Tratamento endodôntico em dentes decíduos associado à reabilitação oral estética e funcional: relato de caso
DOI:
https://doi.org/10.70614/ehcfng07Keywords:
Deciduous teeth, Pediatric dentistry, Dental trauma, EndodonticsAbstract
Pediatric dentistry is an area within dentistry dedicated to oral health care for babies, children and even teenagers. The main focus of this specialty, as well as the focus of this work, is to promote awareness about the importance of creating healthy habits for children and maintaining the deciduous tooth in the alveolus until it is naturally replaced by permanent teeth. Endodontic treatment is usually proposed for two main causes: caries and dental trauma, which is very common in early childhood. The objective of this work was to carry out an endodontic treatment in deciduous teeth (51 and 61) and subsequent aesthetic rehabilitation of elements 51, 61, 52, 62 with composite resin. It can be concluded that the rehabilitation of the anterior deciduous teeth was extremely important from the aesthetic, functional and psychological point of view of the child. The use of maneuvers such as endodontics in deciduous teeth as well as the association of restorations with composite resins became a viable alternative in this clinical case, allowing the reestablishment of form, function and aesthetics.
Downloads
References
1. Monte-Santo AS, Viana SVC, Moreira KMS, Imparato JCP, Mendes FM, Bonini GAVC. Prevalence of early loss of primary molar and its impact in schoolchildren’s quality of life. Int J Paediatr Dent. 2018;28(6):595–601.
2. Sundaram G, Ramakrishnan T, Parthasarathy H, Raja M, Raj S. disease : A cross ‑ link of sorts ! 2018;(May):113–8.
3. Bindayel NA. Clinical evaluation of short term space variation following premature loss of primary second molar, at early permanent dentition stage. Saudi Dent J. 2019;31(3):311–5.
4. Wagner Y, Knaup I, Knaup TJ, Jacobs C, Wolf M. Influence of a programme for prevention of early childhood caries on early orthodontic treatment needs. Clin Oral Investig. 2020;24(12):4313–24.
5. Spodzieja K, Olczak-Kowalczyk D. Premature Loss of Deciduous Teeth as a Symptom of Systemic Disease: A Narrative Literature Review. Int J Environ Res Public Health. 2022;19(6):1–2.
6. Nadelman P, Bedran N, Magno MB, Masterson D, de Castro ACR, Maia LC. Premature loss of primary anterior teeth and its consequences to primary dental arch and speech pattern: A systematic review and meta-analysis. Int J Paediatr Dent. 2020;30(6):687–712.
7. Buser D, Chappuis V, Belser UC, Chen S. Implant placement post extraction in esthetic single tooth sites: when immediate, when early, when late? Periodontol 2000. 2017;73(1):84–102.
8. Harrison JE, Scholey J, Worthington H V, Bickley S, O’Brien KD, Shaw BC. Orthodontic treatment for crowded teeth in children. Cochrane Database Syst Rev. 2002;5–7.
9. Archana SP, Vasanthakumari A, Selvabalaji A, Ishwarya M, Ekambareswaran K, Swetha R. Prevalence of Early Primary Teeth Loss in 5–9-year-old Schoolchildren in and around Melmaruvathur: A Cross-sectional Study. J Contemp Dent Pract. 2023;23(10):1004–7.
10. Fadel MAV, Santos BZ, Antoniazzi RP, Koerich L, Bosco VL, Locks A. Prevalence of malocclusion in public school students in the mixed dentition phase and its association with early loss of deciduous teeth. Dental Press J Orthod. 2022;27(4):36169495.
11. Bitencourt FV, Rodrigues JA, Toassi RFC. Narratives about a stigma: attributing meaning to the early loss of deciduous teeth on children’s caregivers. Braz Oral Res. 2021;35:1–10.
12. Jayachandar D, Gurunathan D, Jeevanandan G. Prevalence of early loss of primary molars among children aged 5-10 years in Chennai: A cross- sectional study. J Indian Soc Pedod Prev Dent . 2019;37(2):115–9.
13. Otsuchi T, Ogaya Y, Suehiro Y, Okawa R, Nakano K. Large-Scale Survey of Missing Deciduous Anterior Teeth on Medical Examination at the Age of 3.5 Years. Children. 2022;9(11):5–6.
14. Bhandi S, Al Khatani A, Abdulaziz Sumayli H, Yahya Sabyei M, Mohammed Al Zailai A, Ali Sumayli M, et al. Comparative analysis of cytokines and growth factors in the conditioned media of stem cells from the pulp of deciduous, young, and old permanent tooth. Saudi J Biol Sci. 2021;28(6):3559–65.
15. Inada E, Saitoh I, Kubota N, Iwase Y, Kiyokawa Y, Shibasaki S, et al. Piggybac transposon-based immortalization of human deciduous tooth dental pulp cells with multipotency and non-tumorigenic potential. Int J Mol Sci. 2019;20(19).
16. Zhang H, Gong X, Xu X, Wang X, Sun Y. Tooth number abnormality: from bench to bedside. Int J Oral Sci. 2023;15(1):1–15.
17. Yu T, Klein OD. Molecular and cellular mechanisms of tooth development, homeostasis and repair. Dev. 2020;147(2):1–32.
18. Wang F, Wu Z, Fan Z, Wu T, Wang J, Zhang C, et al. The cell re-association-based whole-tooth regeneration strategies in large animal, Sus scrofa. Cell Prolif. 2018;51(4):1–9.
19. Wu X, Hu J, Li G, Li Y, Li Y, Zhang J, et al. Biomechanical stress regulates mammalian tooth replacement via the integrin β1‐RUNX2‐Wnt pathway. EMBO J. 2020;39(3):1–19.
20. Oka T, Takahashi A, Koarai K, Kino Y, Sekine T, Shimizu Y, et al. Detection limit of electron spin resonance for Japanese deciduous tooth enamel and density separation method for enamel-dentine separation. J Radiat Res. 2022;63(4):609–14.
21. Paddock K, Zeigler L, Harvey B, Prufrock KA, Liptak JM, Ficorilli CM, et al. Comparative dental anatomy in newborn primates: Cusp mineralization. Anat Rec. 2020;303(9):2415–75.
22. Soda M, Saitoh I, Murakami T, Inada E, Iwase Y, Noguchi H, et al. Repeated human deciduous tooth-derived dental pulp cell reprogramming factor transfection yields multipotent intermediate cells with enhanced iPS cell formation capability. Sci Rep. 2019;9(1):1–13.
23. Paul KS, Stojanowski CM, Hughes T, Brook AH, Townsend GC. Genetic Correlation, Pleiotropy, and Molar Morphology in a Longitudinal Sample of Australian Twins and Families. Genes (Basel). 2022;13(6).
24. Wu X, Wang S. Biomechanical stress regulates mammalian tooth replacement. Cell Stress. 2020;4(3):64–5.
25. Yelick PC, Sharpe PT. Tooth Bioengineering and Regenerative Dentistry. J Dent Res. 2019;98(11):1173–82.
26. Teutle-Coyotecatl B, Contreras-Bulnes R, Rodríguez-Vilchis LE, Scougall-Vilchis RJ, Velazquez-Enriquez U, Almaguer-Flores A, et al. Effect of Surface Roughness of Deciduous and Permanent Tooth Enamel on Bacterial Adhesion. Microorganisms. 2022;10(9):1–12.
27. Spodzieja K, Olczak-Kowalczyk D. Premature Loss of Deciduous Teeth as a Symptom of Systemic Disease: A Narrative Literature Review. Int J Environ Res Public Health. 2022;19(6).
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Revista Clínica de Odontologia
This work is licensed under a Creative Commons Attribution 4.0 International License.