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利用同种异体牙周韧带干细胞在绵羊模型中再生牙周组织。

Regeneration of periodontal tissues using allogeneic periodontal ligament stem cells in an ovine model.

机构信息

School of Dentistry, Colgate Australian Clinical Dental Research Centre, University of Adelaide, Adelaide, SA, Australia.

出版信息

Regen Med. 2013 Nov;8(6):711-23. doi: 10.2217/rme.13.66.

Abstract

AIM

To investigate the capacity of allogeneic periodontal ligament stem cells (PDLSCs) to regenerate periodontal tissues using an ovine periodontal defect model.

MATERIALS & METHODS: Surgically created zero-wall dehiscence periodontal defects created in Merino sheep were filled with 1 × 10(7) allogeneic PDLSCs attached to Gelfoam(®), Gelfoam alone or left untreated. After 4 weeks, histological analysis was performed to assess periodontal regeneration.

RESULTS

Allogeneic PDLSCs were well tolerated by recipient animals. The mean area of new alveolar bone was significantly greater in the PDLSC + Gelfoam treatment group compared with the defect-alone group. The PDLSC + Gelfoam and Gelfoam-only treatment groups displayed significantly greater length of new cementum and percentage of cementum regrowth compared with the defect-alone group. New Sharpey's fibers were generally more organized and significantly thicker within the PDLSC + Gelfoam treatment group. The PDLSC + Gelfoam treatment group also showed a trend of increased Sharpey's fiber attachment length compared with the Gelfoam-only and defect-alone groups.

CONCLUSION

These studies support the potential use of allogeneic PDLSC preparations as viable therapies for periodontal regeneration in the clinical setting.

摘要

目的

利用绵羊牙周缺损模型,研究同种异体牙周膜干细胞(PDLSCs)再生牙周组织的能力。

材料与方法

在美利奴羊中,通过手术创建无壁牙周袋缺损,并用 1×10(7)个附着在 Gelfoam(®)上的同种异体 PDLSCs、单纯 Gelfoam 或不做任何处理进行填充。4 周后,进行组织学分析以评估牙周组织再生情况。

结果

同种异体 PDLSCs 被受者动物很好地耐受。与单纯缺损组相比,PDLSC+Gelfoam 治疗组的新牙槽骨面积显著更大。PDLSC+Gelfoam 和 Gelfoam 单独治疗组的新生牙骨质长度和牙骨质再生百分比与单纯缺损组相比显著更大。新的Sharpey 纤维在 PDLSC+Gelfoam 治疗组中通常更有组织,且更厚。与 Gelfoam 单独治疗组和单纯缺损组相比,PDLSC+Gelfoam 治疗组的 Sharpey 纤维附着长度也呈现增加的趋势。

结论

这些研究支持将同种异体 PDLSC 制剂作为临床牙周再生的可行治疗方法。

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