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Effects of gatifloxaine content in gatifloxacine-loaded PLGA and beta-tricalcium phosphate composites on efficacy in treating osteomyelitis

机译:载有加替沙星的PLGA和β-磷酸三钙复合物中加替沙星的含量对治疗骨髓炎的疗效的影响

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摘要

Composites of gatifloxacin (GFLX)-loaded poly (lactic-co-glycolic) acid (PLGA) and beta-tricalcium phosphate (bTCP) containing 0, 1, and 10 wt % GFLX (0, 1, and 10 wt % GFLX composites), and GFLX-loaded PLGA containing 1, 5, and 10 wt % GFLX (1, 5, and 10wt % GFLXPLGA) as controls were fabricated and characterized in vitro and in vivo. On in vitro evaluation, the 10 wt % GFLX composite released GFLX over at least 28 days in Hanks' balanced solution and exhibited clinically sufficient bactericidal activities against Streptococcus milleri and Bacteroides fragilis from 1 h to 10 days. The 0, 1, and 10 wt % GFLX composites and 10 wt % GFLX-PLGA were implanted in bone defects created by debridement of osteomyelitis lesions induced by S. milleri and B. fragilis in the mandible of rabbits (n = 5). Four weeks after implantation of the 10 wt % GFLX composite, inflammation in the debrided area disappeared in all the rabbits, while inflammation remained in all the rabbits after implantation of the 0 wt % GFLX composite and 10 wt % GFLX-PLGA, and in three rabbits after implantation of the 1 wt % GFLX composite. Bone formation appears to be less intense for the 10 wt % GFLX composite than for the 1 wt % GFLX composite probably owing to the rapid degradation of the 10 wt % GFLX composite. These findings show that the GFLX composite is effective for the local treatment of osteomyelitis.
机译:载有加替沙星(GFLX)的聚(乳酸-乙醇酸)酸(PLGA)和β-磷酸三钙(bTCP)的复合材料,其中包含0、1和10 wt%的GFLX(0、1、10 wt%的GFLX复合材料) ,并制备了含有1、5和10重量%的GFLX(1、5和10重量%的GFLXPLGA)作为对照的装载有GFLX的PLGA,并在体外和体内进行了表征。在体外评估中,10重量%GFLX复合材料在Hanks的平衡溶液中至少28天释放了GFLX,并在1 h至10天的时间内表现出对足链球菌和脆弱拟杆菌的足够的杀菌活性。将0、1和10 wt%的GFLX复合材料以及10 wt%的GFLX-PLGA植入因兔下颌骨(S = Milleri)中的S. milleri和B. fragilis引起的骨髓炎病变的清创而产生的骨缺损中(n = 5)。植入10 wt%GFLX复合材料后四周,所有兔子的清创区炎症消失,而植入0 wt%GFLX复合材料和10 wt%GFLX-PLGA的所有兔子中炎症仍然存在,其中三只植入1 wt%GFLX复合材料后的兔子。对于10 wt%GFLX复合材料,骨形成似乎不如1 wt%GFLX复合材料强,这可能是由于10 wt%GFLX复合材料的快速降解。这些发现表明,GFLX复合物对于局部治疗骨髓炎是有效的。

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