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首页> 外文期刊>Journal of materials science >Treatment of periodontal defects in dogs using an injectable composite hydrogel/biphasic calcium phosphate
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Treatment of periodontal defects in dogs using an injectable composite hydrogel/biphasic calcium phosphate

机译:使用可注射的复合水凝胶/双相磷酸钙治疗狗的牙周缺损

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摘要

An injectable composite silanized hydroxypropyl methyl cellulose/biphasic calcium phosphate (Si-HPMC/BCP) has been investigated in humans with promising results. The aim of this study was to evaluate his efficacy for treating periodontal defects (canine fenestration and premolar furcation) in dog models. At 3 months, we observed that bone formation around BCP particles in furcation model is more discernible but not statistically significant in defects filled with Si-HPMC/BCP compared to healing in control. We suggest that BCP particles sustain the bone healing process by osteoconduction, while the Si-HPMC hydrogel enhances intergranular cohesion and acts as an exclusion barrier. Furthermore, bone ingrowth is not so distinctive in superficial defects where the biomaterial appears unstable. These results with Si-HPMC/BCP are encouraging. In addition, this biomaterial is easy to use and simplifies the process of filling periodontal lesions. However, more researches are needed to improve the viscosity and hardness to adjust the material to the specificities of periodontal defects.
机译:已经在人体中研究了可注射的复合硅烷化羟丙基甲基纤维素/双相磷酸钙(Si-HPMC / BCP),并获得了可喜的结果。这项研究的目的是评估他在狗模型中治疗牙周缺损(犬开窗和前磨牙分叉)的功效。在3个月时,我们观察到分叉模型中BCP颗粒周围的骨形成比对照组的愈合更明显,但在填充Si-HPMC / BCP的缺损中无统计学意义。我们建议BCP颗粒通过骨传导来维持骨愈合过程,而Si-HPMC水凝胶可增强颗粒间的内聚力并充当排阻屏障。此外,在生物材料显得不稳定的浅表缺损中,骨向内生长并不那么明显。 Si-HPMC / BCP的这些结果令人鼓舞。此外,这种生物材料易于使用,并简化了牙周病变的填充过程。但是,需要进行更多的研究来提高粘度和硬度,以使材料适应牙周缺损的特异性。

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  • 来源
    《Journal of materials science 》 |2011年第7期| p.1707-1717| 共11页
  • 作者单位

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France;

    Department of Periodontology, Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, 44042 Nantes,France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France,Department of Periodontology, Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, 44042 Nantes,France;

    Experimental Surgery, National Veterinary School of Nantes,Route de Gachet 44307, Nantes, France;

    Experimental Surgery, National Veterinary School of Nantes,Route de Gachet 44307, Nantes, France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France;

    INSERM, U957, LPRO, Faculty of Medicine,University of Nantes, 1 Place Alexis Ricordeau,44042 Nantes, France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France;

    INSERM, U791, Laboratory for Osteo-Articular and Dental Tissue Engineering (LIOAD), Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, BP 84215,44042 Nantes, France,Department of Periodontology, Faculty of Dental Surgery,University of Nantes, 1 Place Alexis Ricordeau, 44042 Nantes,France,ERT 2004, University of Nantes, 1 Place Alexis Ricordeau,44042 Nantes, France;

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