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(Ebook) Chemical Reagents for Protein Modification, Fourth Edition by Adriane Y Togashi Affiliation: University of São Paulo, São Paulo, Brazil;Fabiano R Cirano Affiliation: University of São Paulo, São Paulo, Brazil;Marcia M Marques Affiliation: University of São Paulo, São Paulo, Brazil;Francisco E Pustiglioni Affil ISBN 9781466571907, 9781466571914, 146657190X, 1466571918

  • SKU: EBN-4731766
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Instant download (eBook) Chemical Reagents for Protein Modification, Fourth Edition after payment.
Authors:Adriane Y Togashi Affiliation: University of São Paulo, São Paulo, Brazil;Fabiano R Cirano Affiliation: University of São Paulo, São Paulo, Brazil;Marcia M Marques Affiliation: University of São Paulo, São Paulo, Brazil;Francisco E Pustiglioni Affil
Pages:684 pages.
Year:2014
Editon:4
Publisher:CRC Press
Language:english
File Size:9.78 MB
Format:pdf
ISBNS:9781466571907, 9781466571914, 146657190X, 1466571918
Categories: Ebooks

Product desciption

(Ebook) Chemical Reagents for Protein Modification, Fourth Edition by Adriane Y Togashi Affiliation: University of São Paulo, São Paulo, Brazil;Fabiano R Cirano Affiliation: University of São Paulo, São Paulo, Brazil;Marcia M Marques Affiliation: University of São Paulo, São Paulo, Brazil;Francisco E Pustiglioni Affil ISBN 9781466571907, 9781466571914, 146657190X, 1466571918

Aim: The aim of the present study was to assess the influence of the chemical characteristics and roughness of titanium surfaces on the viability, proliferation and differentiation of osteoblast-like cells cultured in a medium supplemented with recombinant human bone morphogenetic protein-7 (rhBMP-7).
Material and methods: Osteo-1 cells were grown on titanium disks presenting with the following surfaces: (1) machined, (2) coarse grit-blasted and acid-attacked (SLA) and (3) chemically modified SLA (SLAmod) in the absence or presence of 20 ng/ml rhBMP-7 in culture medium. The viability and number of osteo-1 cells were evaluated after 24 h. Analyses of total protein content (TP) and alkaline phosphatase (AP) activity at 7, 14 and 21 days, collagen content at 7 and 21 days and mineralized matrix formation at 21 days were performed.
Results: Cell viability (P=0.5516), cell number (P=0.3485), collagen content (P=0.1165) and mineralized matrix formation (P=0.5319) were not affected by the different surface configurations or by the addition of rhBMP-7 to the medium. Osteo-1 cells cultured on SLA surfaces showed a significant increase in TP at 21 days. The ALPase/TP ratio (P=0.00001) was affected by treatment and time.
Conclusion: The results suggest that the addition of rhBMP-7 to the culture medium did not exert any effect on the viability, proliferation or differentiation of osteoblast-like cells grown on the different surfaces tested. All titanium surfaces analyzed allowed the complete expression of the osteoblast phenotype such as matrix mineralization by osteo-1 cells.
Abstract: Aim: The aim of the present study was to assess the influence of the chemical characteristics and roughness of titanium surfaces on the viability, proliferation and differentiation of osteoblast-like cells cultured in a medium supplemented with recombinant human bone morphogenetic protein-7 (rhBMP-7).
Material and methods: Osteo-1 cells were grown on titanium disks presenting with the following surfaces: (1) machined, (2) coarse grit-blasted and acid-attacked (SLA) and (3) chemically modified SLA (SLAmod) in the absence or presence of 20 ng/ml rhBMP-7 in culture medium. The viability and number of osteo-1 cells were evaluated after 24 h. Analyses of total protein content (TP) and alkaline phosphatase (AP) activity at 7, 14 and 21 days, collagen content at 7 and 21 days and mineralized matrix formation at 21 days were performed.
Results: Cell viability (P=0.5516), cell number (P=0.3485), collagen content (P=0.1165) and mineralized matrix formation (P=0.5319) were not affected by the different surface configurations or by the addition of rhBMP-7 to the medium. Osteo-1 cells cultured on SLA surfaces showed a significant increase in TP at 21 days. The ALPase/TP ratio (P=0.00001) was affected by treatment and time.
Conclusion: The results suggest that the addition of rhBMP-7 to the culture medium did not exert any effect on the viability, proliferation or differentiation of osteoblast-like cells grown on the different surfaces tested. All titanium surfaces analyzed allowed the complete expression of the osteoblast phenotype such as matrix mineralization by osteo-1 cells
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