Literature DB >> 16337660

Optimal compressive force induces bone formation via increasing bone morphogenetic proteins production and decreasing their antagonists production by Saos-2 cells.

Narihiro Mitsui1, Naoto Suzuki, Masao Maeno, Momoko Yanagisawa, Yuki Koyama, Kichibee Otsuka, Noriyoshi Shimizu.   

Abstract

Orthodontic tooth movement induced alveolar bone resorption and formation around the teeth applied mechanical force. Although mechanical force can promote bone formation, the molecular mechanism that underlies this phenomenon is not fully understood. The purposes of this study were to determine how mechanical stress affects the osteogenic response of human osteoblastic cells (Saos-2), and also to examine the optimal compressive force for osteogenesis in vitro. Saos-2 cells were cultured with or without continuously compressive force (0.5-3.0 g/cm2). The expression of bone morphogenetic proteins (BMPs), their antagonists, and transcription factors which involved in osteogenesis were measured using real-time PCR and/or Western blot analysis. Phosphorylation of Smad1 was determined by Western blot. Loading with 1.0 g/cm2 of compressive force significantly increased the expression of BMPs, Runx2 and osterix. In contrast, the expression of BMP antagonists and AJ18 was decreased with 1.0 g/cm2 of compressive force. Loading with 1.0 g/cm2 of compressive force also induced phosphorylation of Smad1. Noggin inhibited the compressive force-induced phosphorylation of Smad1 markedly, and also partially blocked compressive force-induced Runx2 mRNA expression. Moreover, the conditioned medium from 1.0 g/cm2 of compressive force applied cells apparently increased calcium content in mineralized nodules of Saos-2 culture. This study demonstrates that an optimal compressive force stimulates in vitro mineralization via increasing BMPs production and decreasing their antagonists production.

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Year:  2005        PMID: 16337660     DOI: 10.1016/j.lfs.2005.10.024

Source DB:  PubMed          Journal:  Life Sci        ISSN: 0024-3205            Impact factor:   5.037


  14 in total

Review 1.  Mechanisms of tooth eruption and orthodontic tooth movement.

Authors:  G E Wise; G J King
Journal:  J Dent Res       Date:  2008-05       Impact factor: 6.116

2.  Cell survival and gene expression under compressive stress in a three-dimensional in vitro human periodontal ligament-like tissue model.

Authors:  Wen Liao; Masahiro Okada; Kaoru Inami; Yoshiya Hashimoto; Naoyuki Matsumoto
Journal:  Cytotechnology       Date:  2014-08-03       Impact factor: 2.058

3.  Influence of clodronate and compressive force on IL-1ß-stimulated human periodontal ligament fibroblasts.

Authors:  Sarah Grimm; Eva Wolff; Christian Walter; Andreas M Pabst; Ambili Mundethu; Cornelius Jacobs; Heiner Wehrbein; Collin Jacobs
Journal:  Clin Oral Investig       Date:  2019-05-17       Impact factor: 3.573

4.  Altered relative expression of BMPs and BMP inhibitors in cartilaginous areas of human fractures progressing towards nonunion.

Authors:  Francois N K Kwong; Judith A Hoyland; Anthony J Freemont; Christopher H Evans
Journal:  J Orthop Res       Date:  2009-06       Impact factor: 3.494

Review 5.  Osteoarthritis and obesity: experimental models.

Authors:  Odile Gabay; David J Hall; Francis Berenbaum; Yves Henrotin; Christelle Sanchez
Journal:  Joint Bone Spine       Date:  2008-11-20       Impact factor: 4.929

6.  Genes associated with sodium fluoride-induced human osteoblast apoptosis.

Authors:  Ya-Lou Zhang; Qin Luo; Qiang Deng; Tian Li; Yan Li; Zhi-Lu Zhang; Jin-Jie Zhong
Journal:  Int J Clin Exp Med       Date:  2015-08-15

7.  The role of heme oxygenase-1 in mechanical stress- and lipopolysaccharide-induced osteogenic differentiation in human periodontal ligament cells.

Authors:  Jin-Hyoung Cho; Sun-Kyung Lee; Jin-Woo Lee; Eun-Cheol Kim
Journal:  Angle Orthod       Date:  2010-07       Impact factor: 2.079

8.  Biostimulatory Effects of Low-Intensity Pulsed Ultrasound on Rate of Orthodontic Tooth Movement and Associated Pain, Applied at 3-Week Intervals: A Split-Mouth Study.

Authors:  Irfan Qamruddin; Mohammad Khursheed Alam; Verda Mahroof; Meenaz Karim; Mubassar Fida; Mohd Fadhli Khamis; Adam Husein
Journal:  Pain Res Manag       Date:  2021-05-05       Impact factor: 3.037

9.  Dynamic compression of chondrocyte-agarose constructs reveals new candidate mechanosensitive genes.

Authors:  Carole Bougault; Elisabeth Aubert-Foucher; Anne Paumier; Emeline Perrier-Groult; Ludovic Huot; David Hot; Martine Duterque-Coquillaud; Frédéric Mallein-Gerin
Journal:  PLoS One       Date:  2012-05-17       Impact factor: 3.240

10.  BMP2 and mechanical loading cooperatively regulate immediate early signalling events in the BMP pathway.

Authors:  Jessica Kopf; Ansgar Petersen; Georg N Duda; Petra Knaus
Journal:  BMC Biol       Date:  2012-04-30       Impact factor: 7.431

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