Related Experiment Video
Updated: May 2, 2026

Accessing the Cytotoxicity and Cell Response to Biomaterials
Published on: July 8, 2021
Effect of Intracanal Medications on Cell Adhesion, Viability, and Differentiation During Regenerative Endodontic
Arian Braido1, Luisa Coutinho Cardim1, Aline Cristine Gomes Matta1
1Department of Restorative Dentistry, School of Dentistry of Piracicaba, State University of Campinas, São Paulo, Brazil.
Introduction:
Intracanal medications used during regenerative endodontic procedures may influence the biological behavior of stem cells through changes in the dentin microenvironment. Understanding these effects is essential for optimizing regenerative outcomes.
Objective:
This systematic review aimed to answer the following PICO (Population, Intervention, Comparison, Outcome, and Study design) question: Does dentin conditioning with different intracanal medications alter the adhesion, migration, and differentiation of undifferentiated cells during regenerative endodontic therapy?
Methods:
A comprehensive search was performed in PubMed, Embase, Scopus, LILACS, and Web of Science up to May 2025. Gray literature was screened through Google Scholar and ProQuest. In vitro studies evaluating the effects of dentin conditioning with intracanal medications on cell behavior (proliferation, adhesion, migration, and differentiation) were included. Two reviewers independently conducted study selection, data extraction, and risk of bias assessment using the RoBDEMAT tool. Data were qualitatively synthesized.
Results:
From 2620 retrieved records, 12 studies fulfilled the eligibility criteria. Most studies used human root dentin as a substrate and tested calcium hydroxide-based formulations, triple antibiotic paste, or double antibiotic paste; others evaluated silver nanoparticles, calcium hypochlorite, Bio-C Temp, or antibiotic-containing fibers. Dental pulp stem cells were most frequently used, followed by apical papilla, deciduous tooth, and periodontal ligament stem cells. Conditioning times ranged from 7 to 28 days. Calcium hydroxide showed the most favorable outcomes for cell adhesion, morphology, and proliferation. Lower antibiotic concentrations (1 mg/mL) demonstrated acceptable biocompatibility. Only one study assessed cell differentiation, showing increased dentin matrix protein-1 and DSPP expression after calcium hydroxide conditioning; none evaluated cell migration.
Conclusions:
Calcium hydroxide exhibited the most consistent and favorable biological responses. Triple antibiotic paste and double antibiotic paste showed concentration-dependent cytotoxicity; however, more robust evidence is needed to clarify how intracanal medications influence cell behavior on conditioned dentin.
More Related Videos
07:07Development of a Direct Pulp-capping Model for the Evaluation of Pulpal Wound Healing and Reparative Dentin Formation in Mice
Published on: January 12, 2017
07:14Guided Endodontics: Three-Dimensional Planning and Template-Aided Preparation of Endodontic Access Cavities
Published on: May 24, 2022