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首页> 外文期刊>Acta biomaterialia >Effects of the incorporation of ε-aminocaproic acid/chitosan particles to fibrin on cementoblast differentiation and cementum regeneration
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Effects of the incorporation of ε-aminocaproic acid/chitosan particles to fibrin on cementoblast differentiation and cementum regeneration

机译:ε-氨基己酸/壳聚糖颗粒掺入纤维蛋白对胶囊细胞分化和豆切菜再生的影响

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摘要

Graphical abstract Display Omitted Abstract Cementum formation on the exposed tooth-root surface is a critical process in periodontal regeneration. Although various therapeutic approaches have been developed, regeneration of integrated and functional periodontal complexes is still wanting. Here, we found that the OCCM30 cementoblasts cultured on fibrin matrix express substantial levels of matrix proteinases, leading to the degradation of fibrin and the apoptosis of OCCM30 cells, which was reversed upon treatment with a proteinase inhibitor, ε-aminocaproic acid (ACA). Based on these findings, ACA-releasing chitosan particles (ACP) were fabricated and ACP-incorporated fibrin (fibrin-ACP) promoted the differentiation of cementoblasts in vitro , as confirmed by bio-mineralization and expressions of molecules associated with mineralization. In a periodontal defect model of beagle dogs, fibrin-ACP resulted in substantial cementum formation on the exposed root dentin in vivo , compared to fibrin-only and enamel matrix derivative (EMD) which is used clinically for periodontal regeneration. Remarkably, the fibrin-ACP developed structural integrations of the cementum-periodontal ligament-bone complex by the Sharpey’s fiber insertion. In addition, fibrin-ACP promoted alveolar bone regeneration through increased bone volume of tooth roof-of-furcation defects and root coverage. Therefore, fibrin-ACP can promote cementogenesis and osteogenesis by controlling biodegradability of fibrin, implicating the feasibility of its therapeutic use to improve periodontal regeneration. Statement of Significance Cementum, the mineralized layer on root dentin surfaces, functions to anchor fibrous connective tissues on tooth-root surfaces with the collagenous Sharpey’s fibers integration, of which are essential for periodontal functioning restoration in the complex. Through the cementum-responsible fiber insertions on tooth-root surfaces, PDLs transmit various mechanical responses to periodontal complexes against masticatory/occlusal stimulations to support teeth. In this study, periodontal tissue regeneration was enhanced by use of modified fibrin biomaterial which significantly promoted cementogenesis within the periodontal complex with structural integration by collagenous Sharpey’s fiber insertions in vivo by controlling fibrin degradation and consequent cementoblast apoptosis. Furthermore, the modified fibrin could improve repair and regeneration of tooth roof-of-furcation defects, which has spatial curvatures and geometrical difficulties and hardly regenerates periodontal tissues. ]]>
机译:图形摘要显示屏省略了暴露牙根表面上的抽象形成是牙周再生中的关键过程。尽管已经开发了各种治疗方法,但整合和功能牙周复合物的再生仍然存在。在这里,我们发现在纤维蛋白基质上培养的OCCM30胶合细胞表达了大量的基质蛋白酶水平,导致纤维蛋白的降解和OCCM30细胞的凋亡,其在用蛋白酶抑制剂,ε-氨基己酸(ACA)处理后逆转。基于这些发现,制备了ACA释放的壳聚糖颗粒(ACP),并掺入ACP掺入的纤维蛋白(纤维蛋白-ACP)在体外促进了胶囊细胞的分化,如生物矿化和与矿化相关的分子的表达式。在比猎犬犬的牙周缺陷模型中,与仅用于临床上使用的纤维蛋白 - 仅和牙釉质基质衍生物(EMD),纤维蛋白-ACP在体内的暴露根牙本质中形成了大量的豆切割形成。值得注意的是,纤维蛋白-ACP通过Sharpey的纤维插入突出的豆类牙周韧带骨骼复合物的结构整合。此外,纤维蛋白-ACP通过增加牙齿屋顶缺陷缺陷和根覆盖的骨体积增加肺泡骨再生。因此,纤维蛋白-ACP可以通过控制纤维蛋白的生物降解性来促进胶结生成和骨肉发生,这意味着其治疗用途的可行性来改善牙周再生。显着性豆切屑,根牙本质表面上的矿化层,用胶原井的纤维集成锚固纤维结缔组织,其对于复合物中的牙周功能恢复至关重要。通过在牙根表面上的豆切除的纤维纤维插入,PDL将各种机械反应传递给牙周复合物,以针对咀嚼/咬合刺激以支撑牙齿。在这项研究中,通过使用改性纤维蛋白生物材料,通过使用胶原素锐利纤维插入通过控制纤维蛋白降解和随后的胶囊细胞凋亡,通过使用改性纤维蛋白生物材料来提高牙周组织再生。此外,改性纤维蛋白可以改善牙齿屋顶缺陷的修复和再生,这具有空间曲率和几何困难,并且几乎难以再生的牙周组织。 ]]>

著录项

  • 来源
    《Acta biomaterialia 》 |2017年第2017期| 共10页
  • 作者单位

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Periodontology School of Dentistry Seoul National University;

    Department of Periodontology School of Dentistry Seoul National University;

    Department of Oral Pathology Institute for Hard Tissue and Bio-tooth Regeneration School of;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Program in Neurobiology Seoul National University School of Dentistry and Dental Research Institute;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

    Department of Molecular Genetics Dental Research Institute and BK21 Program School of Dentistry;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学 ;
  • 关键词

    Fibrin; Periodontal tissue regeneration; Cementoblast; Cementogenesis; Tissue integration;

    机译:纤维蛋白;牙周组织再生;胶囊细胞;胶凝胶质发生;组织集成;

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