Enamel Matrix Derivative Promote Primary Human Pulp Cell Differentiation and Mineralization

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Enamel Matrix Derivative Promote Primary Human Pulp Cell Differentiation and Mineralization

Enamel matrix derivative (EMD) has been found to induce reactive dentin formation; however the molecular mechanisms involved are unclear. The effect of EMD (5-50 μg/mL) on primary human pulp cells were compared to untreated cells and cells incubated with 10⁻⁸ M dexamethasone (DEX) for 1, 2, 3, 7, and 14 days in culture. Expression analysis using Affymetrix microchips demonstrated that 10 μg/mL ...

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Histological Effects of Enamel Matrix Derivative on Exposed Dental Pulp.

INTRODUCTION Direct pulp capping procedure is a therapeutic application of a drug on exposed tooth pulp in order to ensure the closure of the pulp chamber and to allow the healing process to take place. OBJECTIVE The aim of this study was to examine the histological effects of Emdogain® on exposed tooth pulp of a Vietnamese pig (Sus scrofa verus). METHODS The study comprised 20 teeth of a V...

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Nitric oxide in pulp cell growth, differentiation, and mineralization.

Dental preparation sometimes causes transient congestion, edema, and necrosis of the pulp. We hypothesized that nitric oxide (NO) is involved in the pathophysiological changes in pulp after preparation. The mRNA and protein expression of the inducible isoform of NO synthase (iNOS) was examined in murine pulp after dental preparation. The effects of NO on the proliferation, mineralization, and a...

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Success Evaluation of Pulpotomy in Primary Molars with Enamel Matrix Derivative: a Pilot Study

Aim: To investigate the effect of Emdogain gel (EMD) in pulpotomized primary molars and its clinical and radiographic outcomes. Methods and Materials: In this   study, 18 lower second primary molars of nine children were treated by   pulpotomy. The teeth were randomly assigned to the EMD (experimental) and Formocresol (control) groups in each patient (split mouth). Following removal of the coro...

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In vitro differentiation and mineralization of dental pulp stem cells on enamel-like fluorapatite surfaces.

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ژورنال

عنوان ژورنال: International Journal of Molecular Sciences

سال: 2014

ISSN: 1422-0067

DOI: 10.3390/ijms15057731