Journal Article10.1002/JBM.820290314
Effect of titanium surface roughness on proliferation, differentiation, and protein synthesis of human osteoblast-like cells (MG63)
J. Y. Martin,Zvi Schwartz,Thomas W. Hummert,D. M. Schraub,J. Simpson,J. Lankford,David D Dean,David L. Cochran,Barbara D. Boyan +8 more
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TL;DR: It is demonstrated that surface roughness alters osteoblast proliferation, differentiation, and matrix production in vitro and suggests that implant surfaceroughness may play a role in determining phenotypic expression of cells in vivo.
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Abstract: The effect of surface roughness on osteoblast proliferation, differentiation, and protein synthesis was examined. Human osteoblast-like cells (MG63) were cultured on titanium (Ti) disks that had been prepared by one of five different treatment regimens. All disks were pretreated with hydrofluoric acid-nitric acid and washed (PT). PT disks were also: washed, and then electropolished (EP); fine sandblasted, etched with HCl and H 2 SO 4 , and washed (FA); coarse sandblasted, etched with HCl and H 2 SO 4 , and washed (CA); or Ti plasma-sprayed (TPS). Standard tissue culture plastic was used as a control. Surface topography and profile were evaluated by brightfield and darkfield microscopy, cold field emission scanning electron microscopy, and laser confocal microscopy, while chemical composition was mapped using energy dispersion X-ray analysis and elemental distribution determined using Auger electron spectroscopy. The effect of surface roughness on the cells was evaluated by measuring cell number, [ 3 H]thymidine incorporation into DNA, alkaline phosphatase specific activity, [ 3 H]uridine incorporation into RNA, [ 3 H]proline incorporation into collagenase digestible protein (CDP) and noncollagenase-digestible protein (NCP), and [ 35 S]sulfate incorporation into proteoglycan. Based on surface analysis, the five different Ti surfaces were ranked in order of smoothest to roughest: EP, PT, FA, CA, and TPS. A TiO 2 layer was found on all surfaces that ranged in thickness from 100 A in the smoothest group to 300 A in the roughest. When compared to confluent cultures of cells on plastic, the number of cells was reduced on the TPS surfaces and increased on the EP surfaces, while the number of cells on the other surfaces was equivalent to plastic. [ 3 H]Thymidine incorporation was inversely related to surface roughness. Alkaline phosphatase specific activity in isolated cells was found to decrease with increasing surface roughness, except for those cells cultured on CA. In contrast, enzyme activity in the cell layer was only decreased in cultures grown on FA- and TPS-treated surfaces. A direct correlation between surface roughness and A and CDP production was found. Surface roughness had no apparent effect on NCP production. Proteoglycan synthesis by the cells was inhibited on all the surfaces studied, with the largest inhibition observed in the CA and EP groups. These results demonstrate that surface roughness alters osteoblast proliferation, differentiation, and matrix production in vitro. The results also suggest that implant surface roughness may play a role in determining phenotypic expression of cells in vivo
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Citations
Response of osteoblast-like cells on titanium surface treatment
Hyun-Ki Roh,Seong-Joo Heo,Ik-Tae Chang,Jai-Young Koak,Jong-Hyun Han,Yongsik Kim,Soon-Ho Yim +6 more
- 01 Jan 2003
TL;DR: This study was supported by a grant of the Korea Health 21 R & D Project and the Ministry of Health & Welfare.
A Feasible Route to Produce 30 MPa Adhesion Strength of Electrochemically Deposited Hydroxyapatite (HA) on Titanium (Ti6Al4V) Alloy
TL;DR: The electrochemical-deposited HA-coated samples were more resistant to dissolution and showed 2 times better corrosion resistance than bare metal, which is greater than required for tooth fixation and root implants.
1
Estudo das características físico-químicas e biológicas pela adesão de osteoblastos em superfícies de titânio modificadas pela nitretação em plasma
José Sandro Pereira da Silva
- 01 Jan 2008
TL;DR: SILVA, J. S. P. as mentioned in this paper, et al. studied caracteristicas fisico-quimicas e biologicas pela osteoblastos em superficies de titânio modificadas pela nitretacao in vitro.
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