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Butyrate stimulates the early process of the osteogenic differentiation but inhibits the biomineralization in dental follicle cells (DFCs)

机译:丁酸酯刺激成骨分化的早期过程,但抑制了卵泡细胞(DFC)的生物矿化作用

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Dental stem cells, especially dental follicle cells (DFCs) as precursor cells for the periodontium have interesting prospects for regenerative dentistry. During periodontitis, butyrate as a bacterial metabolite and inflammatory agent is often found in millimolar concentrations in periodontal pockets. This study evaluates the effects of butyrate on the proliferation and osteogenic differentiation of DFCs. We assessed cell viability/proliferation (BCA assay) and osteogenic differentiation (ALP activity, alizarin staining and RT PCR) of DFCs in vitro after butyrate supplementation. Butyrate concentrations of 20 mM or higher are toxic for DFCs. At a non-toxic concentration, butyrate promotes the expression of alkaline phosphatase and collagen type-1 but inhibits the formation of calcified nodules and the induction of RUNX2 and osteocalcin under osteogenic differentiation conditions. In conclusion, DFCs are resistant to physiological high concentrations of butyrate. Butyrate facilitates the osteogenic differentiation of DFCs in early stages but inhibits calcification at later stages of the differentiation process.
机译:牙干细胞,尤其是牙周细胞的前体细胞,尤其是毛囊细胞(DFC),对于再生牙科具有令人感兴趣的前景。在牙周炎期间,经常在牙周袋中以毫摩尔浓度发现丁酸盐作为细菌代谢产物和发炎剂。这项研究评估了丁酸对DFCs增殖和成骨分化的影响。我们评估了丁酸补充后体外DFCs的细胞活力/增殖(BCA分析)和成骨分化(ALP活性,茜素染色和RT PCR)。 20 mM或更高的丁酸酯浓度对DFC有毒。在无毒浓度下,丁酸酯促进成骨分化条件下碱性磷酸酶和1型胶原蛋白的表达,但抑制钙化结节的形成以及RUNX2和骨钙素的诱导。总之,DFC对高浓度的丁酸具有抗性。丁酸盐有助于DFC的早期成骨分化,但在分化过程的后期抑制钙化。

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