Biological Mechanisms of Tooth Movement. Группа авторов

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T., Shibata, M., Yamada, Y. et al. (1993) Role of substance P. in neurogenic inflammation in the rat incisor pulp and the lower lip. Archives of Oral Biology 38, 151–158.

      129 Ohori, F., Kitaura, H., Marahleh, A. et al. (2019) Effect of TNF‐α‐induced sclerostin on osteocytes during orthodontic tooth movement. Journal of Immunology Research 24, 2019:9716758. doi: 10.1155/2019/9716758.

      130 Ong, C. K., Walsh, L. J., Harbrow, D. et al. (2000) Orthodontic tooth movement in the prednisolone‐treated rat. The Angle Orthodontist 70, 118–125.

      131 Owman‐Moll, P. and Kurol, J. (2000) Root resorption after orthodontic treatment in high‐ and low‐risk patients: analysis of allergy as a possible predisposing factor. European Journal of Orthodontics 22, 657–663.

      132 Parris, W. G., Tanzer, F. S., Fridland, G. H. et al. (1989) Effects of orthodontic force on methionine enkephalin and substance P concentrations in human pulpal tissue. American Journal of Orthodontics and Dentofacial Orthopedics 95, 479–489.

      133 Perinetti, G., Varvara, G., Festa, F. and Esposito, P. (2004) Aspartate aminotransferase activity in pulp of orthodontically treated teeth. American Journal of Orthodontics and Dentofacial Orthopedics, 125, 88–92.

      134 Pierce, A.M., Lindskog, S. and Hammarstrom, L. (1991) Osteoclasts: structure and function. Electron Microscopy Reviews 4, 1–45.

      135 Prockop, D. J. and Oh, J. Y. (2012) Mesenchymal stem/stromal cells (MSCs): role as guardians of inflammation. Molecular Therapy 20, 14–20.

      136 Queiroz‐Junior, C. M., Madeira, M. F., Coelho, F. M. et al. (2011) Experimental arthritis triggers periodontal disease in mice: involvement of TNF‐alpha and the oral microbiota. Journal of Immunology 187, 3821–3830.

      137 Rana, M. W., Pothisiri, V., Killiany, D. M. and Xu, X. M. (2001) Detection of apoptosis during orthodontic tooth movement in rats. American Journal of Orthodontics and Dentofacial Orthopedics 119, 516–521.

      138 Ransjo, M., Marklund, M., Persson, M. and Lerner, U. H. (1998) Synergistic interactions of bradykinin, thrombin, interleukin 1 and tumor necrosis factor on prostanoid biosynthesis in human periodontal‐ligament cells. Archives of Oral Biology 43, 253–260.

      139 Redlich, M., Roos, H., Reichenberg, E. et al. (2004) The effect of centrifugal force on mRNA levels of collagenase, collagen type‐I, tissue inhibitors of metalloproteinases and beta‐actin in cultured human periodontal ligament fibroblasts. Journal of Periodontal Research 39, 27–32.

      140 Rex, T., Kharbanda, O. P., Petocz, P. and Darendeliler, M.A. (2005). Physical properties of root cementum: Part 4. Quantitative analysis of the mineral composition of human premolar cementum. American Journal of Orthodontics and Dentofacial Orthopedics 127, 177–185.

      141 Rodan, G. A., Bouret, L. A., Harvey, A. and Mensi, T. (1975) Cyclic AMP and cyclic GMP: mediators of the mechanical effects of bone remodeling. Science 189, 467–471.

      142 Rombouts, C., Giraud, T., Jeanneau, C. and About, I. (2017) Pulp vascularization during tooth development, regeneration, and therapy. Journal of Dental Research 96, 137–144.

      143 Römer, P., Wolf, M., Fanghänel, J. et al. (2014) Cellular response to orthodontically‐induced short‐term hypoxia in dental pulp cells. Cell and Tissue Research 355, 173–180.

      144 Rygh, P. (1989) The periodontal ligament under stress, in The Biology of Tooth Movement (eds. L. A. Norton and C. J. Burstone). CRC Press, Boca Raton, FL, pp. 9–28.

      145 Sabuncuoglu, F.A., Ersahan, S. (2015) Comparative evaluation of pulpal blood flow during incisor intrusion. Australian Orthodontic Journal 31, 171–177.

      146 Saito, M., Saito, S., Ngan, P. W. et al. (1991) Interleukin 1 beta and prostaglandin E are involved in the response of periodontal cells to mechanical stress in vivo and in vitro. American Journal of Orthodontics and Dentofacial Orthopedics 99, 226–240.

      147 Salla, J. T., Taddei, S. R., Queiroz‐Junior, C. M. et al. (2012) The effect of IL‐1 receptor antagonist on orthodontic tooth movement in mice. Archives of Oral Biology 57, 519–524.

      148 Sandhu, S. S. and Sandhu, J. (2015) Effect of physical activity level on orthodontic pain perception and analgesic consumption in adolescents. American Journal of Orthodontics and Dentofacial Orthopedics 148, 617–627.

      149 Sandy, J. R., Farndale, R. W. and Meikle, M. C. (1993) Recent advances in understanding mechanically induced bone remodeling and their relevance to orthodontic theory and practice. American Journal of Orthodontics and Dentofacial Orthopedics 103, 212–222.

      150 Scheurer, P. A., Firestone, A. R. and Burgin, W. B. (1996) Perception of pain as a result of orthodontic treatment with fixed appliances. European Journal of Orthodontics 18, 349–357.

      151 Seifi, M., Eslami, B. and Saffar, A. S. (2003) The effect of prostaglandin E2 and calcium gluconate on orthodontic tooth movement and root resorption in rats. European Journal of Orthodontics 25, 199–204.

      152 Selving, K. A. and Selving, S. K. (1962) Mineral content of human and seal cementum. Journal of Dental Research 41, 624–632.

      153 Shenoy, N., Shetty, S., Ahmed, J. and Shenoy, K. A. (2013) The pain management in orthodontics. Journal of Clinical and Diagnostic Research 7, 1258–1260.

      154 Shimizu, M., Yamaguchi, M., Fujita, S. et al. (2013) Interleukin‐17/T‐helper 17 cells in an atopic dermatitis mouse model aggravate orthodontic root resorption in dental pulp. European Journal of Oral Sciences 121, 101–110.

      155 Shimizu, N., Ozawa, Y., Yamaguchi, M. et al. (1998) Induction of COX‐2 expression by mechanical tension force in human periodontal ligament cells. Journal of Periodontology 69, 670–677.

      156 Shimizu, N., Yamaguchi, M., Goseki, T. et al. (1994) Cyclic‐tension force stimulates interleukin‐1 beta production by human periodontal ligament cells. Journal of Periodontal Research 29, 328–333.

      157 Shimizu, N., Yamaguchi, M., Goseki, T. et al. (1995) Inhibition of prostaglandin E2 and interleukin 1‐beta production by low‐power laser irradiation in stretched human periodontal ligament cells. Journal of Dental Research 74, 1382–1388.

      158 Shoji‐Matsunaga, A., Ono, T., Hayashi, M. et al. (2017) Osteocyte regulation of orthodontic force‐mediated tooth movement via RANKL expression. Scientific Reports 7(1):8753. doi: 10.1038/s41598‐017‐09326‐7.

      159 Silva, T. A., Garlet, G. P., Fukada, S. Y. et al. (2007) Chemokines in oral inflammatory diseases: apical periodontitis and periodontal disease. Journal of Dental Research 86, 306–319.

      160 Sporn, M. B. and Roberts, A. B. (1993) A major advance in the use of growth factors to enhance wound healing. Journal of Clinical Investigation 92, 2565–2566.

      161 Stephenson, T. J. (1992) Inflammation, in General and Systematic Pathology (ed. J. C. E. Underwood). Churchill Livingstone, London, pp. 177–200.

      162 Storey, E. (1973) The nature of tooth movement. American Journal of Orthodontics 63, 292–314.

      163 Sugimori, T., Yamaguchi, M., Shimizu, M. et al. (2018). Micro‐osteoperforations accelerate orthodontic tooth movement by stimulating periodontal ligament cell cycles. American Journal of Orthodontics and Dentofacial Orthopedics 154, 788–796.

      164 Taddei, S. R., Andrade, I. Jr, Queiroz‐Junior, C. M. et al. (2012) Role of CCR2 in orthodontic tooth movement. American Journal of Orthodontics

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