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April 23, 2026Journal of Advanced Research0 citationsOpen Access

Bone marrow mesenchymal stem cells have tissue-specific characteristic in promoting the potential of periodontal ligament stem cells for periodontal regeneration

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FLFen LiuZZZhifei ZhouXSXiao Sun

Key Points

  • This research aims to investigate the tissue-specific characteristics of bone marrow mesenchymal stem cells in enhancing the differentiation of periodontal ligament stem cells for periodontal regeneration.
  • Coculturing periodontal ligament stem cells with bone marrow mesenchymal stem cells from different sources.
  • Assessing differentiation through osteogenic and cementogenic markers.
  • Implanting cell composites in animal models to evaluate tissue regeneration.
  • Jawbone-derived mesenchymal stem cells significantly improved the differentiation of periodontal ligament stem cells.
  • Regeneration of periodontal tissue defects was more effective with jawbone-derived cells compared to iliac bone-derived cells.
  • Inhibition of extracellular vesicle secretion reduced the beneficial effects of bone marrow mesenchymal stem cells on periodontal ligament stem cell differentiation.

Abstract

• The regeneration of functional periodontal composite structures relies on stem cell crosstalk. • BMMSCs enhance the potential of PDLSCs to repair periodontal defects through paracrine EVs • BMMSCs from different sources have differential effects in promoting differentiation of PDLSCs. • Jawbone BMMSCs can better promote differentiation of PDLSCs in vitro. • Jawbone BMMSCs can better promote regeneration of periodontal tissue defect by PDLSCs in vivo. Periodontal ligament stem cells (PDLSCs) are commonly used in regenerating damaged periodontal tissues. The regeneration of complex periodontal tissues relies on stem cell crosstalk. Typically, bone marrow mesenchymal stem cells (BMMSCs) are used to promote the differentiation of PDLSCs. However, it is currently unknown whether BMMSCs have tissue-specific characteristic in promoting the differentiation of PDLSCs. To explore the differential effects of BMMSCs from different sources on the potential of PDLSCs for the regeneration of periodontal tissue defects. PDLSCs were cocultured with BMMSCs from different sources or their extracellular vesicles (EVs) in vitro. Osteogenic/cementogenic-related markers were observed to identify differences in the differentiation of PDLSCs subjected to different treatments. PDLSCs subjected to different treatments were combined with ceramic hydroxyapatite, which were then implanted subcutaneously into nude mice or repair the periodontal tissue defects in beagle dogs. The ectopic formation of hard tissues and the efficacy of the in situ repair of composite periodontal structures by the cell sheets were also observed. The indirect coculture of PDLSCs with BMMSCs derived from the jawbone (jBMMSCs) resulted in a significant increase in differentiation. The effects of indirect coculture of PDLSCs with jBMMSCs on the subcutaneous differentiation into hard tissues in nude mice and the regeneration of periodontal defects in beagle dogs in situ were also superior to that of BMMSCs derived from iliac bone. The inhibition of EV secretion by BMMSCs weakened the ability of BMMSCs to promote PDLSC differentiation. EVs derived from jBMMSCs more effectively promoted PDLSC differentiation in vitro, and the in situ functional repair of periodontal defects. jBMMSCs can better promote PDLSC differentiation and the repair of periodontal defects through paracrine EVs. The results of this study provide an experimental reference for optimizing the use of PDLSCs for periodontal regeneration on the basis of stem cell crosstalk.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69e9b71b85696592c86eb326https://doi.org/10.1016/j.jare.2026.04.058
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