参考文献(第139号6巻)

1)Koussoulakou DS, et al. A curriculum vitae of teeth: evolution, generation, regeneration. Int J Biol Sci. 2009; 5(3): 226-243.

2)Murashima-Suginami A, et al. Anti-USAG-1 therapy for tooth regeneration through enhanced BMP signaling. Sci Adv. 2021; 7(7): eabf1798.

3)Takahashi K, et al. Adenovirus-mediated ectopic expression of Msx2 in even-numbered rhombomeres induces apoptotic elimination of cranial neural crest cells in ovo. Development. 1998; 125(9): 1627-1635.

4)Takahashi K, et al. Msx2 is a repressor of chondrogenic differentiation in migratory cranial neural crest cells. Dev Dyn. 2001; 222(2): 252-262.

5)Takahashi K, et al. Tooth regeneration: Potential for stimulation of the formation of a third dentition by one gene. Current Topics in Genetics. 2008; 3: 77-82.

6)Murashima-Suginami A, et al. Rudiment incisors survive and erupt as supernumerary teeth as a result of USAG1 abrogation. Biochem Biophys Res Commun. 2007; 359(3): 549-555.

7)Murashima-Suginami A, et al. Enhanced BMP signaling results in supernumerary tooth formation in USAG-1 deficient mouse. Biochem Biophys Res Commun. 2008; 369(4): 1012-1016.

8)Togo Y, et al. Antagonistic functions of USAG-1 and RUNX2 during tooth development. PLoS One. 2016; 11(8): e0161067.

9)Juuri E, et al. Sox2 marks epithelial competence to generate teeth in mammals and reptiles. Development. 2013; 140(7): 1424-1432.

10)Takahashi K, et al. Feasibility of gene therapy for tooth regeneration by stimulation of a third dentition. In; Gene therapy-tools and potential applications. Molina FM ed. In Tech, 2013; 727-744.

11)Takahashi K, et al. Feasibility of Molecularly targeted therapy for tooth regeneration. In; New trends in tissue engineering and regenerative medicine. Official book of the japanese society of regenerative medicine. Hibi H, Ueda M ed. In Tech, 2014; 55-65.

12)Kiso H, et al. Interactions between BMP-7 and USAG-1 (uterine sensitization-associated gene-1) regulate supernumerary organ formations. PLoS One. 2014; 9(5): e96938.

13)Mishima S, et al. Local application of Usag-1 siRNA can promote tooth regeneration in Runx2-deficient mice. Sci Rep. 2021; 11(1): 13674.

14)Takahashi K, et al. Development of tooth regenerative medicine strategies by controlling the number of teeth using targeted molecular therapy. Inflamm Regen. 2020; 40: 21.

15)Mishima S, et al. Maxillary Hypoplasia with congenital oligodontia treated by maxillary distraction osteogenesis. J Craniofac Surg. 2018; 29(4): e411-e414.

16)Takahashi K, et al. Two nonsyndromic cases of multiple supernumerary teeth with different characteristics and review of literatures. J Oral Maxillofac Surg Med Path. 2016; 28: 250-254.

17)Kiso H, et al. Third dentition is the main cause of premolar supernumerary tooth formation. J Dent Res. 2019; 98(9): 968-974.

18)Saito K, et al. Loss of stemness, EMT, and supernumerary tooth formation in Cebpb-/-Runx2+/- murine incisors. Sci Rep. 2018; 8(1): 5169

新着ピックアップ