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含磷酸铌生物玻璃的实验性牙胶尖的根尖封闭性与生物活性

Apical Sealing and Bioactivity of an Experimental Gutta-Percha Containing Niobium Phosphate Bioglass.

作者信息

Sampaio Ruan Ferreira, Carvalho Ceci Nunes, Bradaschia-Correa Vivian, Gonçalves Bruna Laís Lins, Arana-Chavez Victor, Carvalho Alexandre P Lima de, Nogueira Amanda Palmeira Arruda, Grazziotin-Soares Renata, Bauer José, Gavini Giulio, Carvalho Edilausson Moreno

机构信息

Dentistry Postgraduate Program, University Ceuma, R. Josué Montello, 1, Renascença II, São Luís 65075-120, Brazil.

Pathology Core, The Centre for Phenogenomics, 25 Orde St, Toronto, ON M5T 3H7, Canada.

出版信息

Polymers (Basel). 2023 Mar 28;15(7):1679. doi: 10.3390/polym15071679.

Abstract

This study evaluated the apical sealing ability and bioactivity of an experimental gutta-percha containing niobium phosphate bioglass. Thirty-six human premolars were endodontically prepared and divided into three groups: GPC-filling with conventional gutta-percha; GBC-filling with bioceramic gutta-percha (EndoSequence BC); GNB-filling with experimental gutta-percha containing niobophosphate. Teeth were stored in tubes containing 2 mL of simulated body fluid (SBF) solution in an oven for 30 days. Then, the samples were immersed in lanthanum nitrate solution and analyzed for apical nanoleakage (NI) with a scanning electron microscope (SEM/EDS) and transmission electron microscope (TEM). Gutta-percha specimens were immersed for 28 days (SBF) and analyzed in SEM/EDS and X-ray diffraction (XRD) to assess bioactivity. NI data originated from the SEM/EDS were analyzed using the Kruskal-Wallis test (α = 5%). NI data originated from TEM and bioactivity were descriptively reported. Statistical analysis did not detect a significant difference between groups ( = 0.13) for NI. In the bioactivity analysis, an abundant layer of hydroxyapatite was identified only in the surface of the GNB group samples. The gutta-percha containing niobophosphate bioglass promoted an apical sealing similar to EndoSequence BC, in addition to demonstrating bioactivity through the deposition of hydroxyapatite on the surface of the material after immersion in SBF.

摘要

本研究评估了一种含磷酸铌生物玻璃的实验性牙胶尖的根尖封闭能力和生物活性。选取36颗人前磨牙进行根管预备,并分为三组:GPC组,用传统牙胶尖充填;GBC组,用生物陶瓷牙胶尖(EndoSequence BC)充填;GNB组,用含磷酸铌的实验性牙胶尖充填。将牙齿置于装有2 mL模拟体液(SBF)溶液的试管中,在烘箱中保存30天。然后,将样本浸入硝酸镧溶液中,用扫描电子显微镜(SEM/EDS)和透射电子显微镜(TEM)分析根尖微渗漏(NI)情况。将牙胶尖标本浸入SBF中28天,并用SEM/EDS和X射线衍射(XRD)进行分析,以评估生物活性。采用Kruskal-Wallis检验(α = 5%)分析源自SEM/EDS的NI数据。对源自TEM的NI数据和生物活性进行描述性报告。统计分析未检测到各组之间NI的显著差异( = 0.13)。在生物活性分析中,仅在GNB组样本表面发现一层丰富的羟基磷灰石。含磷酸铌生物玻璃的牙胶尖除了在浸入SBF后通过在材料表面沉积羟基磷灰石表现出生物活性外,还能促进与EndoSequence BC相似的根尖封闭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bca4/10097297/809b4167f8be/polymers-15-01679-g001.jpg

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