Evaluation of the effectiveness of photobiomodulations inrecurrent afthous stomatitis in young patients
DOI:
https://doi.org/10.33448/rsd-v11i9.29654Keywords:
Aphtous Stomatitis; Lasers; Photodynamic Therapy; Adolescents.Abstract
Recurrent Aphthous Stomatitis (RAS) is characterized as an ulcer with a yellowish background delimited by an erythematous halo that can affect the entire oral mucosa, varying in shape, size and number. The wound healing process lasts around 10 to 14 days, with painful symptoms and a decrease in the patient's quality of life. These lesions are commonly found in all age groups, drawing attention to their high prevalence in the hebiatric population, a phase in which care with usual hygiene is not always a priority, as is the quality of food, which sometimes promotes acidification of the body. oral medium. In order to avoid systemic medication, promote analgesia and reduce inflammation caused by different types of stomatitis, Low Power Laser irradiation (LLLT) has been studied. The objective of this study was to analyze the effectiveness of LLLT in tissue repair, analgesia and recurrence of lesions of the three types of RAS in hebiatric patients, divided into 2 groups: Group I (LLLT), contact application in two sessions with an interval of 24 hours and Group II (control), only follow-up. Both were evaluated at 4 different times. LLLT, in addition to reducing pain, had an effect on the tissue repair process on protein synthesis, accelerating the healing process. Therefore, it can be concluded that LLLT is effective on RAS, and can be recommended as an adequate and reliable treatment, reducing the discomfort of patients affected by this type of ulcer.
References
Afonso, Áquila de O., Capelario, E. de F. S., Silva, F. A. B. da, Santos, M. de L., Correa, L. F. A., Maciel , B. T., Lopes, G. M., Freitas, D. da P., Albuquerque, I. F. de S. A., Silva, R. B., Sátiro, V. D. de S., Damião, R. P., Franco, A. G., Pereira, L. D., Silva, L. G. T. da., Souza, T. P. P. de, Sá, A. C. S. F. de., & Melo , H. C. (2022). Lesões aftoides da cavidade oral: apresentação clínica, diagnóstico e tratamento. Research, Society and Development, 11(2), e52111226056. https://doi.org/10.33448/rsd-v11i2.26056
André, C.-V. (2014). Photothérapie par diode électroluminescente des pathologies inflammatoires et infectieuses de la cavité orale. Revue de Stomatologie, de Chirurgie Maxillo-faciale Et de Chirurgie Orale, 115(1).
Asnaashari, M. (2016). Comparison of the Antibacterial Effect of 810 nm Diode Laser and Photodynamic Therapy in Reducing the Microbial Flora of Root Canal in Endodontic Retreatment in Patients With Periradicular Lesions. Journal Lasers in Medical Science. 7(2).
Basso, F. (2016). Proliferation, migration,and expression of oral-mucosal-healing related genes by oralfibroblasts receiving lowlevel laser therapy after inflammatory cytokines challenge. Journal Lasers in Surgery Medicine. 48(10).
Costa, G., & Castro, J. (2013). Etiologia e tratamento da estomatite aftosa recorrente - revisão de literatura. Medicina Ribeirão Preto Online, 46(1).
Curvelo, J. A. da R. (2008). Úlceras Aftosas Recorrentes e sua possível associação ao estresse. Revista de Ciências Médicas e Biológicas, 7(1).
Fávaro, D. M., & Martins, G. (2004). Ulceração aftosa recorrente em crianças: revisão II. Classificação, aspectos clínicos, epidemiologia, etiologia. Revista de Clínica Pesquisa Odontológica, 1(1).
Fonda-Pascual, P. P (2016) In situ production of ROS in the skin by photodynamic therapy as a powerful tool in clinicaldermatology. Jounal Methods. 15(109).
Fraiha, P.M., Bittencourt, P.G., & Celestino, L. R. (2002). Estomatite aftosa recorrente Revisão bibliográfica. Revista Brasileira Otorrinolaringologia. 68.
Hamblin, M.R. (2016). Antimicrobial photodynamic inactivation: a bright new technique to kill resistant microbes. Journal Current Opinion in Microbiology. 12(33).
Koshoji, N. H. (2016). Relationship between analysis of laser speckle image and Knoop hardness on softening enamel. Journal Photodiagnosis and Photodynamic Therapy. v. 15.
Lins, R. D. A. U. (2010). Biostimulation effects of low-power laser in the repair process. An. Bras. Dermatol., 85 <http://www.scielo.br/scielo.php?script=sci_arttext&pid=S036505962010000600011&lng=en&nrm=iso>. http://dx.doi.org/10.1590/S0365-05962010000600011.
Leal, J. (2015). Effect of phototherapy (low level laser therapy and light-emitting diode therapy)on exerciseperformance and markers of exercise recovery: a systematic review with meta-analysis. Journal Lasers in Medical Science. 30(2).
Malgikar, S. (2016). Clinical effects of photodynamic and low-level laser therapies as an adjunct to scaling and root planing of chronic periodontitis: A split-mouth randomized controlled clinical trial. Indian Journal of Dental Research. 27(2).
Marangoni, A. F., Benedito, L. C. de B., Soares, J. V., & Nascimento, F. D. (2022). Fotobiomodulação por Laser em Baixa Intensidade no tratamento da estomatite aftosa maior – acompanhamento de dois anos. Research, Society and Development, 11(6). https://doi.org/10.33448/rsd-v11i6.28842
Martins F. Efficacy of antimicrobial photodynamic therapy as an adjuvant in periodontal treatment in Down syndrome patients. (2016) Journal Lasers in Medical Science. 31.
Oyamada, L. H. (2014). Estomatite aftosa recorrente. Brazilian Journal of Surgery and Clinical Research - BJSCR 6(1).
Pedreira, A. (2016). Thermographic and clinical evaluation of 808-nm laser photobiomodulation effects after third molar extraction. Journal Minerva Stomatologica. 65(4).
Pereira A. S. et al. (2018). Metodologia da pesquisa científica. UFSM.
Sierra, S.O. (2015).Effect of lowintensity laser treatment on pain after extraction of impacted mandibular thirdmolars: a randomised, controlled, clinical trial. British Journal Oral and Maxillofacial Surgery. 53(10).
Silva, E. M. (2007). Avaliação histológica da laserterapia de baixa intensidade na cicatrização de tecidos epitelial, conjuntivo e ósseo: estudo experimental em ratos. RSBO Revista Sul-Brasileira de Odontologia, vol. 4.
Tellez T. Caridad, N. de L. (2013). Efectividad del tratamiento con radiación láser de baja potência en la estomatitis aftosa recurrente. Revista de Ciencias Médicas, 17(5).
Xie L. (2016). Functional long circulating single walled carbon nanotubes for fluorescent/photoacoustic imaging-guided enhanced phototherapy. Journal Biomaterials. v.103.
Zwiri, A. M. (2015). Anxiety, Depression and Quality of Life among Patients with Recurrent Aphthous Ulcers. The Journal of Contemporary Dental Practice, 16(2).
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