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001-es BibID:BIBFORM088388
035-os BibID:7063(cikkazonosító) (Scopus)85092778560 (WOS)000585101300001
Első szerző:Hajdu Péter (gyorsító üzemeltető mérnök)
Cím:Optimized Size and Distribution of Silver Nanoparticles on the Surface of Titanium Implant Regarding Cell Viability / Hajdu Péter, Lampé István, Rácz Richárd, Biri Sándor, Csík Attila, Tóth Ferenc, Szalóki Melinda, Hegedűs Viktória, Dombrádi Zsuzsanna, Varga István, Csarnovics István, Kökényesi Sándor, Beke Dezső László, Hegedűs Csaba
Dátum:2020
ISSN:2076-3417
Megjegyzések:Though the antibacterial effect is advantageous, silver and silver nanoparticles can negatively affect the viability of human tissues. This study aims to check the viability of cells on surfaces with different particle size and to find the biologically optimal configuration. We investigated the effect of modified thickness of vaporized silver and applied heat and time on the physical characteristics of silver nanoparticle covered titanium surfaces. Samples were examined by scanning electron microscopy, mass spectrometry, and drop shape analyzer. To investigate how different physical surface characteristics influence cell viability, Alamar Blue assay for dental pulp stem cells was carried out. We found that different surface characteristics can be achieved by modifying procedures when creating silver nanoparticle covered titanium. The size of the nanoparticles varied between 60 to 368 nm, and hydrophilicity varied between 63 and 105 degrees of contact angle. Investigations also demonstrated that different physical characteristics are related to a different level of viability. Surfaces covered with 60 nm particle sizes proved to be the most hydrophilic, and the viability of the cells was comparable to the viability measured on the untreated control surface. Physical and biological characteristics of silver nanoparticle covered titanium, including cell viability, have an acceptable level to be used for antibacterial effects to prevent periimplantitis around implants.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
silver nanoparticles
antibacterial effect
periimplantitis
cell viability
Megjelenés:Applied Sciences-Basel. - 10 : 20 (2020), p. 1-13. -
További szerzők:Lampé István (1960-) (fogszakorvos) Rácz Richárd (1985-) (fizikus) Biri Sándor Csik Attila (1975-) (fizikus) Tóth Ferenc (1980-) (molekuláris biológus) Szalóki Melinda (1981-) (vegyész) Hegedűs Viktória (1986-) (fogorvos) Dombrádi Zsuzsanna Rita (1983-) (molekuláris biológus, mikrobiológus) Varga István (1974-) (fogszakorvos) Csarnovics István (1986-) (fizikus) Kökényesi Sándor (1946-) (fizikus) Beke Dezső László (1945-) (fizikus) Hegedűs Csaba (1953-) (fogszakorvos)
Pályázati támogatás:GINOP-2.3.2-15-2016-00011
GINOP
GINOP-2.3.2-15-2016-00022
GINOP
GINOP-2.3.2-15-2016-00041
GINOP
GINOP-2.3.3-15-2016-00029
GINOP
NKFIH-1150-6/2019
NKFIH
Internet cím:Szerző által megadott URL
DOI
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001-es BibID:BIBFORM105773
035-os BibID:(Scopus)85142845103
Első szerző:Martos Renáta (fogszakorvos)
Cím:Comparative Analysis of Bond Strength Durability of 10-Methacryloyloxydecyl Dihydrogen Phosphate-Containing Adhesives on a Low-Viscosity Bulk-Fill Composite Surface / Martos Renáta, Szalóki Melinda, Gáll József, Csík Attila, Hegedűs Csaba
Dátum:2022
Megjegyzések:Abstract Purpose: To compare the bond durability of adhesives with 10-methacryloyloxydecyl dihydrogen phosphate (10-MDP) to low-viscosity bulk-fill composite. Materials and methods: Four 10-MDP-containing adhesives (Tokuyama Bond Force II [TBF II], Tokuyama; Scotchbond Universal [SU], 3M Oral Care; Clearfil Universal Bond Quick [CL], Kuraray Noritake; and G-Premio Bond [GP], GC) and one 10-MDP-free adhesive (Heliobond [HB] Ivoclar Vivadent) as a control were applied to polished, air-abraded surfaces of randomly assigned SureFil SDR flow low-viscosity bulk-fill composite blocks. The application of the adhesives was followed by applying Tetric EvoCeram universal nanohybrid composite in layers. Each layered composite block was sliced into stick specimens with a hard-tissue microtome. Half of the groups were randomly selected and tested for microtensile bond strength (immediate group); the other groups were aged in a thermocyling machine for 5000 cycles, followed by testing microtensile bond strength (aged group). The adhesive interface was evaluated with scanning electron microscopy (SEM). Failure modes were observed using light microscopy. The results were evaluated with Levene's test, ANOVA, Welch's ANOVA, Tukey's test and the Z-test as appropriate (significance: p < 0.05). Results: There was a significant difference in the bond strength between 10-MDP-containing adhesives and the 10-MDP-free adhesive in all groups. Aging significantly decreased the bond strength in all adhesive groups. There was no significant difference in the bond strength durability among the 10-MDP-containing adhesives. Conclusion: Application of 10-MDP-containing adhesives has an advantageous effect on the air-abraded SDR composite surface compared with 10-MDP-free adhesive. The composition of 10-MDP-containing adhesives did not influence the bond strength. Aging diminishes the bond strength durability of 10-MDP-containing adhesives.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Megjelenés:The Journal of Adhesive Dentistry. - 24 : 1 (2022), p. 427-434. -
További szerzők:Szalóki Melinda (1981-) (vegyész) Gáll József (1972-) (matematikus, közgazdász) Csik Attila (1975-) (fizikus) Hegedűs Csaba (1953-) (fogszakorvos)
Internet cím:DOI
Intézményi repozitóriumban (DEA) tárolt változat
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