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Eggshell membrane as a biodegradable bone regeneration inhibitor

机译:蛋壳膜作为可生物降解的骨再生抑制剂

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The efficiency of chicken eggshell membranes combined with a minimally invasive small osteotomy procedure of the ulna to accomplish an efficient release of the radius so that it can continue to grow in an unstressed manner was tested in rabbits. Eggshell membranes were extracted from chicken eggs, rinsed, dried and sterilized with ethylene oxide for 24 h. For reactivity testing, four separate subcutaneous pockets were created in 10 rats in the paravertebral region by blunt dissection and eggshell membranes were implanted in two of them. After 1-16 weeks, the implants were retrieved with the surrounding soft tissues and submitted to histological examination. Subsequently, 10 rabbits were anaesthetized and a complete 0.5 mm wide osteotomy was performed in both the right and the left distal ulna. A piece of eggshell membranes was interposed in the osteotomy site of one ulna. The opposite osteotomized ulna was left as a negative control. The rabbits were injected with oxytetracycline at the time of surgery and this was repeated every 7 days for labelling new bone formation. After 1-16 weeks, ulnar osteotomized regions were histologically examined. After histological, fluorescence microcopy and radiological evaluation, we demonstrate here for the first time that eggshell membranes as interpositional material in rabbit osteotomized ulnar experiments acted as an active barrier against bone bridging. The degradation of the eggshell membrane, due to host reaction, appeared sufficiently late to cause the desirable delay of bone healing that is compatible with the time needed for a corrective response.
机译:在兔子中测试了鸡卵壳膜与尺骨的微创小截骨术相结合以完成the骨的有效释放以使其能够以无压力方式继续生长的效率。从鸡蛋中提取蛋壳膜,冲洗,干燥并用环氧乙烷灭菌24小时。为了进行反应性测试,通过钝性解剖在10只大鼠的椎旁区域中创建了四个单独的皮下袋,并在其中的两个中植入了蛋壳膜。 1-16周后,将植入物与周围的软组织一起取出,并进行组织学检查。随后,麻醉10只兔子,并在右和左尺骨远端进行完全0.5 mm宽的截骨术。在一个尺骨的截骨部位插入一块蛋壳膜。将相反的截骨尺骨作为阴性对照。在手术时向兔子注射土霉素,每7天重复一次,以标记新的骨形成。 1-16周后,对组织尺骨截骨区域进行组织学检查。经过组织学,荧光显微镜和放射学评估后,我们首次在这里证明蛋壳膜作为兔截骨尺骨实验中的中介材料充当了对抗骨桥的活性屏障。由于宿主反应,蛋壳膜的降解出现得足够晚,足以引起理想的骨愈合延迟,这与校正反应所需的时间相适应。

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