X-ray diffraction analysis of MTA-Plus, MTA-Angelus and DiaRoot BioAggregate

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X-ray diffraction analysis of MTA-Plus, MTA-Angelus and DiaRoot BioAggregate

OBJECTIVE The purpose of this study was to investigate and compare the crystalline structures of recently released MTA Plus (MTA-P), MTA Angelus (MTA-A), DiaRoot BioAggregate (BA) by X-ray diffraction (XRD) analysis. MATERIALS AND METHODS Phase analysis was carried out on powder and set forms of tested materials. The powder specimens placed into sample holders that were packed with a glass sl...

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X-Ray diffraction analysis of white ProRoot MTA and Diadent BioAggregate.

BioAggregate is a new product that was formulated for root-end filling, perforation repair, and pulp capping. This study examined the chemical differences between white mineral trioxide aggregate (MTA) and BioAggregate in both powder and set forms using X-ray diffraction. The results showed that white MTA and BioAggregate have a similar chemical composition with some differences: BioAggregate c...

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Evaluation of antibacterial and antifungal activity of calcium silicate based retrograde filling materials

The aim of this study was to compare the antimicrobial and antifungal activity of MTA Angelus, Biodentine and DiaRoot BioAggregate tricalcium silicate based retrograde filling materials with agar diffusion test (ADT) method. Enterococcus faecalis and Candida albicans standard bacterial strains were used. 100 μl was taken from liquid cultures of E. faecalis and planted in Mueller Hinton agar and...

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Deconvolution of the particle size distribution of ProRoot MTA and MTA Angelus

Objective Mineral trioxide aggregate (MTA) cements contain two types of particles, namely Portland cement (PC) (nominally 80% w/w) and bismuth oxide (BO) (20%). This study aims to determine the particle size distribution (PSD) of PC and BO found in MTA. Materials and methods The PSDs of ProRoot MTA (MTA-P) and MTA Angelus (MTA-A) powder were determined using laser diffraction, and compared to s...

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In vitro evaluation of the cytotoxicity of ProRoot MTA and MTA Angelus.

The purpose of the present in vitro study was to compare the cytotoxic effect of two commercially available brands of mineral trioxide cement (ProRoot MTA and MTA Angelus), modified zinc oxide-eugenol cement (SuperEBA) and resin-modified glass ionomer cement (Vitrebond) using rat pulp cells (RPC-C2A) and human lung fibroblasts (MRC-5). The cells were cultured in typical culture conditions and e...

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ژورنال

عنوان ژورنال: European Journal of Dentistry

سال: 2014

ISSN: 1305-7456,1305-7464

DOI: 10.4103/2278-344x.130603