Recently, pre-mixed bioceramics in fast set formulations have been increasingly utilized in clinical practice as an alternative to mineral trioxide aggregate (MTA) for their shorter setting time and better handling properties. However, the impact on their osteogenic potential, due to modifications in chemical composition to promote a fast setting, is still unclear. This molecular and in vitro study compared the osteogenic potential of root repairing material putty fast set (FSP) with root-repairing material putty (RRMPU), root-repairing material paste (RRMPA), Biodentine\u2122 and MTA. The null hypothesis tested was that there are no differences among the tricalcium silicate materials in terms of osteogenic potential. Standardized discs wer...
Tricalcium silicate cements (TSC), are bioactive ceramic materials with a wide range of clinical app...
AbstractBackground/purposeCementogenesis is a critical event in the repair of endodontic perforation...
Objectives Calcium silicate cements are biocompatible dental materials applicable in contact with vi...
Recently, pre-mixed bioceramics in fast set formulations have been increasingly utilized in clinical...
Abstract Calcium silicate-based cements differ markedly in their radiopacifiers and the presence of ...
The authors also wish to express their appreciation to Beatrice Burdin, PhD, at the Microstructures ...
Aim: The aim of this study was to evaluate the bioactivity of Pro Root MTA (Dentsply, USA) and Biode...
Premixed calcium silicate-based cements (CSCs) and fast-set CSCs were developed for the convenience ...
The aim of this study is to compare the osteogenic differentiation capacity of the dental pulp pluri...
Tricalcium silicate cements have been successfully employed in the biomedical field as bioactive bon...
New bioactive materials have been developed for retrograde root filling. These materials come into c...
Abstract Calcium silicate-based materials have been widely studied due to their resemblance to, and ...
Dentistry-applied bioceramic materials are ceramic materials that are categorized as bioinert, bioac...
Aim: Calcium silicate-based materials are hydraulic self-setting materials with physico-chemical pro...
Abstract: Aim: Calcium silicate-based materials are hydraulic self-setting materials with physico-ch...
Tricalcium silicate cements (TSC), are bioactive ceramic materials with a wide range of clinical app...
AbstractBackground/purposeCementogenesis is a critical event in the repair of endodontic perforation...
Objectives Calcium silicate cements are biocompatible dental materials applicable in contact with vi...
Recently, pre-mixed bioceramics in fast set formulations have been increasingly utilized in clinical...
Abstract Calcium silicate-based cements differ markedly in their radiopacifiers and the presence of ...
The authors also wish to express their appreciation to Beatrice Burdin, PhD, at the Microstructures ...
Aim: The aim of this study was to evaluate the bioactivity of Pro Root MTA (Dentsply, USA) and Biode...
Premixed calcium silicate-based cements (CSCs) and fast-set CSCs were developed for the convenience ...
The aim of this study is to compare the osteogenic differentiation capacity of the dental pulp pluri...
Tricalcium silicate cements have been successfully employed in the biomedical field as bioactive bon...
New bioactive materials have been developed for retrograde root filling. These materials come into c...
Abstract Calcium silicate-based materials have been widely studied due to their resemblance to, and ...
Dentistry-applied bioceramic materials are ceramic materials that are categorized as bioinert, bioac...
Aim: Calcium silicate-based materials are hydraulic self-setting materials with physico-chemical pro...
Abstract: Aim: Calcium silicate-based materials are hydraulic self-setting materials with physico-ch...
Tricalcium silicate cements (TSC), are bioactive ceramic materials with a wide range of clinical app...
AbstractBackground/purposeCementogenesis is a critical event in the repair of endodontic perforation...
Objectives Calcium silicate cements are biocompatible dental materials applicable in contact with vi...