State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Department of Orthodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Cell Cycle. 2023 Jan;22(2):183-199. doi: 10.1080/15384101.2022.2111768. Epub 2022 Aug 18.
Periosteum is expected for bone repairing due to excellent regenerative potential. PDCs are the main source of cells for promoting bone repair. However, PDCs from different sites have been confirmed to be site specific due to their distinct embryonic origin and the methods of bone formation. Hippo-YAP pathway is proved to play a critical role in fate decision of mesenchymal stem cells. The effect of Hippo-YAP on PDCs has not been reported so far. Hence, we aim to explore the differences of PDCs from mandible and femur along with their possible responses to YAP signaling. mPDCs and fPDCs were obtained and tested through flow cytometry for identification. Follow-up results illustrated mPDCs was cubic shape and with better proliferation while fPDCs preferred slender cell shape with worse cell viability compared with mPDCs. mPDCs was superior to fPDCs in ALP activity, related mRNA expression and calcium deposits in late stage. Interestingly, downregulation of YAP promoted the ALP activity, related mRNA expression and calcium deposits of fPDCs while hindered that of mPDCs in vitro. Moreover, implant animal model in mandible and femur were constructed for evaluation in vivo. Histological results were similar to the results in vitro. We speculate this may result from their different embryonic origin and the way of bone formation. Taken together, results available suggested that mPDCs may serve as more optimal seed cells for tissue engineering compared with fPDCs; however, considering their different response to YAP signaling, to ensure sufficient YAP expression in mPDCs and appropriate declining YAP expression in fPDCs may establish better osteogenesis.
骨修复需要有良好再生潜能的骨膜。牙髓细胞(PDCs)是促进骨修复的主要细胞来源。然而,由于其不同的胚胎起源和骨形成方式,不同部位的 PDCs 已被证实具有特定的部位特异性。Hippo-YAP 通路被证明在间充质干细胞的命运决定中起着关键作用。迄今为止,尚未有报道表明 Hippo-YAP 对 PDCs 的影响。因此,我们旨在探讨下颌骨和股骨 PDCs 的差异及其对 YAP 信号的可能反应。通过流式细胞术对 mPDCs 和 fPDCs 进行鉴定和测试。后续结果表明,mPDCs 呈立方形状,增殖能力更好,而 fPDCs 则呈细长细胞形状,细胞活力较 mPDCs 差。与 fPDCs 相比,mPDCs 在晚期的 ALP 活性、相关 mRNA 表达和钙沉积方面更具优势。有趣的是,下调 YAP 促进了 fPDCs 的 ALP 活性、相关 mRNA 表达和钙沉积,而抑制了 mPDCs 的 ALP 活性、相关 mRNA 表达和钙沉积。此外,构建了下颌骨和股骨植入动物模型以进行体内评估。组织学结果与体外结果相似。我们推测这可能是由于它们不同的胚胎起源和骨形成方式所致。综上所述,结果表明,与 fPDCs 相比,mPDCs 可能更适合作为组织工程的种子细胞;然而,考虑到它们对 YAP 信号的不同反应,确保 mPDCs 中有足够的 YAP 表达,fPDCs 中适当减少 YAP 表达,可能会建立更好的成骨效果。