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1.
Braz. oral res. (Online) ; 34: e014, 2020. tab, graf
Article in English | LILACS | ID: biblio-1089383

ABSTRACT

Abstract Although dental implants and bone regenerative procedures are important approaches for the reestablishment of esthetics and function in young patients with a history of generalized aggressive periodontitis (GAP), no predictable outcomes have been reported, and the host osteo-immunoinflammatory response may play a relevant role in this context. In view of the lack of molecular investigations into the bone tissue condition of young patients with periodontitis, the aim of this study was to evaluate the gene expression of bone-related factors in this population. Bone biopsies were obtained from the posterior mandible in 16 individuals previously diagnosed with GAP and on periodontal support therapy and from 17 periodontally healthy (PH) patients. The gene expression of tumor necrosis factor (TNF)-α, transforming growth factor (TGF)-β, receptor activator of the NF-κB ligand (RANKL), osteoprotegerin (OPG), osteocalcin (OC), bone sialoprotein (BSP), and type I collagen (COL-I), important biomarkers of bone turnover, was evaluated by qRT-PCR. Lower TGF-β and OPG mRNA levels were observed in GAP patients compared to PH individuals (p ≤ 0.05). There were no between-group differences in levels of TNF-α, BSP, RANKL, OC, or COL-I mRNA (p>0.05). In young adults, a history of periodontal disease can negatively modulate the gene expression of important bone-related factors in alveolar bone tissue. These molecular outcomes may contribute to the future development of therapeutic approaches to benefit bone healing in young patients with history of periodontitis via modulation of osteo-immuno-inflammatory biomarkers.


Subject(s)
Humans , Male , Female , Adult , Young Adult , Aggressive Periodontitis/genetics , Gene Expression , Aggressive Periodontitis/metabolism , Reference Values , Biomarkers , Osteocalcin/analysis , Osteocalcin/genetics , Single-Blind Method , Cross-Sectional Studies , Transforming Growth Factor beta/analysis , Transforming Growth Factor beta/genetics , Tumor Necrosis Factor-alpha/analysis , Tumor Necrosis Factor-alpha/genetics , Statistics, Nonparametric , Collagen Type I/analysis , Collagen Type I/genetics , RANK Ligand/analysis , RANK Ligand/genetics , Osteoprotegerin/analysis , Osteoprotegerin/genetics , Integrin-Binding Sialoprotein/analysis , Integrin-Binding Sialoprotein/genetics , Alveolar Process/chemistry , Real-Time Polymerase Chain Reaction
2.
Braz. dent. j ; 21(6): 491-498, 2010. ilus, tab
Article in English | LILACS | ID: lil-572294

ABSTRACT

The aim of this study was to investigate the effects of low-level laser therapy (LLLT) by using gallium aluminum arsenide (GaAlAs) diode laser on human osteoblastic cells grown on titanium (Ti). Osteoblastic cells were obtained by enzymatic digestion of human alveolar bone and cultured on Ti discs for up to 17 days. Cells were exposed to LLLT at 3 J/cm2 (wavelength of 780 nm) at days 3 and 7 and non-irradiated cultures were used as control. LLLT treatment did not influence culture growth, ALP activity, and mineralized matrix formation. Analysis of cultures by epifluorescence microscopy revealed an area without cells in LLLT treated cultures, which was repopulated latter with proliferative and less differentiated cells. Gene expression of ALP, OC, BSP, and BMP-7 was higher in LLLT treated cultures, while Runx2, OPN, and OPG were lower. These results indicate that LLLT modulates cell responses in a complex way stimulating osteoblastic differentiation, which suggests possible benefits on implant osseointegration despite a transient deleterious effect immediately after laser irradiation.


Este estudo teve como objetivo investigar o efeito do laser diodo de gálio-alumínio-arsênio (GaAlAs) em células osteoblásticas humanas cultivadas sobre discos de Ti. Para tanto, células osteoblásticas foram obtidas por digestão enzimática de osso alveolar humano e cultivadas sobre discos de Ti por 17 dias. As células foram submetidas à irradiação no 3º e 7º dias na dose de 3 J/cm2 e comprimento de onda de 780 nm e células não irradiadas foram usadas como controle. A irradiação não alterou a proliferação celular, atividade de ALP e formação de matriz mineralizada. Microscopia por epifluorescência indicou que após 24 h da aplicação do laser, as culturas irradiadas apresentaram áreas sem células, que mais tarde foram repovoadas por células em fase de proliferação e menos diferenciadas. O laser aumentou a expressão gênica relativa da ALP, OC, BSP e BMP-7 e reduziu a de RUNX2, OPN e OPG. Os resultados indicam que a terapia com laser modula de forma complexa as respostas celulares, estimulando a diferenciação osteoblástica. Assim, é possível sugerir possíveis benefícios do laser na osseointegração de implantes de Ti apesar do efeito deletério às células imediatamente após a irradiação.


Subject(s)
Humans , Bone Matrix/growth & development , Gene Expression/radiation effects , Low-Level Light Therapy , Osseointegration/radiation effects , Osteoblasts/radiation effects , Analysis of Variance , Alkaline Phosphatase/biosynthesis , Alkaline Phosphatase/genetics , /biosynthesis , /genetics , Cells, Cultured/radiation effects , Collagen Type I/biosynthesis , Collagen Type I/genetics , Core Binding Factor Alpha 1 Subunit/biosynthesis , Core Binding Factor Alpha 1 Subunit/genetics , Integrin-Binding Sialoprotein/biosynthesis , Integrin-Binding Sialoprotein/genetics , Intercellular Adhesion Molecule-1/biosynthesis , Intercellular Adhesion Molecule-1/genetics , Lasers, Semiconductor/therapeutic use , Osteoblasts/metabolism , Osteocalcin/biosynthesis , Osteocalcin/genetics , Osteopontin/biosynthesis , Osteopontin/genetics , Osteoprotegerin/biosynthesis , Osteoprotegerin/genetics , RANK Ligand/biosynthesis , RANK Ligand/genetics , Statistics, Nonparametric , Titanium
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