ArticleStem cell research & therapy2025
Jaw-specific differential kinase activity profiles in human periodontal ligament stem cells under mechanical compression.
Article in Stem cell research & therapy, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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Who cites it
2 citing papers in PubMed.
- Mechanical control in dental and jaw morphogenesis and remodeling.International journal of oral science · 2026Review
- Microenvironment-mediated stem cell fate in periodontal tissue remodeling and repair.Bioactive materials · 2026Review
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Authors and funding
8 authors.
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Abstract
backgroundIncreasing clinical and experimental evidence suggests that the upper and lower jaw exhibit pronounced functional and structural disparities that cannot be explained solely by classical anatomical differences. A central, yet unresolved question is whether periodontal ligament stem cells (PDLSCs) from these distinct regions display site-specific molecular signaling patterns in response to mechanical stress. We propose that PDLSCs derived from maxillary and mandibular regions activate distinct kinase signaling networks upon mechanical stimulation, thereby establishing a jaw-specific mechanobiological fingerprint.
methodsPDLSCs were isolated from seven healthy donor teeth and exposed to a static compressive force of 2 g/cm
resultsMechanical stimulation induced distinct kinase activation signatures depending on jaw origin. Maxillary PDLSCs displayed a predominance of STK activation, while mandibular cells showed a relative reduction in PTK signaling. Only two PTKs and four STKs were consistently regulated across both regions, supporting the presence of a region-specific mechanotransduction profile.
conclusionThese findings support our hypothesis that localized differences in kinase signaling may constitute a molecular basis for the clinically observed jaw-specific phenomena, such as heterogeneous orthodontic tooth movement and alveolar bone remodeling. Jaw-dependent mechanotransduction pathways can therefore be considered key determinants of periodontal biology and may provide a basis for follow-up studies aimed at enabling the development of personalized orthodontic and regenerative strategies.
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