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Marginal Microleakage of Newly Synthesized Nanostructured Biomaterials Based on Active Calcium Silicate Systems and HydroxyapatiteIspitivanje marginalne mikropropustljivosti novosintetisanih nanostrukturnih biomaterijala na bazi aktivnih kalcijumsilikatnih sistema i hidroksiapatita
Serbian Dental Journal, ORIGINAL ARTICLE [pdf]Stomatološki Glasnik Srbije, ORIGINALNI RAD [pdf]
ID: 4.2015.3.1 Number: 3 Volume: 62 Month: 9 Year: 2015 UDC: 615.46:616.314-7 [tmx] [bow]
Violeta Petrović
Institution: University of Belgrade, Faculty of Dental Medicine, Department of Restorative Dentistry and Endodontics, Belgrade, Serbia
Mail: petrovic.violeta.bg@gmail.com
Violeta Petrović
Institucija: Univerzitet u Beogradu, Stomatološki fakultet, Klinika za bolesti zuba, Beograd, Srbija
E-pošta: petrovic.violeta.bg@gmail.com
Vanja Opačić Galić
Institution: University of Belgrade, Faculty of Dental Medicine, Department of Restorative Dentistry and Endodontics, Belgrade, Serbia
Vanja Opačić Galić
Institucija: Univerzitet u Beogradu, Stomatološki fakultet, Klinika za bolesti zuba, Beograd, Srbija
Bojan Dželetović
Institution: University of Belgrade, Faculty of Dental Medicine, Department of Restorative Dentistry and Endodontics, Belgrade, Serbia
Bojan Dželetović
Institucija: Univerzitet u Beogradu, Stomatološki fakultet, Klinika za bolesti zuba, Beograd, Srbija
Vukoman Jokanović
Institution: Institute of Nuclear Sciences “Vinča”, University of Belgrade, Belgrade, Serbia
Vukoman Jokanović
Institucija: Institut za nuklearne nauke „Vinča“, Univerzitet u Beogradu, Beograd, Srbija
Slavoljub Živković
Institution: University of Belgrade, Faculty of Dental Medicine, Department of Restorative Dentistry and Endodontics, Belgrade, Serbia
Slavoljub Živković
Institucija: Univerzitet u Beogradu, Stomatološki fakultet, Klinika za bolesti zuba, Beograd, Srbija
Abstract
Introduction Calcium silicate cements can be successfully used for the treatment of root perforations due to their exceptional biological and sealing properties. The aim of this study was to test, using dye penetration method, marginal microleakage of newly synthesized nanostructured biomaterials based on calcium silicate system and hydroxyapatite after their application in interradicular perforation of extracted teeth. Material and Methods The study included 34 extracted human molars. Newly synthesized nanostructured materials: one based on calcium silicate system (CS), and the other one based on hydroxyapatite and active calcium silicate system (HA-CS) were tested. Mineral trioxide agreaggate (MTA; Angelus, Londrina, Brazil) was used as control. Marginal microleakage was evaluated using dye penetration test 6 months after the application of materials in experimentally prepared inter-radicular perforations in extracted human molars. Dye penetration was analyzed using light microscope at 30X magnification, a method of quantifying visual information in computer software for image processing (Adobe Photoshop CS5 Extended, version 12.0 x 32). The values were expressed in millimeters, and the results statistically analyzed using one-way ANOVA and Tukey post-hoc test (α=0.05). Results The shortest dye penetration was measured for calcium silicate system (0.44 mm), while slightly higher values were found for MTA (0.54 mm). Dye penetration for hydroxyapatite and active calcium silicate system (2.00 mm) was longer than for the other two materials (p<0.05). Conclusion The lowest marginal microleakage was observed in CS and was comparable to MTA. Microleakage in HA-CS was significantly higher than CS and MTA.
Apstrakt
Uvod Pri­me­na ce­me­na­ta od kal­ci­jum-si­li­ka­ta u le­če­nju per­fo­ra­ci­ja ko­re­na zu­ba za­sni­va se na nji­ho­vim iz­u­zet­nim bi­o­lo­škim svoj­ stvi­ma i od­go­va­ra­ju­ćem rub­nom zap­ti­va­nju. Cilj ovog ra­da bio je da se te­stom pro­do­ra bo­je is­pi­ta mar­gi­nal­na mi­kro­pro­pu­stlji­vost no­vo­sin­te­ti­sa­nih na­no­struk­tur­nih bi­o­ma­te­ri­ja­la na ba­zi kal­ci­jum­si­li­kat­nih si­ste­ma i hi­drok­si­a­pa­ti­ta na­kon pri­me­ne ma­te­ri­ja­la u in­ter­ra­dik­sne per­fo­ra­ci­je eks­tra­ho­va­nih zu­ba. Ma­te­ri­jal i me­to­de ra­da Is­pi­ti­va­nje je re­a­li­zo­va­no na 34 eks­tra­ho­va­na hu­ma­na mo­la­ra. Te­sti­ra­ni su no­vo­sin­te­ti­sa­ni na­no­struk­tur­ni ma­te­ri­ja­li: ma­te­ri­jal na ba­zi ak­tiv­nih kal­ci­jum­si­li­kat­nih si­ste­ma (CS) i ma­te­ri­jal na ba­zi hi­drok­si­a­pa­ti­ta i ak­tiv­nih kal­ci­jum­si­li­kat­nih si­ste­ma (HA-CS). Kao kon­trol­ni ma­te­ri­jal ko­ri­šćen je ko­mer­ci­jal­ni kal­ci­jum­si­li­kat­ni ce­ment (MTA An­ge­lus, Lon­dri­na, Bra­zil). Mar­gi­nal­na mi­kro­pro­pu­stlji­vost je is­pi­ti­va­na te­stom pro­do­ra bo­je šest me­se­ci na­kon pri­me­ne ma­te­ri­ja­la u eks­pe­ri­men­tal­no pre­pa­ri­sa­ne in­ter­ra­dik­sne per­fo­ra­ci­je na eks­tra­ho­va­nim hu­ma­nim mo­la­ri­ma. Pro­dor bo­je je ana­li­zi­ran sve­tlo­snim mi­kro­sko­pom na uve­li­ča­nju od 30 pu­ta me­to­dom kvan­ti­fi­ko­va­nja vi­zu­el­nih in­for­ma­ci­ja kom­pju­ter­skim pro­gra­mom za ob­ra­du sli­ke (Ado­be Pho­tos­hop CS5 Ex­ten­ded, ver­zi­ja 12.0x32). Do­bi­je­ne vred­no­sti su iz­ra­že­ne u mi­li­me­tri­ma, a do­bi­je­ni re­zul­ta­ti sta­ti­stič­ki su ob­ra­đe­ni pri­me­nom jed­no­fak­tor­skog te­sta ANO­VA sa Tu­ki­je­vim (Tu­key) post-hoc te­stom (α=0,05). Re­zul­ta­ti Naj­ma­nji pro­dor bo­je iz­me­ren je kod ma­te­ri­ja­la CS (0,44 mm), dok su ne­što ve­će vred­no­sti za­be­le­že­ne kod MTA (0,54 mm). Pro­dor bo­je kod ma­te­ri­ja­la HA-CS (2,00 mm) bio je zna­čaj­no ve­ći u od­no­su na ma­te­ri­ja­le CS i MTA (p<0,05). Za­klju­čak Naj­ma­nja mar­gi­nal­na mi­kro­pro­pu­stlji­vost za­be­le­že­na je kod ma­te­ri­ja­la CS i bi­la je kom­pa­ra­bil­na sa MTA. Mi­kro­pro­pu­stlji­vost ma­te­ri­ja­la HA-CS bi­la je zna­čaj­no ve­ća u od­no­su na ma­te­ri­jal CS i kon­trol­ni ma­te­ri­jal MTA.
Keywords: marginal microleakage; calcium silicate cements; hydroxyapatiteKljučne reči: mar­gi­nal­na mi­kro­pro­pu­stlji­vost; kal­ci­jum­si­li­kat­ni ce­men­ti; hi­drok­si­a­pa­tit
Pages: 109-116Strane: 109-116
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