首页> 美国卫生研究院文献>The Open Orthopaedics Journal >Use of Carboxymethyl Cellulose and Collagen Carrier with Equine Bone Lyophilisate Suggests Late Onset Bone Regenerative Effect in a Humerus Drill Defect – A Pilot Study in Six Sheep
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Use of Carboxymethyl Cellulose and Collagen Carrier with Equine Bone Lyophilisate Suggests Late Onset Bone Regenerative Effect in a Humerus Drill Defect – A Pilot Study in Six Sheep

机译:羧甲基纤维素和胶原蛋白载体与马骨冻干液的结合使用表明肱骨钻头缺陷中迟发性骨再生效应–六只绵羊的初步研究

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摘要

We assessed the use of a filler compound together with the osteoinductive demineralized bone matrix (DBM), Colloss E. The filler was comprised of carboxymethyl-cellulose and collagen type 1. The purpose of the study was to see if the filler compound would enhance the bone formation and distribute the osteoinductive stimulus throughout the bone defect. Six sheep underwent a bilateral humerus drill defect. The drill hole was filled with a compound consisting of 100 mg CMC, 100 mg collagen powder, and 1 ccm autologous full blood in one side, and a combination of this filler compound and 20 mg Colloss E in the other. The animals were divided into three groups of two animals and observed for 8, 12 and 16 weeks. Drill holes was evaluated using quantitative computed tomography (QCT), micro computed tomography (µCT) and histomorphometry. Mean total bone mineral density (BMD) of each implantation site was calculated with both QCT and µCT. Bone volume to total volume (BV/TV) was analyzed using µCT and histomorphometry. Although not statistically significant, results showed increased bone BMD after 16 weeks in µCT data and an increased BV/TV after 16 weeks in both µCT and histology. Correlation between QCT and µCT was R2 = 0.804. Correlation between histomorphometry and µCT BV/TV data was R2 = 0.8935 and with an average overrepresentation of 8.2% in histomorphometry. In conclusion the CMC-Collagen + Colloss E filler seems like a viable osteogenic bone filler mid- to long term. A correlation was found between the analytical methods used in this study.
机译:我们评估了填充剂与骨诱导性脱矿质骨基质(DBM)Colloss E一起使用的情况。填充剂由羧甲基纤维素和1型胶原组成。研究的目的是观察填充剂是否能增强骨水泥的稳定性。骨形成并在整个骨缺损中分布骨诱导刺激。六只绵羊经历了双侧肱骨钻缺损。钻孔的一侧填充有由100 mg CMC,100 mg胶原粉和1 ccm自体全血组成的化合物,另一侧填充有该填充化合物和20 mg Colloss E的混合物。将动物分成三组,每组两只动物,并观察8、12和16周。使用定量计算机断层扫描(QCT),微计算机断层扫描(µCT)和组织形态学评估钻孔。使用QCT和µCT计算每个植入部位的平均总骨矿物质密度(BMD)。使用µCT和组织形态计量学分析骨体积与总体积(BV / TV)。尽管无统计学意义,但结果显示,µCT数据在16周后骨BMD升高,µCT和组织学在16周后BV / TV升高。 QCT与μCT之间的相关性为R 2 = 0.804。组织形态计量学与µCT BV / TV数据之间的相关性为R 2 = 0.8935,组织形态计量学中的平均过表达为8.2%。总之,CMC-Collagen + Colloss E填充剂在中长期看来是可行的成骨性骨填充剂。在本研究中使用的分析方法之间发现相关性。

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