• 제목/요약/키워드: MTA cement

검색결과 44건 처리시간 0.026초

사람의 치수 및 치주인대 세포에 대한 Bioaggregate 시멘트의 생체적합성에 대한 연구 (Biocompatibility of bioaggregate cement on human pulp and periodontal ligament (PDL) derived cells)

  • 정주령;김의성;신수정
    • Restorative Dentistry and Endodontics
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    • 제35권6호
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    • pp.473-478
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    • 2010
  • 연구목적: 본 연구는 인간의 치수 및 치근단 조직에서 유리된 세포를 이용하여 비교적 최근 소개된 Bioaggregate의 생체친화성을 평가하는 데에 있다. 연구 재료 및 방법: 사람의 발거치로 부터 치수 및 치근단 조직에서 배양된 세포를 이용하였다. Bioaggregate와 white MTA를 혼합하여 세포배양판에 적용한 후 같은 수의 세포를 배양하였다. 1, 3, 그리고 7일 후 위상차현미경을 사용하여 세포의 부착과 성장을 관찰하고 cell viability test를 시행하였다. 얻어진 결과는 Student t-test및 one way ANOVA를 이용하여 분석하였다. 결과: 두가지 종류의 세포 모두 Bioaggregate와 MTA가 혼합된 배양판에서 잘 성장하였으며 Bioaggregate군에서는 inhibition zone이 관찰되지 않았다. Cell viability test에서 두 그룹간 통계적인 유의성 차이는 없었다. 결론: Bioaggreagete는 치수 및 치근단 세포에 대하여 MTA와 유사한 세포친화성을 보였다.

Premixed MTA제재의 pH, 이온 유리 정도, 용해도 (pH, Ion Release Capability, and Solubility Value of Premixed Mineral Trioxide Aggregates)

  • 백설아;장유지;이정환;이준행;신지선;김종빈;한미란;김종수
    • 대한소아치과학회지
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    • 제49권4호
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    • pp.379-391
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    • 2022
  • 이 연구는 premixed MTA 제재와 기존 치수복조제의 경화 전, 후의 pH 값 그리고 칼슘, 황, 스트론튬 이온의 유리량, 용해도를 비교했다. 사용된 재료는 다음과 같다 : 레진 강화형 칼슘실리케이트(TheraCal LC®; TLC), 레진 강화형 수산화칼슘(UBP, Ultra-BlendTM plus), 2종류의 premixed MTA(Endocem MTA® premixed regular [EMPR] and Well-RootTM PT [WRP]). 각 재료의 시편은 경화 전, 경화 후 2군으로 나누어 준비한 뒤 증류수에 보관하였다. pH, 용해도를 측정하였으며 ICP-AES를 이용한 칼슘, 황, 스트론튬의 3가지 이온 유리량을 측정하였다. 경화 후 군에서 TLC와 UBP의 pH 값은 감소했다. 그러나 premixed MTA 재료의 pH 값은 증가했다. TLC는 다른 재료와 비교하여 스트론튬 이온 유리량이 더 많았다. 동시에 EMPR에서 황이온 유리량이 높았다(p < 0.05). 경화 후 군에서 칼슘 이온 방출은 두 종류의 premixed MTA에서 더 높았다(p < 0.05). 경화 후 군에서 용해도는 Kruskal-Wallis 서 test를 이용하여 통계분석하였고 Mann-Whitney U test를 이용하여 사후검정하였다. 결론적으로 레진 강화형 칼슘 실리케이트 시멘트, 레진 강화형 수산화칼슘 시멘트, 2종류의 premixed MTAs 모두 경화 후 알칼리성 pH 값과 낮은 용해도를 가지고 있었으며 다양한 이온을 유리했다.

A micro-computed tomography evaluation of voids using calcium silicate-based materials in teeth with simulated internal root resorption

  • Tek, Vildan;Turker, Sevinc Aktemur
    • Restorative Dentistry and Endodontics
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    • 제45권1호
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    • pp.5.1-5.8
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    • 2020
  • Objectives: The obturation quality of MTA, Biodentine, Total Fill BC root canal sealer (RCS), and warm gutta-percha (WGP) in teeth with simulated internal root resorption (IRR) was evaluated by using micro-computed tomography. Materials and Methods: Standardized IRR cavities were created using 40 extracted maxillary central incisor teeth and randomly assigned into 4 groups (n = 10). IRR cavities were filled with MTA, Biodentine, Total Fill BC RCS (bulk-fill form) and WGP + Total Fill BC RCS. Percentage of voids between resorptive cavity walls and obturation material (external void), and inside the filling materials (internal voids) were measured. Results: Total Fill BC sealer in the bulk-fill form presented significantly highest values of external and internal void percentages (p < 0.05). Biodentine showed a significantly lowest external void percentage (p < 0.05). WGP + Total Fill BC RCS presented significantly lower values of internal void percentages than all groups (p < 0.05), except Biodentine (p > 0.05). Conclusion: None of the filling materials were created void-free obturation in resorption cavities. Biodentine may favor its application in teeth with IRR over Angelus MTA and bulkfill form of Total Fill BC.

Effects of different calcium-silicate based materials on fracture resistance of immature permanent teeth with replacement root resorption and osteoclastogenesis

  • Gabriela Leite de Souza;Gabrielle Alves Nunes Freitas;Maria Tereza Hordones Ribeiro;Nelly Xiomara Alvarado Lemus;Carlos Jose Soares;Camilla Christian Gomes Moura
    • Restorative Dentistry and Endodontics
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    • 제48권2호
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    • pp.21.1-21.15
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    • 2023
  • Objectives: This study evaluated the effects of Biodentine (BD), Bio-C Repair (BCR), and mineral trioxide aggregate (MTA) plug on the fracture resistance of simulated immature teeth with replacement root resorption (RRR) and in vitro-induced osteoclastogenesis. Materials and Methods: Sixty bovine incisors simulating immature teeth and RRR were divided into 5 groups: BD and BCR groups, with samples completely filled with the respective materials; MTA group, which utilized a 3-mm apical MTA plug; RRR group, which received no root canal filling; and normal periodontal ligament (PL) group, which had no RRR and no root canal filling. All the teeth underwent cycling loading, and compression strength testing was performed using a universal testing machine. RAW 264.7 macrophages were treated with 1:16 extracts of BD, BCR, and MTA containing receptor activator of nuclear factor-kappa B ligand (RANKL) for 5 days. RANKL-induced osteoclast differentiation was assessed by staining with tartrate-resistant acid phosphatase. The fracture load and osteoclast number were analyzed using 1-way ANOVA and Tukey's test (α = 0.05). Results: No significant difference in fracture resistance was observed among the groups (p > 0.05). All materials similarly inhibited osteoclastogenesis (p > 0.05), except for BCR, which led to a lower percentage of osteoclasts than did MTA (p < 0.0001). Conclusions: The treatment options for non-vital immature teeth with RRR did not strengthen the teeth and promoted a similar resistance to fractures in all cases. BD, MTA, and BCR showed inhibitory effects on osteoclast differentiation, with BCR yielding improved results compared to the other materials.

Comparative analysis of bond strength to root dentin and compression of bioceramic cements used in regenerative endodontic procedures

  • Maykely Naara Morais Rodrigues;Kely Firmino Bruno;Ana Helena Goncalves de Alencar;Julyana Dumas Santos Silva;Patricia Correia de Siqueira;Daniel de Almeida Decurcio;Carlos Estrela
    • Restorative Dentistry and Endodontics
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    • 제46권4호
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    • pp.59.1-59.14
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    • 2021
  • Objectives: This study compared the Biodentine, MTA Repair HP, and Bio-C Repair bioceramics in terms of bond strength to dentin, failure mode, and compression. Materials and Methods: Fifty-four slices obtained from the cervical third of 18 single-rooted human mandibular premolars were randomly distributed (n = 18). After insertion of the bioceramic materials, the push-out test was performed. The failure mode was analyzed using stereomicroscopy. Another set of cylindrically-shaped bioceramic samples (n = 10) was prepared for compressive strength testing. The normality of data distribution was analyzed using the Shapiro-Wilk test. The Kruskal-Wallis and Friedman tests were used for the push-out test data, while compressive strength was analyzed with analysis of variance and the Tukey test, considering a significance level of 0.05. Results: Biodentine presented a higher median bond strength value (14.79 MPa) than MTA Repair HP (8.84 MPa) and Bio-C Repair (3.48 MPa), with a significant difference only between Biodentine and Bio-C Repair. In the Biodentine group, the most frequent failure mode was mixed (61%), while in the MTA Repair HP and Bio-C Repair groups, it was adhesive (94% and 72%, respectively). Biodentine showed greater resistance to compression (29.59 ± 8.47 MPa) than MTA Repair HP (18.68 ± 7.40 MPa) and Bio-C Repair (19.96 ± 3.96 MPa) (p < 0.05). Conclusions: Biodentine showed greater compressive strength than MTA Repair HP and Bio-C Repair, and greater bond strength than Bio-C Repair. The most frequent failure mode of Biodentine was mixed, while that of MTA Repair HP and Bio-C Repair was adhesive.

Push-out bond strength and marginal adaptation of apical plugs with bioactive endodontic cements in simulated immature teeth

  • Maria Aparecida Barbosa de Sa;Eduardo Nunes ;Alberto Nogueira da Gama Antunes ;Manoel Brito Junior ;Martinho Campolina Rebello Horta ;Rodrigo Rodrigues Amaral;Stephen Cohen ;Frank Ferreira Silveira
    • Restorative Dentistry and Endodontics
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    • 제46권4호
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    • pp.53.1-53.11
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    • 2021
  • Objectives: This study evaluates the bond strength and marginal adaptation of mineral trioxide aggregate (MTA) Repair HP and Biodentine used as apical plugs; MTA was used as reference material for comparison. Materials and Methods: A total of 30 single-rooted teeth with standardized, artificially created open apices were randomly divided into 3 groups (n = 10 per group), according to the material used to form 6-mm-thick apical plugs: group 1 (MTA Repair HP); group 2 (Biodentine); and group 3 (white MTA). Subsequently, the specimens were transversely sectioned to obtain 2 (cervical and apical) 2.5-mm-thick slices per root. Epoxy resin replicas were observed under a scanning electron microscope to measure the gap size at the material/dentin interface (the largest and smaller gaps were recorded for each replica). The bond strength of the investigated materials to dentin was determined using the push-out test. The variable bond strengths and gap sizes were evaluated independently at the apical and cervical root dentin slices. Data were analyzed using descriptive and analytic statistics. Results: The comparison between the groups regarding the variables' bond strengths and gap sizes showed no statistical difference (p > 0.05) except for a single difference in the smallest gap at the cervical root dentin slice, which was higher in group 3 than in group 1 (p < 0.05). Conclusions: The bond strength and marginal adaptation to root canal walls of MTA HP and Biodentine cement were comparable to white MTA.

포졸란 시멘트를 기반으로 하는 근관전색제의 치근단부 미세누출 평가 (Microleakage Assessment of a Pozzolan Cement-based Mineral Trioxide Aggregate Root Canal Sealer)

  • 김미준;박호원;이주현;서현우
    • 대한소아치과학회지
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    • 제44권1호
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    • pp.20-27
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    • 2017
  • 본 연구는 포졸란 시멘트를 기반으로 하는 근관전색제인 Endoseal MTA (Maruchi, Wonju, Korea)를 근관전색제와 근관충전제로 사용하였을 때 나타나는 치근단부 미세누출을 기존의 근관전색제인 AH $Plus^{(R)}$ (Dentsply DeTrey, Konstanz, Germany)와 비교하여 평가하고자 하였다. 만곡되지 않은 영구 전치를 3개의 실험군(A군, E1군, E2군)으로 나누고 A군은 AH $Plus^{(R)}$와 gutta-percha (GP), E1군 은 Endoseal MTA와 GP, E2군은 Endoseal MTA 단독으로 충전하였다. 충전이 완료된 치아는 완전한 경화를 위해 24시간동안 멸균 증류수에 보관하였고 염색액 누출을 위해 치근단 부위를 0.2% 로다민 B 염색 용액에 24시간 동안 노출시켰다. 입체 현미경을 이용하여 미세누출 정도를 평가하였으며 3개의 실험군 사이에 유의한 차이가 관찰되지 않았다. 결론적으로 Endoseal MTA는 GP의 사용에 관계 없이 AH $Plus^{(R)}$와 유사한 밀폐력을 보였으며 이러한 결과는 Endoseal MTA의 근관전색제 및 근관 충전제로써 유용한 사용에 대한 가능성을 제시한다.

Comparative analysis of physicochemical properties of root perforation sealer materials

  • Orcati Dorileo, Maura Cristiane Goncales;Pedro, Fabio Luis Miranda;Bandeca, Matheus Coelho;Guedes, Orlando Aguirre;Villa, Ricardo Dalla;Borges, Alvaro Henrique
    • Restorative Dentistry and Endodontics
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    • 제39권3호
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    • pp.201-209
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    • 2014
  • Objectives: This study evaluated the solubility, dimensional alteration, pH, electrical conductivity, and radiopacity of root perforation sealer materials. Materials and Methods: For the pH test, the samples were immersed in distilled water for different periods of time. Then, the samples were retained in plastic recipients, and the electrical conductivity of the solution was measured. The solubility, dimensional alteration, and radiopacity properties were evaluated according to Specification No. 57 of the American National Standards Institute/American Dental Association (ANSI/ADA). Statistical analyses were carried out using analysis of variance (ANOVA) and Tukey's test at a significance level of 5%. When the sample distribution was not normal, a nonparametric ANOVA was performed with a Kruskal-Wallis test (${\alpha}$ = 0.05). Results: The results showed that white structural Portland cement (PC) had the highest solubility, while mineral trioxide aggregate (MTA)-based cements, ProRoot MTA (Dentsply-Tulsa Dental) and MTA BIO ($\hat{A}$ngelus Ind. Prod.), had the lowest values. MTA BIO showed the lowest dimensional alteration values and white PC presented the highest values. No differences among the tested materials were observed in the the pH and electrical conductivity analyses. Only the MTA-based cements met the ANSI/ADA recommendations regarding radiopacity, overcoming the three steps of the aluminum step wedge. Conclusions: On the basis of these results, we concluded that the values of solubility and dimensional alteration of the materials were in accordance with the ANSI/ADA specifications. PCs did not fulfill the ANSI/ADA requirements regarding radiopacity. No differences were observed among the materials with respect to the pH and electrical conductivity analyses.

Push-out bond strength and intratubular biomineralization of a hydraulic root-end filling material premixed with dimethyl sulfoxide as a vehicle

  • Ju-Ha Park;Hee-Jin Kim;Kwang-Won Lee;Mi-Kyung Yu;Kyung-San Min
    • Restorative Dentistry and Endodontics
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    • 제48권1호
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    • pp.8.1-8.8
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    • 2023
  • Objectives: This study was designed to evaluate the parameters of bonding performance to root dentin, including push-out bond strength and dentinal tubular biomineralization, of a hydraulic bioceramic root-end filling material premixed with dimethyl sulfoxide (Endocem MTA Premixed) in comparison to a conventional powder-liquid-type cement (ProRoot MTA). Materials and Methods: The root canal of a single-rooted premolar was filled with either ProRoot MTA or Endocem MTA Premixed (n = 15). A slice of dentin was obtained from each root. Using the sliced specimen, the push-out bond strength was measured, and the failure pattern was observed under a stereomicroscope. The apical segment was divided into halves; the split surface was observed under a scanning electron microscope, and intratubular biomineralization was examined by observing the precipitates formed in the dentinal tubule. Then, the chemical characteristics of the precipitates were evaluated with energy-dispersive X-ray spectroscopic (EDS) analysis. The data were analyzed using the Student's t-test followed by the Mann-Whitney U test (p < 0.05). Results: No significant difference was found between the 2 tested groups in push-out bond strength, and cohesive failure was the predominant failure type. In both groups, flake-shaped precipitates were observed along dentinal tubules. The EDS analysis indicated that the mass percentage of calcium and phosphorus in the precipitate was similar to that found in hydroxyapatite. Conclusions: Regarding bonding to root dentin, Endocem MTA Premixed may have potential for use as an acceptable root-end filling material.

Bioactivity of endodontic biomaterials on dental pulp stem cells through dentin

  • Javid, Bahar;Panahandeh, Narges;Torabzadeh, Hassan;Nazarian, Hamid;Parhizkar, Ardavan;Asgary, Saeed
    • Restorative Dentistry and Endodontics
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    • 제45권1호
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    • pp.3.1-3.10
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    • 2020
  • Objectives: This study investigated the indirect effect of calcium-enriched mixture (CEM) cement and mineral trioxide aggregate (MTA), as 2 calcium silicate-based hydraulic cements, on human dental pulp stem cells (hDPSCs) through different dentin thicknesses. Materials and Methods: Two-chamber setups were designed to simulate indirect pulp capping (IPC). Human molars were sectioned to obtain 0.1-, 0.3-, and 0.5-mm-thick dentin discs, which were placed between the 2 chambers to simulate an IPC procedure. Then, MTA and CEM were applied on one side of the discs, while hDPSCs were cultured on the other side. After 2 weeks of incubation, the cells were removed, and cell proliferation, morphology, and attachment to the discs were evaluated under scanning electron microscopy (SEM). Energy-dispersive X-ray (EDXA) spectroscopy was performed for elemental analysis. Alkaline phosphatase (ALP) activity was assessed quantitatively. The data were analyzed using the Kruskal-Wallis and Mann-Whitney tests. Results: SEM micrographs revealed elongated cells, collagen fibers, and calcified nucleations in all samples. EDXA verified that the calcified nucleations consisted of calcium phosphate. The largest calcifications were seen in the 0.1-mm-thick dentin subgroups. There was no significant difference in ALP activity across the CEM subgroups; however, ALP activity was significantly lower in the 0.1-mm-thick dentin subgroup than in the other MTA subgroups (p < 0.05). Conclusions: The employed capping biomaterials exerted biological activity on hDPSCs, as shown by cell proliferation, morphology, and attachment and calcific precipitations, through 0.1- to 0.5-mm-thick layers of dentin. In IPC, the bioactivity of these endodontic biomaterials is probably beneficial.