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Biocompatibility of root canal obturation materials implanted in rats muscular tissue

Ispitivanje biokompatibilnosti dentalnih materijala za punjenje kanala korena implantiranih u mišićno tkivo pacova

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2009
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Karadžić, Branislav
Vujašković, Mirjana
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Abstract
The purpose of this study was to investigate the biocompatibility of different dental materials for teeth root canal obturation, implanted in rat muscular tissue, by analyzing the type of muscular tissue inflammatory reaction level. In the preparation of Wistar rats M. biceps femoris, three different materials for root canal obturation were implanted: Sealapex (Kerr, Romulus, USA), AH-26 (DE Trey, Zurich, Switzerland) and Spongio cement material based on polymethil metacrylate - PMMA (Tomić, 1981, US patent 4296209). The used control material was sterile wax. The rats were sacrificed 30 and 60 days after implantation and the response of the tissue on implanted material was evaluated with standard histological methods on 6 _m sections stained with hematoxilin and eosin. Implantation of Sealapex in rat muscle tissue produced a strong acute inflammation, infiltration with massive polymorphonuclear and numerous giant cells. Acute inflammation still persisted 60 days after implantation. AH-...26 produced a strong reaction around the alien body with predominantly limphocitic infiltration. Giant cells and macrophages contained phagocited pieces of material. After 60 days expressive chronic myositis was present with a mass of giant cells and proliferation of connective tissue. Thirty days later the results of histological investigations suggested that implanted PMMA based material still produced a connective fibrous capsula made of fibroblasts and fibrocytes around the implanted material. In the muscular tissue myositis developed forming granulomatous tissue. After 60 days a capsula was made of mature hyalinisated connective tissue without signs of inflammation in the surrounding muscular tissue. The reaction is similar to the reaction to inert control material, such as sterile wax. These findings suggest biocompatibility of PMMA based material for canal obturation.

Cilj ovog rada je bio da se, na osnovu analize tipa i stepena inflamatorne reakcije koje izazivaju različiti materijali za punjenje kanala korena zuba - sileri, ispita njihova biokompatibilnost nakon unošenja u mišićno tkivo pacova. U poprečno presečen m. biceps femoris laboratorijskih pacova Wistar soja inplantirane su paste za opturaciju kanala Sealapex (Kerr, Romulus, USA), AH - 26 (DE Trey, Zurich, Switzerland) i Spongio cement preparat na bazi PMMA (Tomić, 1981, US patent 4296209), a kao kontrolni materijal stomatološki roze vosak. Životinje su bile žrtvovane nakon 30 i 60 dana, a materijal je pripreman za patohistološ ke pretrage standardnom tehnikom i bojen hematoksilin eozinom. Spongio cement u mišićnom tkivu oko implantiranog materijala daje hronič no zapaljenje, uz stvaranje vezivne kapsule sagrađene od fibroblasta i fibrocita. Nakon 60 dana, kapsula je sagrađena od zrelih ćelija i hijeliniziranih kolagenih vlakana. Implantacija Sealapexa u mišićno tkivo pacova, produkuje jak...u hroničnu inflamaciju sa masivnom infiltracijom polimorfonukleara i džinovskih ćelija, koja postoji i nakon 60 dana od implantacije. Pasta AH-26 izaziva burnu reakciju mišićnog tkiva na strano telo sa izraženom limfocitarnom infiltracijom. Nakon 60 dana, prisutna je hronična inflamacija uz prisustvo brojnih džinovskih ćelija i makrofaga koje sadrže fagocitovane deliće materijala, dok vezivno tkivo proliferiše uz stvaranje cističnih tvorevina.

Keywords:
biocompatibility / muscular tissue / rat / root canal obturation / root canal sealer
Source:
Acta veterinaria, 2009, 59, 2-3, 267-276
Publisher:
  • Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd

DOI: 10.2298/AVB0903267K

ISSN: 0567-8315

WoS: 000267652900016

[ Google Scholar ]
1
URI
https://smile.stomf.bg.ac.rs/handle/123456789/1480
Collections
  • Radovi istraživača
Institution/Community
Stomatološki fakultet
TY  - JOUR
AU  - Karadžić, Branislav
AU  - Vujašković, Mirjana
PY  - 2009
UR  - https://smile.stomf.bg.ac.rs/handle/123456789/1480
AB  - The purpose of this study was to investigate the biocompatibility of different dental materials for teeth root canal obturation, implanted in rat muscular tissue, by analyzing the type of muscular tissue inflammatory reaction level. In the preparation of Wistar rats M. biceps femoris, three different materials for root canal obturation were implanted: Sealapex (Kerr, Romulus, USA), AH-26 (DE Trey, Zurich, Switzerland) and Spongio cement material based on polymethil metacrylate - PMMA (Tomić, 1981, US patent 4296209). The used control material was sterile wax. The rats were sacrificed 30 and 60 days after implantation and the response of the tissue on implanted material was evaluated with standard histological methods on 6 _m sections stained with hematoxilin and eosin. Implantation of Sealapex in rat muscle tissue produced a strong acute inflammation, infiltration with massive polymorphonuclear and numerous giant cells. Acute inflammation still persisted 60 days after implantation. AH-26 produced a strong reaction around the alien body with predominantly limphocitic infiltration. Giant cells and macrophages contained phagocited pieces of material. After 60 days expressive chronic myositis was present with a mass of giant cells and proliferation of connective tissue. Thirty days later the results of histological investigations suggested that implanted PMMA based material still produced a connective fibrous capsula made of fibroblasts and fibrocytes around the implanted material. In the muscular tissue myositis developed forming granulomatous tissue. After 60 days a capsula was made of mature hyalinisated connective tissue without signs of inflammation in the surrounding muscular tissue. The reaction is similar to the reaction to inert control material, such as sterile wax. These findings suggest biocompatibility of PMMA based material for canal obturation.
AB  - Cilj ovog rada je bio da se, na osnovu analize tipa i stepena inflamatorne reakcije koje izazivaju različiti materijali za punjenje kanala korena zuba - sileri, ispita njihova biokompatibilnost nakon unošenja u mišićno tkivo pacova. U poprečno presečen m. biceps femoris laboratorijskih pacova Wistar soja inplantirane su paste za opturaciju kanala Sealapex (Kerr, Romulus, USA), AH - 26 (DE Trey, Zurich, Switzerland) i Spongio cement preparat na bazi PMMA (Tomić, 1981, US patent 4296209), a kao kontrolni materijal stomatološki roze vosak. Životinje su bile žrtvovane nakon 30 i 60 dana, a materijal je pripreman za patohistološ ke pretrage standardnom tehnikom i bojen hematoksilin eozinom. Spongio cement u mišićnom tkivu oko implantiranog materijala daje hronič no zapaljenje, uz stvaranje vezivne kapsule sagrađene od fibroblasta i fibrocita. Nakon 60 dana, kapsula je sagrađena od zrelih ćelija i hijeliniziranih kolagenih vlakana. Implantacija Sealapexa u mišićno tkivo pacova, produkuje jaku hroničnu inflamaciju sa masivnom infiltracijom polimorfonukleara i džinovskih ćelija, koja postoji i nakon 60 dana od implantacije. Pasta AH-26 izaziva burnu reakciju mišićnog tkiva na strano telo sa izraženom limfocitarnom infiltracijom. Nakon 60 dana, prisutna je hronična inflamacija uz prisustvo brojnih džinovskih ćelija i makrofaga koje sadrže fagocitovane deliće materijala, dok vezivno tkivo proliferiše uz stvaranje cističnih tvorevina.
PB  - Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd
T2  - Acta veterinaria
T1  - Biocompatibility of root canal obturation materials implanted in rats muscular tissue
T1  - Ispitivanje biokompatibilnosti dentalnih materijala za punjenje kanala korena implantiranih u mišićno tkivo pacova
VL  - 59
IS  - 2-3
SP  - 267
EP  - 276
DO  - 10.2298/AVB0903267K
ER  - 
@article{
author = "Karadžić, Branislav and Vujašković, Mirjana",
year = "2009",
abstract = "The purpose of this study was to investigate the biocompatibility of different dental materials for teeth root canal obturation, implanted in rat muscular tissue, by analyzing the type of muscular tissue inflammatory reaction level. In the preparation of Wistar rats M. biceps femoris, three different materials for root canal obturation were implanted: Sealapex (Kerr, Romulus, USA), AH-26 (DE Trey, Zurich, Switzerland) and Spongio cement material based on polymethil metacrylate - PMMA (Tomić, 1981, US patent 4296209). The used control material was sterile wax. The rats were sacrificed 30 and 60 days after implantation and the response of the tissue on implanted material was evaluated with standard histological methods on 6 _m sections stained with hematoxilin and eosin. Implantation of Sealapex in rat muscle tissue produced a strong acute inflammation, infiltration with massive polymorphonuclear and numerous giant cells. Acute inflammation still persisted 60 days after implantation. AH-26 produced a strong reaction around the alien body with predominantly limphocitic infiltration. Giant cells and macrophages contained phagocited pieces of material. After 60 days expressive chronic myositis was present with a mass of giant cells and proliferation of connective tissue. Thirty days later the results of histological investigations suggested that implanted PMMA based material still produced a connective fibrous capsula made of fibroblasts and fibrocytes around the implanted material. In the muscular tissue myositis developed forming granulomatous tissue. After 60 days a capsula was made of mature hyalinisated connective tissue without signs of inflammation in the surrounding muscular tissue. The reaction is similar to the reaction to inert control material, such as sterile wax. These findings suggest biocompatibility of PMMA based material for canal obturation., Cilj ovog rada je bio da se, na osnovu analize tipa i stepena inflamatorne reakcije koje izazivaju različiti materijali za punjenje kanala korena zuba - sileri, ispita njihova biokompatibilnost nakon unošenja u mišićno tkivo pacova. U poprečno presečen m. biceps femoris laboratorijskih pacova Wistar soja inplantirane su paste za opturaciju kanala Sealapex (Kerr, Romulus, USA), AH - 26 (DE Trey, Zurich, Switzerland) i Spongio cement preparat na bazi PMMA (Tomić, 1981, US patent 4296209), a kao kontrolni materijal stomatološki roze vosak. Životinje su bile žrtvovane nakon 30 i 60 dana, a materijal je pripreman za patohistološ ke pretrage standardnom tehnikom i bojen hematoksilin eozinom. Spongio cement u mišićnom tkivu oko implantiranog materijala daje hronič no zapaljenje, uz stvaranje vezivne kapsule sagrađene od fibroblasta i fibrocita. Nakon 60 dana, kapsula je sagrađena od zrelih ćelija i hijeliniziranih kolagenih vlakana. Implantacija Sealapexa u mišićno tkivo pacova, produkuje jaku hroničnu inflamaciju sa masivnom infiltracijom polimorfonukleara i džinovskih ćelija, koja postoji i nakon 60 dana od implantacije. Pasta AH-26 izaziva burnu reakciju mišićnog tkiva na strano telo sa izraženom limfocitarnom infiltracijom. Nakon 60 dana, prisutna je hronična inflamacija uz prisustvo brojnih džinovskih ćelija i makrofaga koje sadrže fagocitovane deliće materijala, dok vezivno tkivo proliferiše uz stvaranje cističnih tvorevina.",
publisher = "Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd",
journal = "Acta veterinaria",
title = "Biocompatibility of root canal obturation materials implanted in rats muscular tissue, Ispitivanje biokompatibilnosti dentalnih materijala za punjenje kanala korena implantiranih u mišićno tkivo pacova",
volume = "59",
number = "2-3",
pages = "267-276",
doi = "10.2298/AVB0903267K"
}
Karadžić, B.,& Vujašković, M.. (2009). Biocompatibility of root canal obturation materials implanted in rats muscular tissue. in Acta veterinaria
Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd., 59(2-3), 267-276.
https://doi.org/10.2298/AVB0903267K
Karadžić B, Vujašković M. Biocompatibility of root canal obturation materials implanted in rats muscular tissue. in Acta veterinaria. 2009;59(2-3):267-276.
doi:10.2298/AVB0903267K .
Karadžić, Branislav, Vujašković, Mirjana, "Biocompatibility of root canal obturation materials implanted in rats muscular tissue" in Acta veterinaria, 59, no. 2-3 (2009):267-276,
https://doi.org/10.2298/AVB0903267K . .

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