜骨中为124.6(标准差46.2);氟氯西林在内皮质骨中的含量为31.9(标准差8.9),在骨膜骨中为2.9(标准差1.1)。离子电渗疗法后,抗生素在体外对细菌仍保持活性,并从同种异体骨中持续洗脱长达两周。结构性同种异体骨可通过离子电渗疗法直接补充抗生素。该技术简单且成本低廉,为降低同种异体骨手术围手术期感染率提供了一种潜在方法。对同种异体骨进行离子电渗疗法也可能适用于其他治疗性化合物。

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