Binary and tertiary mixtures of Satureja hortensis and Origanum vulgare essential oils as potent antimicrobial agents against Helicobacter pylori

Essential oils possess strong antimicrobial activity, even against multiresistant Helicobacter pylori. Available therapies against H. pylori infection have multiple disadvantages, indicating a great need for a development of new therapeutics. The purpose of this study was to develop a potent natural...

Teljes leírás

Elmentve itt :
Bibliográfiai részletek
Szerzők: Lesjak Marija
Simin Natasa
Orcic Dejan
Franciskovic Marina
Knezevic Petar
Beara Ivana
Aleksic Verica
Svircev Emilija
Buzás Krisztina
Mimica-Dukić Neda
Dokumentumtípus: Cikk
Megjelent: 2016
Sorozat:PHYTOTHERAPY RESEARCH 30 No. 3
doi:10.1002/ptr.5552

mtmt:3038633
Online Access:http://publicatio.bibl.u-szeged.hu/12264
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520 3 |a Essential oils possess strong antimicrobial activity, even against multiresistant Helicobacter pylori. Available therapies against H. pylori infection have multiple disadvantages, indicating a great need for a development of new therapeutics. The purpose of this study was to develop a potent natural product based anti-H. pylori formulation. First, anti-H. pylori activity of nine essential oils was determined, after which the most active oils were mixed in various ratios for further testing. Satureja hortensis, Origanum vulgare subsp. vulgare and O. vulgare subsp. hirtum essential oils expressed the highest activity (MIC = 2 μL mL-1). Their binary and ternary mixtures exhibited notably higher antimicrobial activity (MIC ≤ 2 μL mL-1). The most active was the mixture of S. hortensis and O. vulgare subsp. hirtum oils in volume ratio 2:1, which expressed 4 times higher activity than individual oils (MIC = 0.5 μL mL-1). According to GC-MS, both oils in the mixture were characterized by high content of phenols (48-73%), with carvacrol as the main carrier of antimicrobial activity. Presented in vitro study pointed out binary mixture of S. hortensis and O. vulgare subsp. hirtum essential oils in volume ratio 2:1 as promising candidate for further in vivo studies targeting H. pylori infection. Copyright © 2015 John Wiley & Sons, Ltd. 
700 0 1 |a Simin Natasa  |e aut 
700 0 1 |a Orcic Dejan  |e aut 
700 0 1 |a Franciskovic Marina  |e aut 
700 0 1 |a Knezevic Petar  |e aut 
700 0 1 |a Beara Ivana  |e aut 
700 0 1 |a Aleksic Verica  |e aut 
700 0 1 |a Svircev Emilija  |e aut 
700 0 1 |a Buzás Krisztina  |e aut 
700 0 2 |a Mimica-Dukić Neda  |e aut 
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