Literature DB >> 17216200

Sequential expression of endothelial nitric oxide synthase, inducible nitric oxide synthase, and nitrotyrosine in odontoblasts and pulp cells during dentin repair after tooth preparation in rat molars.

Yu Feng Mei1, Takayoshi Yamaza, Ikiru Atsuta, Atsushi Danjo, Yoshio Yamashita, Mizuho A Kido, Masaaki Goto, Akifumi Akamine, Teruo Tanaka.   

Abstract

Nitric oxide (NO) stimulates osteoblast differentiation, but whether NO contributes to odontoblast differentiation during dentin repair is unknown. By using reverse transcription/polymerase chain reaction and immunostaining, we investigated the gene expression and/or immunolocalization of endothelial NO synthase (eNOS), inducible NOS (iNOS), and nitrotyrosine (a biomarker for NO-derived peroxinitrite), and alkaline phosphatase (ALP) and osteocalcin (early and terminal differentiation markers of odontoblasts, respectively) in dental pulp tissue after rat tooth preparation. At the early stage (1-3 days) post-preparation, markedly increased expression of iNOS and nitrotyrosine was found in odontoblasts and pulp cells beneath the cavity, whereas eNOS expression was significantly decreased. ALP mRNA expression was significantly increased after 1 day but decreased after 3 days, whereas ALP activity was weak in the dentin-pulp interface under the cavity after 1 day but strong after 3 days. Osteocalcin mRNA expression was significantly increased at this stage. At 7 days post-preparation, tertiary dentin was formed under the cavity. All the molecules studied were expressed at control levels in odontoblasts/pulp cells beneath the cavity. These findings show that abundant NO is released from odontoblasts and pulp cells at an early stage after tooth preparation and indicate that, after tooth preparation, the up-regulation of iNOS and nitrotyrosine in odontoblasts is synchronized with increased cellular expression of ALP and osteocalcin. Therefore, the NO synthesized by iNOS after tooth preparation probably participates in regulating odontoblast differentiation during tertiary dentinogenesis.

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Year:  2007        PMID: 17216200     DOI: 10.1007/s00441-005-0003-5

Source DB:  PubMed          Journal:  Cell Tissue Res        ISSN: 0302-766X            Impact factor:   5.249


  6 in total

1.  Human odontoblast-like cells produce nitric oxide with antibacterial activity upon TLR2 activation.

Authors:  Jean-Christophe Farges; Aurélie Bellanger; Maxime Ducret; Elisabeth Aubert-Foucher; Béatrice Richard; Brigitte Alliot-Licht; Françoise Bleicher; Florence Carrouel
Journal:  Front Physiol       Date:  2015-06-23       Impact factor: 4.566

2.  Nitric oxide-induced apoptosis of human dental pulp cells is mediated by the mitochondria-dependent pathway.

Authors:  Min Young Park; Yeon Jin Jeong; Gi Chang Kang; Mi-Hwa Kim; Sun Hun Kim; Hyun-Ju Chung; Ji Yeon Jung; Won Jae Kim
Journal:  Korean J Physiol Pharmacol       Date:  2014-02-13       Impact factor: 2.016

Review 3.  Production and physiological role of NO in the oral cavity.

Authors:  Kimiharu Ambe; Hiroki Watanabe; Shinya Takahashi; Toshihiro Nakagawa; Junzo Sasaki
Journal:  Jpn Dent Sci Rev       Date:  2015-09-11

4.  Exogenous nitric oxide stimulates the odontogenic differentiation of rat dental pulp stem cells.

Authors:  Soichiro Sonoda; Yu-Feng Mei; Ikiru Atsuta; Atsushi Danjo; Haruyoshi Yamaza; Shion Hama; Kento Nishida; Ronghao Tang; Yukari Kyumoto-Nakamura; Norihisa Uehara; Toshio Kukita; Fusanori Nishimura; Takayoshi Yamaza
Journal:  Sci Rep       Date:  2018-02-21       Impact factor: 4.379

5.  Odontoblast control of dental pulp inflammation triggered by cariogenic bacteria.

Authors:  Jean-Christophe Farges; Brigitte Alliot-Licht; Caroline Baudouin; Philippe Msika; Françoise Bleicher; Florence Carrouel
Journal:  Front Physiol       Date:  2013-11-11       Impact factor: 4.566

6.  Effects of the nitric oxide releasing biomimetic nanomatrix gel on pulp-dentin regeneration: Pilot study.

Authors:  Chan-Yang Moon; Ok Hyung Nam; Misun Kim; Hyo-Seol Lee; Sagar N Kaushik; David A Cruz Walma; Ho-Wook Jun; Kyounga Cheon; Sung Chul Choi
Journal:  PLoS One       Date:  2018-10-11       Impact factor: 3.240

  6 in total

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