OBJECTIVES: This study aimed at evaluating the therapeutic bioactive effects on the bond strength of three experimental bonding agents containing modified Portland cement-based micro-fillers applied to acid-etched dentin and submitted to aging in simulated body fluid solution (SBS). Confocal laser (CLSM) and scanning electron microscopy (SEM) were also performed. METHODS: A type-I ordinary Portland cement was tailored using different compounds such as sodium-calcium-aluminum-magnesium silicate hydroxide (HOPC), aluminum-magnesium-carbonate hydroxide hydrates (HCPMM) and titanium oxide (HPCTO) to create three bioactive micro-fillers. A resin blend mainly constituted by Bis-GMA, PMDM and HEMA was used as control (RES-Ctr) or mixed with each ...
Background: Calcium-silicate-based cements (CSC) have gained an increasing scientific and clinical r...
Background: Class ll sandwich restorations are routinely performed where conventional Glass ionomer ...
Objectives: Calcium-silicate cements based on MTA (Mineral Trioxide Aggregate) demonstrated excellen...
OBJECTIVES: This study aimed at evaluating the therapeutic bioactive effects on the bond strength of...
none9siOBJECTIVES: This study aimed at evaluating the therapeutic bioactive effects on the bond stre...
Objectives. This study aimed at evaluating the therapeutic bioactive effects on the bond strength of...
This study aimed at evaluating the therapeutic remineralising effects of innovative light-curable ma...
This study aimed in evaluating the effects of two experimental resin bonding systems containing conv...
Objectives: This study examined the bonding performance and dentin remineralization potential of an ...
This study evaluated, through microtensile bond strength (μTBS) testing, the bioactive effects of a ...
Objective: The study aimed at evaluating the remineralization of acid-etched dentin pre-treated with...
This study examined the bonding performance and dentin remineralization potential of an experimental...
Objective: The study aimed at evaluating the remineralization of acid-etched dentin pre-treated with...
The purpose of this study was to evaluate the microtensile bond strength (mu TBS) and Knoop hardness...
Objectives. The study aimed at evaluating the remineralization of acid-etched dentin pre-treated wit...
Background: Calcium-silicate-based cements (CSC) have gained an increasing scientific and clinical r...
Background: Class ll sandwich restorations are routinely performed where conventional Glass ionomer ...
Objectives: Calcium-silicate cements based on MTA (Mineral Trioxide Aggregate) demonstrated excellen...
OBJECTIVES: This study aimed at evaluating the therapeutic bioactive effects on the bond strength of...
none9siOBJECTIVES: This study aimed at evaluating the therapeutic bioactive effects on the bond stre...
Objectives. This study aimed at evaluating the therapeutic bioactive effects on the bond strength of...
This study aimed at evaluating the therapeutic remineralising effects of innovative light-curable ma...
This study aimed in evaluating the effects of two experimental resin bonding systems containing conv...
Objectives: This study examined the bonding performance and dentin remineralization potential of an ...
This study evaluated, through microtensile bond strength (μTBS) testing, the bioactive effects of a ...
Objective: The study aimed at evaluating the remineralization of acid-etched dentin pre-treated with...
This study examined the bonding performance and dentin remineralization potential of an experimental...
Objective: The study aimed at evaluating the remineralization of acid-etched dentin pre-treated with...
The purpose of this study was to evaluate the microtensile bond strength (mu TBS) and Knoop hardness...
Objectives. The study aimed at evaluating the remineralization of acid-etched dentin pre-treated wit...
Background: Calcium-silicate-based cements (CSC) have gained an increasing scientific and clinical r...
Background: Class ll sandwich restorations are routinely performed where conventional Glass ionomer ...
Objectives: Calcium-silicate cements based on MTA (Mineral Trioxide Aggregate) demonstrated excellen...