首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Evaluation of a platelet lysate bilayered system for periodontal regeneration in a rat intrabony three-wall periodontal defect
【24h】

Evaluation of a platelet lysate bilayered system for periodontal regeneration in a rat intrabony three-wall periodontal defect

机译:大鼠内牙齿牙周缺损中血小板裂解物双牙苷裂解系统进行血小板裂解液双牙周缺损

获取原文
获取原文并翻译 | 示例
           

摘要

With currently available therapies, full regeneration of lost periodontal tissues after periodontitis cannot be achieved. In this study, a combined compartmentalized system was tested, composed of (a) a platelet lysate (PL)-based construct, which was placed along the root aiming to regenerate the root cementum and periodontal ligament, and (b) a calcium phosphate cement composite incorporated with hyaluronic acid microspheres loaded with PL, aiming to promote the regeneration of alveolar bone. This bilayered system was assessed in a 3-wall periodontal defect in Wistar rats. The periodontal healing and the inflammatory response of the materials were scored for a period up to 6weeks after implantation. Furthermore, histomorphometrical measurements were performed to assess the epithelial downgrowth, the formation of alveolar bone, and the formation of new connective tissue attachment. Our data showed that the stabilization of platelet-origin proteins on the root surface increased the overall periodontal healing score and restricted the formation of long epithelial junctions. Nevertheless, the faster degradation of the cement component with incorporated hyaluronic acid microspheres compromised the stability of the system, which hampered the periodontal regeneration. Overall, in this work, we proved the positive therapeutic effect of the immobilization of a PL-based construct over the root surface in a combined compartmentalized system to assist predictable healing of functional periodontium. Therefore, after optimization of the hard tissue analogue, the system should be further elaborated in (pre)clinical validation studies.
机译:通过目前可用的疗法,无法实现牙周炎后丢失的牙周组织的完全再生。在该研究中,测试了一种组合的分区化系统,由(a)组成,基于血小板裂解物(Pl)构建体,其沿着旨在再生根豆液和牙周韧带,并(b)磷酸钙水泥掺入透明质酸微球的复合材料,装有PL,旨在促进肺泡骨的再生。在Wistar大鼠的3壁牙周缺损中评估了这种双层系统。植入后,牙周愈合和材料的炎症反应得分高达6周。此外,进行组织族计量测量以评估上皮降级,形成肺泡骨,以及新的结缔组织附着的形成。我们的数据显示,血小板原产蛋白的血小板蛋白质在根表面上增加了整体牙周愈合得分,并限制了长上皮连接的形成。然而,用掺入的透明质酸微球的水泥组分的更快降解损失了系统的稳定性,阻碍了牙周再生。总的来说,在这项工作中,我们证明了将基于PL的构建体固定在组合的分区化系统中的根表面上的阳性治疗效果,以帮助可预测功能型术语的愈合。因此,在优化硬组织类似物之后,应进一步详细阐述(前)临床验证研究中的系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号