The implementation of hydraulic calcium silicate-based endodontic cements (HCSCs) in biologically based endodontic procedures for the primary dentition has been recently investigated, focusing on the biological response of stem cells from human exfoliated deciduous teeth (SHEDs) towards them. The present systematic review aimed to present a qualitative synthesis of the available literature consisting of in vitro assays, which assessed the cytocompatibility and bioactive properties of HCSCs in direct contact with SHEDs. Following the PRISMA statement, an electronic database search was carried out in Medline, Scopus, Embase, Web of Science, and SciELO on March 31st and updated on November 16th, 2020. In vitro studies evaluating the biological...
Objective To investigate the in vitro cytocompatibility and osteogenic potential of an experimental ...
Background: Biodentine™ is relatively a new tricalcium silicate cement that has gained great attenti...
Calcium silicate-based cements have reached excellent levels of performance in endodontics, providin...
The implementation of hydraulic calcium silicate-based endodontic cements (HCSCs) in biologically ba...
International audienceBackground: Calcium silicate-based cements are biomaterials with calcium oxide...
Abstract Objective: The aim of the study was to evaluate the effects of the capping materials miner...
New bioactive materials have been developed for retrograde root filling. These materials come into c...
Introduction: The present in vitro study evaluated the cytotoxicity and bioactivity of commonly-used...
Calcium silicate-based cements are biomaterials with calcium oxide and carbonate filler additives. T...
Tricalcium silicate cements (TSC), are bioactive ceramic materials with a wide range of clinical app...
Objectives. In pulpal revascularization, a protective material is placed coronal to the blood clot t...
Premixed calcium silicate-based cements (CSCs) and fast-set CSCs were developed for the convenience ...
We compared calcium silicate-based pulp capping materials to conventional calcium hydroxide in terms...
The aim of this study is to compare the osteogenic differentiation capacity of the dental pulp pluri...
International audienceIntroduction: Tricalcium silicate based materials are recognized as bioactive ...
Objective To investigate the in vitro cytocompatibility and osteogenic potential of an experimental ...
Background: Biodentine™ is relatively a new tricalcium silicate cement that has gained great attenti...
Calcium silicate-based cements have reached excellent levels of performance in endodontics, providin...
The implementation of hydraulic calcium silicate-based endodontic cements (HCSCs) in biologically ba...
International audienceBackground: Calcium silicate-based cements are biomaterials with calcium oxide...
Abstract Objective: The aim of the study was to evaluate the effects of the capping materials miner...
New bioactive materials have been developed for retrograde root filling. These materials come into c...
Introduction: The present in vitro study evaluated the cytotoxicity and bioactivity of commonly-used...
Calcium silicate-based cements are biomaterials with calcium oxide and carbonate filler additives. T...
Tricalcium silicate cements (TSC), are bioactive ceramic materials with a wide range of clinical app...
Objectives. In pulpal revascularization, a protective material is placed coronal to the blood clot t...
Premixed calcium silicate-based cements (CSCs) and fast-set CSCs were developed for the convenience ...
We compared calcium silicate-based pulp capping materials to conventional calcium hydroxide in terms...
The aim of this study is to compare the osteogenic differentiation capacity of the dental pulp pluri...
International audienceIntroduction: Tricalcium silicate based materials are recognized as bioactive ...
Objective To investigate the in vitro cytocompatibility and osteogenic potential of an experimental ...
Background: Biodentine™ is relatively a new tricalcium silicate cement that has gained great attenti...
Calcium silicate-based cements have reached excellent levels of performance in endodontics, providin...