Pithankuakul Kongkit, Samranvedhya Wallob, Visutipol Boonyarak, Rojviroj Sombat
Bangkok Orthopedic Center, Bangkok Hospital Group, Bangkok, Thailand.
J Arthroplasty. 2015 May;30(5):858-63. doi: 10.1016/j.arth.2014.12.003. Epub 2014 Dec 5.
We evaluated the effects of the mixing speed of hand-mixed bone cement and the different phases of antibiotic mixing on the elution, mechanical properties, and porosity of antibiotic-loaded bone cement. Vancomycin-loaded Palacos LV bone cement was prepared at two hand-mixing speeds, normal and high-speed, and with antibiotic addition during three phases (directly mixing with the PMMA powder, in the liquid phase, and in the dough phase). The cumulative antibiotic elution over 15 days in the high-speed group was increased by 24% compared with the normal-speed group (P < 0.001). The delayed antibiotic addition produced higher vancomycin elution (P < 0.05), but no difference was observed between the liquid and dough phases (P > 0.05). Our study demonstrated that bone cement prepared with high-speed hand mixing and delayed antibiotic addition can exhibit increased vancomycin release.
我们评估了手工混合骨水泥的混合速度以及抗生素混合的不同阶段对抗生素负载骨水泥的洗脱、力学性能和孔隙率的影响。以两种手工混合速度(正常速度和高速)制备了负载万古霉素的Palacos LV骨水泥,并在三个阶段添加抗生素(直接与聚甲基丙烯酸甲酯粉末混合、在液相中以及在面团相中)。与正常速度组相比,高速组在15天内的累积抗生素洗脱量增加了24%(P < 0.001)。延迟添加抗生素产生了更高的万古霉素洗脱量(P < 0.05),但在液相和面团相之间未观察到差异(P > 0.05)。我们的研究表明,通过高速手工混合和延迟添加抗生素制备的骨水泥可表现出增加的万古霉素释放。