4.6 Article

Histological evaluation of direct pulp capping of rat pulp with experimentally developed low-viscosity adhesives containing reparative dentin-promoting agents

Journal

JOURNAL OF DENTISTRY
Volume 44, Issue -, Pages 27-36

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jdent.2015.11.005

Keywords

Direct pulp capping; Adhesive resin system; Calcium chloride; Dentin matrix protein 1; Nanofiller

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Objectives: This study examines the wound healing process in exposed rat pulp when capped with experimental adhesive resin systems. Methods: Experimental adhesive resin system for direct pulp capping was composed of primer-I (PI), -II (PII), and -III (PIII) and an experimental bonding agent (EBA). PI was Clearfil (R) SE Bond (R)/Primer (CSP) containing 5.0 wt% CaCl2, PII was PI containing 10 wt% nanofiller (Aerosil (R) 380), and PIII was CSP containing 5.0 wt% of compounds of equal moles of synthetic peptides (pA and pB) derived from dentin matrix protein 1. EBA was Clearfil (R) SE Bond (R)/Bond (CSB) containing 10 wt% hydroxyapatite powders. Three experimental groups were designed. PI was assigned to experimental Groups 1 and 3. PII was assigned to experimental Groups 2 and 3. PIII and EBA were assigned to all experimental adhesive groups. Control teeth were capped with calcium hydroxide preparation (Dycal (R)), and CSP and CSB were applied to the cavity. The rats were sacrificed after each observation period (14, 28, 56, and 112 days). The following parameters were evaluated: pulp tissue disorganization, inflammatory cell infiltration, reparative dentin formation (RDF), and bacterial penetration. Results: There were no significant differences among all the groups for all parameters and all observation periods (p > 0.05, Kruskal-Wallis test). All groups showed initial RDF at 14 days postoperatively and extensive RDF until 112 days postoperatively. Groups 2 and 3 demonstrated higher quantity of mineralized dentin bridge formation compared with Group 1. Conclusions: Addition of nanofillers to the primer was effective in promoting high-density RDF. (C) 2015 Elsevier Ltd. All rights reserved.

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