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CD51/PDGFR-α 牙髓基质细胞的时序性和复制性衰老。

Chronological and Replicative Aging of CD51/PDGFR-α Pulp Stromal Cells.

机构信息

State Key Laboratory of Oral Diseases and National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

Department of Endodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

出版信息

J Dent Res. 2023 Jul;102(8):929-937. doi: 10.1177/00220345231158038. Epub 2023 Mar 15.

Abstract

As a crucial source of mesenchymal stromal cells, CD51/PDGFR-α human dental pulp stromal cells (hDPSCs) are promising seeding cells for regenerative medicine. Cellular senescence hinders the translational application of hDPSCs. However, it remains unclear whether chronological and replicative senescence results in distinct outcomes for hDPSCs. To investigate the influence of senescence on DPSCs, we used transgenic lineage tracking, immunofluorescence, flow cytometry, and various molecular experiments to depict the dynamic pattern of hDPSCs in mice and humans during chronological and replicative senescence. The data demonstrated that CD51/PDGFR-α cells were decreased in chronological senescence. Impaired self-renewal and higher ossificatory differentiation were observed in chronologically senescent hDPSCs. Regarding replicative senescence, a decreased CD51 but upregulated PDGFR-α population was observed in culture. Furthermore, weakened self-renewal and osteogenic differentiation were observed in replicatively senescent hDPSCs. In summary, CD51/PDGFR-α hDPSCs decrease in chronologically aged pulp, with self-renewal that is impaired without impaired osteogenic differentiation. However, replicative senescence has a different impact: self-renewal and ossific differentiation are impaired and CD51 expression is reduced, but PDGFR-α expression remains. These findings demonstrate the different outcomes of chronological and replicative senescence in CD51/PDGFR-α hDPSCs. Furthermore, we revealed that impaired self-renewal is the core dysfunction for both types of cellular aging and that osteogenic differentiation capability differs between them. This study provides insights into the influence of chronological and replicative senescence on the characteristics and capabilities of hDPSCs. These advances provide fundamental knowledge to alleviate cellular aging of CD51/PDGFR-α hDPSCs and promote their translational applications.

摘要

作为间充质基质细胞的重要来源,CD51/PDGFR-α 人牙髓基质细胞(hDPSCs)是再生医学有前途的种子细胞。细胞衰老阻碍了 hDPSCs 的转化应用。然而,CD51/PDGFR-α hDPSCs 的衰老是否导致不同的结果仍不清楚。为了研究衰老对 DPSCs 的影响,我们使用转基因谱系追踪、免疫荧光、流式细胞术和各种分子实验来描绘 hDPSCs 在小鼠和人类中在衰老过程中的动态模式。数据表明,CD51/PDGFR-α 细胞在衰老过程中减少。在衰老的 hDPSCs 中观察到自我更新受损和更高的成骨分化。关于复制性衰老,在培养过程中观察到 CD51 减少但 PDGFR-α 群体上调。此外,在衰老的 hDPSCs 中观察到自我更新和成骨分化减弱。总之,CD51/PDGFR-α hDPSCs 在衰老的牙髓中减少,自我更新受损而成骨分化不受影响。然而,复制性衰老有不同的影响:自我更新和骨分化受损,CD51 表达减少,但 PDGFR-α 表达保持。这些发现表明 CD51/PDGFR-α hDPSCs 在衰老过程中的不同结果。此外,我们揭示了自我更新受损是两种细胞衰老的核心功能障碍,并且它们之间的成骨分化能力不同。本研究深入了解了衰老对 hDPSCs 特征和功能的影响。这些进展为减轻 CD51/PDGFR-α hDPSCs 的细胞衰老和促进其转化应用提供了基础知识。

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