Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells

<p>Abstract</p> <p>Background</p> <p>Extracellular matrix proteins are key factors that influence the regenerative capacity of tissues. The objective of the present study was to evaluate the effects of enamel matrix derivative (EMD), TGF-β1, and the combination of both...

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Main Authors: Rosa Adalberto L, de Oliveira Paulo T, Beloti Márcio M, Marchesan Julie T, Rodrigues Thaisângela L, Palioto Daniela B
Format: Article
Language:English
Published: BMC 2011-07-01
Series:Head & Face Medicine
Online Access:http://www.head-face-med.com/content/7/1/13
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spelling doaj-486a8bb602094b0da28429861877fcd02020-11-24T20:53:22ZengBMCHead & Face Medicine1746-160X2011-07-01711310.1186/1746-160X-7-13Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cellsRosa Adalberto Lde Oliveira Paulo TBeloti Márcio MMarchesan Julie TRodrigues Thaisângela LPalioto Daniela B<p>Abstract</p> <p>Background</p> <p>Extracellular matrix proteins are key factors that influence the regenerative capacity of tissues. The objective of the present study was to evaluate the effects of enamel matrix derivative (EMD), TGF-β1, and the combination of both factors (EMD+TGF-β1) on human osteoblastic cell cultures.</p> <p>Methods</p> <p>Cells were obtained from alveolar bone of three adult patients using enzymatic digestion. Effects of EMD, TGF-β1, or a combination of both were analyzed on cell proliferation, bone sialoprotein (BSP), osteopontin (OPN) and alkaline phosphatase (ALP) immunodetection, total protein synthesis, ALP activity and bone-like nodule formation.</p> <p>Results</p> <p>All treatments significantly increased cell proliferation compared to the control group at 24 h and 4 days. At day 7, EMD group showed higher cell proliferation compared to TGF-β1, EMD + TGF-β1 and the control group. OPN was detected in the majority of the cells for all groups, whereas fluorescence intensities for ALP labeling were greater in the control than in treated groups; BSP was not detected in all groups. All treatments decreased ALP levels at 7 and 14 days and bone-like nodule formation at 21 days compared to the control group.</p> <p>Conclusions</p> <p>The exposure of human osteoblastic cells to EMD, TGF-β1 and the combination of factors <it>in vitro </it>supports the development of a less differentiated phenotype, with enhanced proliferative activity and total cell number, and reduced ALP activity levels and matrix mineralization.</p> http://www.head-face-med.com/content/7/1/13
collection DOAJ
language English
format Article
sources DOAJ
author Rosa Adalberto L
de Oliveira Paulo T
Beloti Márcio M
Marchesan Julie T
Rodrigues Thaisângela L
Palioto Daniela B
spellingShingle Rosa Adalberto L
de Oliveira Paulo T
Beloti Márcio M
Marchesan Julie T
Rodrigues Thaisângela L
Palioto Daniela B
Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
Head & Face Medicine
author_facet Rosa Adalberto L
de Oliveira Paulo T
Beloti Márcio M
Marchesan Julie T
Rodrigues Thaisângela L
Palioto Daniela B
author_sort Rosa Adalberto L
title Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
title_short Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
title_full Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
title_fullStr Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
title_full_unstemmed Effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
title_sort effects of enamel matrix derivative and transforming growth factor-β1 on human osteoblastic cells
publisher BMC
series Head & Face Medicine
issn 1746-160X
publishDate 2011-07-01
description <p>Abstract</p> <p>Background</p> <p>Extracellular matrix proteins are key factors that influence the regenerative capacity of tissues. The objective of the present study was to evaluate the effects of enamel matrix derivative (EMD), TGF-β1, and the combination of both factors (EMD+TGF-β1) on human osteoblastic cell cultures.</p> <p>Methods</p> <p>Cells were obtained from alveolar bone of three adult patients using enzymatic digestion. Effects of EMD, TGF-β1, or a combination of both were analyzed on cell proliferation, bone sialoprotein (BSP), osteopontin (OPN) and alkaline phosphatase (ALP) immunodetection, total protein synthesis, ALP activity and bone-like nodule formation.</p> <p>Results</p> <p>All treatments significantly increased cell proliferation compared to the control group at 24 h and 4 days. At day 7, EMD group showed higher cell proliferation compared to TGF-β1, EMD + TGF-β1 and the control group. OPN was detected in the majority of the cells for all groups, whereas fluorescence intensities for ALP labeling were greater in the control than in treated groups; BSP was not detected in all groups. All treatments decreased ALP levels at 7 and 14 days and bone-like nodule formation at 21 days compared to the control group.</p> <p>Conclusions</p> <p>The exposure of human osteoblastic cells to EMD, TGF-β1 and the combination of factors <it>in vitro </it>supports the development of a less differentiated phenotype, with enhanced proliferative activity and total cell number, and reduced ALP activity levels and matrix mineralization.</p>
url http://www.head-face-med.com/content/7/1/13
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