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Master's Dissertation
DOI
https://doi.org/10.11606/D.58.2008.tde-30062008-155633
Document
Author
Full name
Marcos Andrade de Oliva
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
Ribeirão Preto, 2008
Supervisor
Committee
Oliveira, Paulo Tambasco de (President)
Araujo, Antenor
Marcantonio Junior, Elcio
Title in Portuguese
Exposição a fatores de crescimento e proteínas típicos de plasma rico em plaquetas inibe a formação de nódulos de mineralização de culturas de células osteogênicas crescidas sobre titânio
Keywords in Portuguese
cultura de células
fatores de crescimento
mineralização
osteoblastos
proliferação celular
titânio
Abstract in Portuguese
Apesar da ampla aplicação clínica de plasma rico em plaquetas (PRP), a sua eficácia no reparo de defeitos ósseos e na osseointegração de implantes metálicos continua sendo questionada. Em vista disso, objetivo do presente estudo foi avaliar os efeitos de um coquetel contendo os principais fatores de crescimento (GFs) e proteínas de PRP no desenvolvimento do fenótipo osteogênico in vitro sobre titânio (Ti). O coquetel referido continha PDGF-BB, TGF-β1, TGF- β2, albumina, fibronectina e trombospondina. Células da linhagem osteoblástica foram obtidas por digestão enzimática de osso alveolar humano e cultivadas sob condições osteogênicas convencionais até a subconfluência, sendo, em seguida, subcultivadas sobre superfície de Ti. As subculturas foram expostas durante os 7 primeiros dias a meio osteogênico, suplementado com GFs e proteínas, e apenas ao meio osteogênico nos 7 dias subseqüentes. Os grupos controles foram expostos apenas ao meio osteogênico. Nos experimentos dose-resposta foram utilizadas culturas primárias de calvária de ratos, as quais foram expostas ao coquetel de GFs e proteínas e às suas diluições de 1:10 e 1:100. Culturas derivadas de osso alveolar humano expostas ao coquetel de GFs e proteínas apresentaram: aumento significativo do número de células a partir do dia 4 e da proliferação celular em 1 e 4 dias; redução significativa nos níveis de atividade de fosfatase alcalina (ALP) em 4, 7 e 10 dias e ausência de marcação com vermelho de Alizarina em 14 dias. Apesar de as diluições 1:10 e 1:100 restaurarem a atividade proliferativa das culturas aos níveis controles, formações de matriz calcificada foram observadas apenas na diluição 1:100. Os resultados do presente trabalho mostram que o coquetel de GFs e proteínas inibe o desenvolvimento do fenótipo osteogênico de culturas de células osteoblásticas humanas e de ratos crescidas sobre Ti.
Title in English
Treatment with a growth factor-protein mixture inhibits formation of mineralizaed nodules in osteogenic cell cultures grown on titanium
Keywords in English
cell culture
cell proliferation
growth factors
mineralization
osteoblasts
titanium
Abstract in English
Background: Despite wide clinical application, the efficacy of platelet-rich plasma (PRP) for repairing bone defects and enhancing osseointegration of metal implants is still subject of debate. The objective of the present study was to evaluate the effects of a well-defined mixture of growth factors (GFs) and proteins (GFs+proteins) on the development of the osteogenic phenotype on titanium (Ti) in vitro. The composition of the mixture was based on the major components found in PRP preparations. Methods: The PRP-like mixture contained PDGF-BB, TGF-β1, TGF-β2, albumin, fibronectin, and thrombospondin. Osteoblastic cells were obtained by enzymatic digestion of human alveolar bone and cultured under standard osteogenic condition until subconfluence. They were then subcultured on Ti discs up to 14 days. Treated cultures were exposed during the first 7 days to osteogenic medium supplemented with GFs+proteins and to osteogenic medium alone thereafter. Control cultures were exposed to only osteogenic medium throughout the culture interval. Dose-response experiments were carried out using rat primary calvarial cells exposed to GFs+proteins and 1:10 or 1:100 dilutions of the mixture. Results: Treated human-derived cell cultures exhibited a significantly higher number of cells from day 4 on and of cycling cells at days 1 and 4, significantly reduced levels for alkaline phosphatase (ALP) activity, and no Alizarin red stained areas at day 14. Although the 1:10 and 1:100 dilutions restored the proliferative activity of rat calvaria-derived osteogenic cells to control levels, mineralized bone-like nodule formation was only observed with the 1:100 dilution. Conclusions: The present results demonstrated that a PRP-like protein mixture inhibits development of the osteogenic phenotype in both human and rat osteoblastic cell cultures grown on Ti.
 
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Publishing Date
2008-09-17
 
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