Abstract Background In infected periapical tissues, Enterococcus faecalis is one of the most common dominant bacteria. Chlorhexidine has been proved to show strong antibacterial ability against E. faecalis but is ineffective in promoting mineralization for tissues around root apex. Mesoporous calcium-silicate nanoparticles are newly synthesized biomaterials with excellent ability to promote mineralization and carry-release bioactive molecules in a controlled manner. In this study, mesoporous calcium-silicate nanoparticles were functionalized with chlorhexidine and their releasing profile, antibacterial ability, effect on cell proliferation and in vitro mineralization property were evaluated. Results The chlorhexidine was successfully incorp...
Root canal system disinfection is limited due to anatomical complexities. Better delivery systems of...
Enterococcus faecalis presents high resistance to intracanal medications. The use of nanoparticulate...
Abstract Background Enterococcus faecalis (E. faecalis) is the most recovered species from the root ...
Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug del...
AIM OF THE STUDY: To evaluate the antibacterial effectiveness of mesoporous calcium silicate nanopa...
[[abstract]]Introduction: Calcium silicate (CS) –based materials play an important role in the devel...
Abstract Introduction Nanoparticles and associations to calcium hydroxide can be used to increase a...
One of the primary causes for the failure of glass ionomer cement (GIC) is secondary caries. To enha...
Background: Chlorhexidine (CHX) is a widely used antimicrobial agent in dentistry. Herein, we report...
The aim of this study is to develop a new intra-canal disinfectant-carrier for infected canal treatm...
Wei Fan,1,* Daming Wu,1,* Franklin R Tay,2 Tengjiao Ma,1 Yujie Wu,1 Bing Fan1 1The State Key Labora...
Introduction: Enterococcus faecalis (E. faecalis) has the ability to invade the dentinal tubules and...
The aim of our study was to explore the potential value of metallic (Ag, Cu, and Zn) salts, polymer/...
Root canal system disinfection is limited due to anatomical complexities. Better delivery systems of...
This study explores the delivery of novel calcium hydroxide [Ca(OH)2] microparticles loaded with chl...
Root canal system disinfection is limited due to anatomical complexities. Better delivery systems of...
Enterococcus faecalis presents high resistance to intracanal medications. The use of nanoparticulate...
Abstract Background Enterococcus faecalis (E. faecalis) is the most recovered species from the root ...
Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug del...
AIM OF THE STUDY: To evaluate the antibacterial effectiveness of mesoporous calcium silicate nanopa...
[[abstract]]Introduction: Calcium silicate (CS) –based materials play an important role in the devel...
Abstract Introduction Nanoparticles and associations to calcium hydroxide can be used to increase a...
One of the primary causes for the failure of glass ionomer cement (GIC) is secondary caries. To enha...
Background: Chlorhexidine (CHX) is a widely used antimicrobial agent in dentistry. Herein, we report...
The aim of this study is to develop a new intra-canal disinfectant-carrier for infected canal treatm...
Wei Fan,1,* Daming Wu,1,* Franklin R Tay,2 Tengjiao Ma,1 Yujie Wu,1 Bing Fan1 1The State Key Labora...
Introduction: Enterococcus faecalis (E. faecalis) has the ability to invade the dentinal tubules and...
The aim of our study was to explore the potential value of metallic (Ag, Cu, and Zn) salts, polymer/...
Root canal system disinfection is limited due to anatomical complexities. Better delivery systems of...
This study explores the delivery of novel calcium hydroxide [Ca(OH)2] microparticles loaded with chl...
Root canal system disinfection is limited due to anatomical complexities. Better delivery systems of...
Enterococcus faecalis presents high resistance to intracanal medications. The use of nanoparticulate...
Abstract Background Enterococcus faecalis (E. faecalis) is the most recovered species from the root ...