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1.
Biosci. j. (Online) ; 36(5): 1794-1805, 01-09-2020. ilus
Article in English | LILACS | ID: biblio-1147937

ABSTRACT

This study aimed to analyze the tissue reaction caused by carvacrol paste associated or not with laser photobiomodulation (LPBM) at λ660 nm in the subcutaneous tissue of rats. Sixty Wistar rats were divided into four groups and they received the following interventions: subcutaneous implantation of empty polyethylene tubes (CTR), implantation of tubes containing carvacrol paste (CVC), implantation of empty tubes and LPBM (LLLT), and implantation of tubes containing carvacrol paste and LPBM (CVCLT). The animals were euthanized at three, eight, and 15 days after surgery. The inflammatory reaction and fibroplasia were analyzed histomorphometrically. Significant differences among the groups were determined by ANOVA and Tukey's test (p<0.05). In the 3-day period, the CVCLT group had low inflammatory infiltration (p<0.01). In the 8- and 15-day periods, the LLLT and CVCLT groups presented a low amount of lymphocytic inflammatory infiltrate (p<0.01 and p<0.05). Regarding the formation of fibrous tissue, the CVC group had the highest formation of type III collagen in the 8-day period (p<0.001). In the 15-day period, the CVCLT group had a lower formation of type I collagen than the CTR and LLLT groups (p<0.05). The use of the carvacrol paste associated with photobiomodulation optimizes the inflammatory period and tissue repair.


Este estudo teve como objetivo analisar a reação tecidual causada pela pasta de carvacrol associada ou não à fotobiomodulação a laser (LPBM) a λ660 nm no tecido subcutâneo de ratos. Sessenta ratos Wistar foram divididos em quatro grupos e receberam as seguintes intervenções: implantação subcutânea de tubos de polietileno vazios (CTR); implantação de tubos contendo pasta de carvacrol (CVC); implantação de tubos vazios e LPBM (LLLT); implantação de tubos contendo pasta de carvacrol e LPBM (CVCLT). Os animais foram eutanasiados aos 03, 08 e 15 dias após a cirurgia. A reação inflamatória e a fibroplasia foram analisadas histologicamente. Diferenças significativas entre os grupos foram determinadas pelo teste ANOVA e teste de Tukey (p<0,05). No período de três dias, o grupo CVCLT apresentou menor infiltração inflamatória (p<0,01). No período de 8 e 15 dias, os grupos LLLT e CVCLT apresentaram menor quantidade de infiltrado inflamatório linfocitário (p<0,01 e p<0,05). Em relação à formação de tecido fibroso, o grupo CVC apresentou maior formação de colágeno tipo III no período de 8 dias (p<0,001). No período de 15 dias, o grupo CVCLT apresentou menor formação de colágeno tipo I em relação aos grupos CTR e LLLT (p<0,05). O uso da pasta de carvacrol associado à fotobiomodulação a laser otimiza o período inflamatório e o reparo tecidual.


Subject(s)
Wound Healing , Endodontics , Laser Therapy
2.
J Photochem Photobiol B ; 205: 111813, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32070823

ABSTRACT

This study aimed to evaluate in vivo the effect of laser photobiomodulation associated with a repair cement (MTA Repair HP™) on the process of bone repair in the femur of rats, through histological and histomorphometric assays. Forty Wistar albino rats were randomly divided into four groups, with two periods of euthanasia - 15 and 21 days (n = 5 per period). Under general anesthesia, a bone defect was made in the left femur of each animal. In the LS (Laser) group, the defect was irradiated following the parameters: λ = 808 nm, P = 100 mW, ED = 80 J/cm2 per point, 22 s per point, E = 2.2 J per point. In the LM (MTA Repair HP™ + Laser) group, the defect was filled with MTA Repair HP™ and irradiated with laser in the same protocol of the LS group. In the MH (MTA Repair HP™) group, the defect was filled with MTA Repair HP™ without irradiation. In the CTR (Control) group, the bone defect received no treatment. At 15 days, the mean index of bone neoformation in the defect area was significantly lower in the CTR group as compared to the MH, LS, and LM groups. At 21 days, the LM group presented significantly greater bone neoformation than the MH group, without significant difference between LS and LM. Laser photobiomodulation therapy is promising as an adjuvant in the bone repair process, especially when associated with the use of biomaterials.


Subject(s)
Biocompatible Materials , Bone Cements , Bone Regeneration , Femur/physiology , Lasers , Animals , Ceramics , Male , Rats, Wistar
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