Introduction: This study aims to develop and characterize the regenerative potential of an atelopeptidized treated dentin matrix xenograft using in vitro and in vivo models. Methods: Freshly extracted bovine dentin was pulverized into 250- to 500-mu m particles and demineralized with 17% EDTA for 1, 7, and 13 days. The samples were atelopeptidized with pepsin. The degree of demineralization and the effect of atelopeptidization were assessed using field emission scanning electron microscopy combined with energy-dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy, respectively. The expression of dentin matrix acidic phosphoprotein 1, dentin sialophosphoprotein, and osteopontin was evaluated in dental pulp stem cells usin...
Purpose: This work evaluated the osteoconductive properties of autogenous demineralized dentin matri...
WOS: 000404458100052PubMed ID: 27901202This study was designed to determine the in vivo performance ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66570/2/10.1177_08959374950090030501.pd
Introduction: Dentin sialoprotein (DSP) is a dentin extracellular matrix protein, a unique marker of...
Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable of directi...
Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable of directi...
Bioactive growth factors identified within the extracellular matrix of dentine have been proposed ro...
Abstract: Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable ...
Introduction: Compelling evidence pinpoints that pulp tissue engineering after the transplantation o...
OBJECTIVES:This study aimed to examine the influence of particle size and extent of demineralization...
The aim of this in vitro study was to investigate the commitment and behavior of dental pulp stem ce...
ABSTRACT: Molecular biology is providing opportunities to develop new strategies or agents for the t...
Autologous dentin is frequently used in guided bone regeneration due to its osteoinductive propertie...
Signaling molecules play an essential role in tissue engineering because they regulate regenerative ...
The aim of this systematic review was to evaluate the application of potential therapeutic signaling...
Purpose: This work evaluated the osteoconductive properties of autogenous demineralized dentin matri...
WOS: 000404458100052PubMed ID: 27901202This study was designed to determine the in vivo performance ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66570/2/10.1177_08959374950090030501.pd
Introduction: Dentin sialoprotein (DSP) is a dentin extracellular matrix protein, a unique marker of...
Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable of directi...
Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable of directi...
Bioactive growth factors identified within the extracellular matrix of dentine have been proposed ro...
Abstract: Studies have shown that dentin matrices contain reservoirs of bioactive molecules capable ...
Introduction: Compelling evidence pinpoints that pulp tissue engineering after the transplantation o...
OBJECTIVES:This study aimed to examine the influence of particle size and extent of demineralization...
The aim of this in vitro study was to investigate the commitment and behavior of dental pulp stem ce...
ABSTRACT: Molecular biology is providing opportunities to develop new strategies or agents for the t...
Autologous dentin is frequently used in guided bone regeneration due to its osteoinductive propertie...
Signaling molecules play an essential role in tissue engineering because they regulate regenerative ...
The aim of this systematic review was to evaluate the application of potential therapeutic signaling...
Purpose: This work evaluated the osteoconductive properties of autogenous demineralized dentin matri...
WOS: 000404458100052PubMed ID: 27901202This study was designed to determine the in vivo performance ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66570/2/10.1177_08959374950090030501.pd