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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
2001 1
2002 5
2003 7
2004 7
2005 8
2006 10
2007 10
2008 7
2009 13
2010 12
2011 10
2012 20
2013 17
2014 14
2015 9
2016 5
2017 10
2018 3
2019 1
2020 0
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136 results
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Page 1
Cementum proteins: role in cementogenesis, biomineralization, periodontium formation and regeneration.
Arzate H, et al. Periodontol 2000 2015 - Review. PMID 25494602
As cementum is a matrix rich in growth factors that could influence the activities of various periodontal cell types, this review will examine the characteristics of cementum, its composition and the role of cementum components, especially the cementum protein-1, during the process of cementogenesis, and their potential usefulness for regeneration of the periodontal structures in a predictable therapeutic manner....
As cementum is a matrix rich in growth factors that could influence the activities of various periodontal cell types, this review will exami …
Cell-to-cell communication--periodontal regeneration
Bosshardt DD, et al. Clin Oral Implants Res 2015 - Review. PMID 25639287
Evidence is accumulating that the Hertwig's epithelial root sheath (HERS) has a pivotal role in root formation and cementogenesis. ...
Evidence is accumulating that the Hertwig's epithelial root sheath (HERS) has a pivotal role in root formation and cementogenesis. .. …
Effect of FGF-2, TGF-β-1, and BMPs on Teno/Ligamentogenesis and Osteo/Cementogenesis of Human Periodontal Ligament Stem Cells.
Hyun SY, et al. Mol Cells 2017. PMID 28835018 Free PMC article.
In contrast, expression of the osteo/cementogenic markers decreased, suggesting that FGF-2 might induce and maintain the ligamentogenic potential of hPDLSCs. ...The stimulating effect of BMPs on osteo/cementogenesis was apparently suppressed by FGF-2. These results indicate that FGF-2 predominantly differentiates the hPDLSCs into teno/ligamentogenesis, and has an antagonistic effect on the hard tissue differentiation induced by BMP-2 and BMP-4....
In contrast, expression of the osteo/cementogenic markers decreased, suggesting that FGF-2 might induce and maintain the ligamentogen …
Osteopontin regulates dentin and alveolar bone development and mineralization
Foster BL, et al. Bone 2018. PMID 29313816 Free PMC article.
To gain insights into factors regulating cementum-PDL and bone-PDL borders and protecting against ectopic calcification within the PDL, we employed a proteomic approach to analyze PDL tissue from progressive ankylosis knock-out (Ank(-/-)) mice, featuring reduced PP(i), rapid cementogenesis, and excessive acellular cementum. ...
To gain insights into factors regulating cementum-PDL and bone-PDL borders and protecting against ectopic calcification within the PDL, we e …
A Reciprocal Interaction between β-Catenin and Osterix in Cementogenesis.
Choi H, et al. Sci Rep 2017. PMID 28811640 Free PMC article.
These results suggest that the Tcf/Lef binding activity of Wnt/β-catenin signaling is Osx-dependent during cementogenesis. Moreover, Osx differentially regulates the expression of various Tcf family members, suggesting that Osx regulates cementogenesis by utilizing various Tcf/Lef-dependent mechanisms. This is the first report to show that downstream Osx signaling through Tcf/Lefs is critical for cementogenesis....
These results suggest that the Tcf/Lef binding activity of Wnt/β-catenin signaling is Osx-dependent during cementogenesis. Moreover, …
Cementogenesis is inhibited under a mechanical static compressive force via Piezo1.
Zhang YY, et al. Angle Orthod 2017. PMID 28418701
OBJECTIVE: To investigate whether Piezo1, a mechanotransduction gene mediates the cementogenic activity of cementoblasts under a static mechanical compressive force. ...CONCLUSIONS: Cementogenic activity was inhibited in OCCM-30 cells under static mechanical force, a process that was partially mediated by the decrease of Piezo1. ...
OBJECTIVE: To investigate whether Piezo1, a mechanotransduction gene mediates the cementogenic activity of cementoblasts under a stat …
Intermittent parathyroid hormone (PTH) promotes cementogenesis and alleviates the catabolic effects of mechanical strain in cementoblasts.
Li Y, et al. BMC Cell Biol 2017. PMID 28427342 Free PMC article.
RESULTS: Higher levels of cementogenesis- and differentiation-related biomarkers (bone sialoprotein (BSP), osteocalcin (OCN), Collagen type I (COL1) and Osterix (Osx)) were shown in 1-3 cycles of intermittent PTH treated groups than the control group. ...Furthermore, intermittent PTH significantly increased the expression of cementogenesis- and differentiation-related biomarkers in mechanical strain treated OCCM-30 cells. ...
RESULTS: Higher levels of cementogenesis- and differentiation-related biomarkers (bone sialoprotein (BSP), osteocalcin (OCN), Collage …
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