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Validation of human periodontal ligament-derived cells as a reliable source for cytotherapeutic use.

机译:验证人牙周膜来源的细胞作为细胞治疗用途的可靠来源。

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AIM: Periodontal ligament (PDL) is a reliable cell source for periodontal regeneration. In this study, an optimal protocol for the extraction, expansion, and characterization of human PDL (hPDL) cells was examined for clinical trials. MATERIALS AND METHODS: hPDL tissues were obtained from 41 surgically extracted teeth and digested with enzymes. Human adipose-derived stem cells (hADSCs), bone marrow-derived mesenchymal stem cells (hBMMSCs), and gingival fibroblasts (hGFs) were used for comparison. For each sample, the proliferative capacity, colony-forming ability, alkaline phosphatase activity, differentiation ability, the cell surface antigens, gene expression, and regenerative potential were examined. RESULTS: hPDL cells were more successfully extracted with collagenase/dispase [29/30 (96.7%)] than with trypsin/EDTA [8/11 (72.7%)], and exhibited osteogenic potential both in vitro and in vivo. The proliferation of hPDL cells was rapid at a low cell density. hPDL cells frequently differentiated into cementoblastic/osteoblastic lineage ( approximately 60%). In contrast, their adipogenic and chondrogenic potentials were lower than those of hADSCs and hBMMSCs. Some genes (NCAM1, S100A4, and periostin) were preferentially expressed in hPDL cells compared with those of hBMMSCs and hGFs. Immunohistochemical studies revealed the expressions of S100A4 and periostin in hPDL tissue. CONCLUSION: A protocol for the successful cultivation and validation of hPDL cells is proposed for clinical settings.
机译:目的:牙周膜(PDL)是牙周再生的可靠细胞来源。在这项研究中,为临床试验研究了提取,扩增和表征人PDL(hPDL)细胞的最佳方案。材料与方法:hPDL组织取自41例经手术拔除的牙齿,并用酶消化。比较人脂肪来源的干细胞(hADSCs),骨髓来源的间充质干细胞(hBMMSCs)和牙龈成纤维细胞(hGFs)。对于每个样品,检查其增殖能力,集落形成能力,碱性磷酸酶活性,分化能力,细胞表面抗原,基因表达和再生潜力。结果:胶原酶/分散酶[29/30(96.7%)]比胰蛋白酶/ EDTA [8/11(72.7%)]更成功地提取了hPDL细胞,并且在体内和体外均显示出成骨潜能。 hPDL细胞在低细胞密度下增殖迅速。 hPDL细胞经常分化为胶质母细胞/成骨细胞谱系(约60%)。相反,它们的成脂和成软骨潜能低于hADSC和hBMMSC。与hBMMSC和hGF相比,某些基因(NCAM1,S100A4和骨膜素)在hPDL细胞中优先表达。免疫组织化学研究显示hPDL组织中S100A4和骨膜素的表达。结论:提出了一种成功培养和验证hPDL细胞的方案,用于临床。

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