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Mineral trioxide aggregate (MTA) was introduced as a material for dental endodontic regenerative therapy. Here, we show the dynamics of living dental pulp cells in direct contact with an MTA disk. A red fluorescence protein (DsRed) was introduced into immortalized porcine dental pulp cells (PPU7) and cloned. DsRed-PPU7 cells were cultured on the MTA disk and cell proliferation, chemotaxis, the effects of growth factors and the gene expression of cells were investigated at the biological, histomorphological and genetic cell levels. Mineralized precipitates formed in the DsRed-PPU7 cells were characterized with crystal structural analysis. DsRed-PPU7 cells proliferated in the central part of the MTA disk until Day 6 and displayed a tendency to move to the outer circumference. Both transforming growth factor beta and bone morphogenetic protein promoted the proliferation and movement of DsRed-PPU7 cells and also enhanced the expression levels of odontoblastic gene differentiation markers. Mineralized precipitates formed in DsRed-PPU7 were composed of calcium and phosphate but its crystals were different in each position. Our investigation showed that DsRed-PPU7 cells in direct contact with the MTA disk could differentiate into odontoblasts by controlling cell-cell and cell-substrate interactions depending on cell adhesion and the surrounding environment of the MTA.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7589724 | PMC |
http://dx.doi.org/10.3390/cells9102336 | DOI Listing |
Dent Mater J
May 2025
Department of Biochemistry and Molecular Biology, School of Dental Medicine, Tsurumi University.
Bioceramic materials like bioactive glass (BG) are widely used in endodontics due to their bioactivity and osteoinductive properties. This study characterized fluorescence-labeled porcine immortalized dental pulp cells (DsRed-PPU7 cells) in contact with BG-based cement (BG-C) to advance the development of novel BG-C formulations. BG-C discs were prepared on titanium discs, and DsRed-PPU7 cells were cultured on them.
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October 2020
Department of Endodontology, School of Dental Medicine, Tsurumi University, 2-1-3 Tsurumi, Tsurumi-ku, Yokohama 230-8501, Japan.
Mineral trioxide aggregate (MTA) was introduced as a material for dental endodontic regenerative therapy. Here, we show the dynamics of living dental pulp cells in direct contact with an MTA disk. A red fluorescence protein (DsRed) was introduced into immortalized porcine dental pulp cells (PPU7) and cloned.
View Article and Find Full Text PDF