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Venkateshbabu Nagendrababu 2 Articles
Antimicrobial efficacy of QMix on Enterococcus faecalis infected root canals: a systematic review of in vitro studies
Benjamin Syek Hur Lim, Abhishek Parolia, Margaret Soo Yee Chia, Jayakumar Jayaraman, Venkateshbabu Nagendrababu
Restor Dent Endod 2020;45(2):e23.   Published online March 11, 2020
DOI: https://doi.org/10.5395/rde.2020.45.e23
AbstractAbstract PDFPubReaderePub
Objectives

This study aimed to summarize the outcome of in vitro studies comparing the antibacterial effectiveness of QMix with other irrigants against Enterococcus faecalis.

Materials and Methods

The research question was developed by using population, intervention, comparison, outcome, and study design framework. The literature search was performed using 3 electronic databases: PubMed, Scopus, and EBSCOhost until October 2019. The additional hand search was performed from the reference list of the eligible studies. The risk of bias of the studies was independently appraised using the revised Cochrane Risk of Bias tool (RoB 2.0).

Results

Fourteen studies were included in this systematic review. The overall risk of bias for the selected studies was moderate. QMix was found to have a higher antimicrobial activity compared to 2% sodium hypochlorite (NaOCl), 17% ethylenediaminetetraacetic acid (EDTA), 2% chlorhexidine (CHX), mixture of tetracycline isonomer, an acid and a detergent (MTAD), 0.2% Cetrimide, SilverSol/H2O2, HYBENX, and grape seed extract (GSE). QMix had higher antibacterial efficacy compared to NaOCl, only when used for a longer time (10 minutes) and with higher volume (above 3 mL).

Conclusions

QMix has higher antibacterial activity than 17% EDTA, 2% CHX, MTAD, 0.2% Cetrimide, SilverSol/H2O2, HYBENX, GSE and NaOCl with lower concentration. To improve the effectiveness, QMix is to use for a longer time and at a higher volume.

Trial Registration

PROSPERO International prospective register of systematic reviews Identifier: CRD42018096763

Citations

Citations to this article as recorded by  
  • Smear layer removal and antimicrobial efficacy of chitosan as a root canal irrigant: a systematic review of in-vitro studies
    Karthikeyan Anbalagan, Amit Jena, Saumyakanta Mohanty, Rashmirekha Mallick, Govind Shashirekha, Priyanka Sarangi
    Odontology.2025; 113(1): 61.     CrossRef
  • Limosilactobacillus Fermentun ZS09 Can Improve Antibiotic-Induced Motor Dysfunction in Mice by Regulating the Brain–Gut Functions
    Yang Yang, Yuanji Zhao, Huan Lei, Xiaohong Tan
    Journal of Inflammation Research.2024; Volume 17: 10093.     CrossRef
  • Regulation of colon injury and improvement of exercise performance in exhausted running mice by Lactobacillus pentosus CQZC02
    Limin Cai, Beibei Wang
    Frontiers in Physiology.2024;[Epub]     CrossRef
  • A Local Desiccant Antimicrobial Agent as an Alternative to Adjunctive Antibiotics in the Treatment of Periodontitis: A Narrative Review
    Iulia C. Micu, Alexandrina Muntean, Alexandra Roman, Ștefan I. Stratul, Emöke Pall, Andreea Ciurea, Andrada Soancă, Marius Negucioiu, Lucian Barbu Tudoran, Ada G. Delean
    Antibiotics.2023; 12(3): 456.     CrossRef
  • An in-vitro analysis to evaluate the disinfection effectiveness of Cold Atmospheric Pressure (CAP) plasma jet in Enterococcus faecalis infected root canals
    Pravin Kumar, P. Soundharrajan, Ram Prakash, Sarika Prabhakar Kombade, Pankaj Yadav, Ankita Chugh, Arun Kumar Patnana
    Biomaterial Investigations in Dentistry.2023;[Epub]     CrossRef
  • Effect of two graphene derivatives on Enterococcus faecalis biofilms and cytotoxicity
    Mi-Ah KIM, Vinicius ROSA, Kyung-San MIN
    Dental Materials Journal.2023; 42(2): 211.     CrossRef
  • Antibacterial Activity of Endodontic Gutta-Percha—A Systematic Review
    Jakub Kowalski, Joanna Rygas, Karolina Homa, Wojciech Dobrzyński, Rafal J. Wiglusz, Jacek Matys, Maciej Dobrzyński
    Applied Sciences.2023; 14(1): 388.     CrossRef
  • Evaluation of the Antibacterial Efficacy of QMix and AgNP Solutions in Root Canals of Primary Molars: An In-Vitro Study
    Dania Alkhourbotly, Mohamed K Altinawi, Rouaida Abou-Samra, Hasan M Alzoubi, Abedulrahman K Ebrahim
    Cureus.2022;[Epub]     CrossRef
  • Microbiological Aspects of Root Canal Infections and Disinfection Strategies: An Update Review on the Current Knowledge and Challenges
    Jasmine Wong, Daniel Manoil, Peggy Näsman, Georgios N. Belibasakis, Prasanna Neelakantan
    Frontiers in Oral Health.2021;[Epub]     CrossRef
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  • 3 Download
  • 9 Crossref
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Root canal irrigants influence the hydrophobicity and adherence of Staphylococcus epidermidis to root canal dentin: an in vitro study
Venkateshbabu Nagendrababu, Omer Sheriff Sultan, Sreedharan Kannathasan, Amir Shahreza Patel, Ebenezer Chitra, Prasanna Neelakantan, Fabian Davamani
Restor Dent Endod 2018;43(1):e1.   Published online December 7, 2017
DOI: https://doi.org/10.5395/rde.2018.43.e1
AbstractAbstract PDFPubReaderePub
Objectives

To determine the effect of root canal irrigants on the hydrophobicity and adherence of Staphylococcus epidermidis (S. epidermidis) to root canal dentin in vitro.

Materials and Methods

Root dentin blocks (n = 60) were randomly divided into 4 groups based on the irrigation regimen: group 1, saline; group 2, 5.25% sodium hypochlorite (NaOCl); group 3, 5.25% NaOCl followed by 17% ethylenediaminetetraacetic acid (EDTA); group 4, same as group 3 followed by 2% chlorhexidine (CHX). The hydrophobicity of S. epidermidis to root dentin was calculated by cell surface hydrophobicity while the adherence was observed by fluorescence microscopy, and bacteria were quantified using ImageJ software (National Institutes of Health). Statistical analysis of the data was done using Kruskal-Wallis test and Mann-Whitney U test (p = 0.05).

Results

The hydrophobicity and adherence of S. epidermidis to dentin were significantly increased after irrigating with group 3 (NaOCl-EDTA) (p < 0.05), whereas in group 4 (NaOCl-EDTA-CHX) both hydrophobicity and adherence were significantly reduced (p < 0.05).

Conclusions

The adherence of S. epidermidis to dentin was influenced differently by root canal irrigants. Final irrigation with CHX reduces the bacterial adherence and may impact biofilm formation.

Citations

Citations to this article as recorded by  
  • Quaternary ammonium silane (k21) based intracanal medicament triggers biofilm destruction
    Esther Sook Kuan Kok, Xian Jin Lim, Soo Xiong Chew, Shu Fen Ong, Lok Yin See, Siao Hua Lim, Ling Ang Wong, Fabian Davamani, Venkateshbabu Nagendrababu, Amr Fawzy, Umer Daood
    BMC Oral Health.2021;[Epub]     CrossRef
  • 187 View
  • 1 Download
  • 1 Crossref
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