In vitro antimicrobial activity of acroseal, polifil and epiphany against Enterococcus faecalis

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In vitro antimicrobial activity of Acroseal, Polifil and Epiphany against Enterococcus faecalis.

Using the agar diffusion method, this study evaluated the in vitro antimicrobial activity of the commercial endodontic sealers Acroseal and Epiphany, a castor-oil based experimental sealer, Polifil, and a primer agent (Epiphany self-etching primer), against Enterococcus faecalis. Zinc oxide and eugenol cement (ZOE) served as control. Five wells per dish were made at equidistant points and immed...

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Antimicrobial activity of three different endodontic sealers on the enterococcus faecalis and lactobacillus (in vitro)

Introduction: Growth and proliferation of the remaining microorganisms within the root canals may destroy the surrounding tissue of the root and leads to periapical lesion. Consequently, the complete elimination of microorganisms from the root canal is a n important goal of endodontic therapy. Endodontic sealers do not provide complete seal in root canal system, and micro spaces have always rem...

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Antimicrobial Activity of Indigenous Medicinal Plants Against Enterococcus faecalis

The knowledge of medicinal plant use by indigenous populations constitutes the most understudied medical treatment of the modern world. Utilized by these people for millennia, the scientific community has just recently began to see the legitimacy of their medicinal benefits and has begun to scientifically test them in hopes of discovering their active compounds and the major health ramification...

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In vitro activity of Amazon plant extracts against Enterococcus faecalis

Previous studies analyzing 2,200 plant extracts indicated anti-enterococcal activity in 25 extracts obtained from Brazilian forests' plants. In the present study, these extracts were subjected to microdilution broth assay (MDBA) and disk diffusion assay (DDA) using planktonic Enterococcus faecalis ATCC(®) 29212™ and were submitted to phytochemical analysis in TLC and HPLC. Three extracts obtain...

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antimicrobial activity of nanoparticle calcium hydroxide against enterococcus faecalis: an in vitro study

introduction: enterococcus faecalis ( e. faecalis ) has the ability to invade the dentinal tubules and resist high ph levels. as a result, calcium hydroxide (ch) is not much effective on this bacterium. in theory, nanoparticle calcium hydroxide (nch) has smaller size and high surface area that enables it to penetrate into the deeper layers of dentin and be more effective on e. faecalis. this in...

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ژورنال

عنوان ژورنال: Brazilian Dental Journal

سال: 2009

ISSN: 0103-6440

DOI: 10.1590/s0103-64402009000200003