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Essential Oils in Food Preservation: Mode of Action, Synergies, and Interactions with Food Matrix Components

Frontiers in Microbiology · 2012 · Vol. 3 · pp. 12–12
Morten HyldgaardTina MygindRikke Louise Meyer

Abstract

Essential oils are aromatic and volatile liquids extracted from plants. The chemicals in essential oils are secondary metabolites, which play an important role in plant defense as they often possess antimicrobial properties. The interest in essential oils and their application in food preservation has been amplified in recent years by an increasingly negative consumer perception of synthetic preservatives. Furthermore, food-borne diseases are a growing public health problem worldwide, calling for more effective preservation strategies. The antibacterial properties of essential oils and their constituents have been documented extensively. Pioneering work has also elucidated the mode of action of a few essential oil constituents, but detailed knowledge about most of the compounds' mode of action is still lacking. This knowledge is particularly important to predict their effect on different microorganisms, how they interact with food matrix components, and how they work in combination with other antimicrobial compounds. The main obstacle for using essential oil constituents as food preservatives is that they are most often not potent enough as single components, and they cause negative organoleptic effects when added in sufficient amounts to provide an antimicrobial effect. Exploiting synergies between several compounds has been suggested as a solution to this problem. However, little is known about which interactions lead to synergistic, additive, or antagonistic effects. Such knowledge could contribute to design of new and more potent antimicrobial blends, and to understand the interplay between the constituents of crude essential oils. The purpose of this review is to provide an overview of current knowledge about the antibacterial properties and antibacterial mode of action of essential oils and their constituents, and to identify research avenues that can facilitate implementation of essential oils as natural preservatives in foods.

Essential Oils and Antimicrobial ActivityBee Products Chemical AnalysisAllelopathy and phytotoxic interactionsAction (physics)Matrix (chemical analysis)Biochemical engineeringFood scienceBiologyBiotechnologyBusinessComputer scienceChemistryEngineering

Funding

  • Forsknings- og Innovationsstyrelsen
  • Danish Agency for Science and Higher Education
Citations
2,040
FWCI
86.84
field-weighted impact
References
215
Percentile
100%
vs. same field & year
Citations per year
References
Antibacterial activity of some essential oil components against five foodborne pathogens
Journal of Agricultural and Food Chemistry · 1995 · 888 citations
The mode of action of allicin: trapping of radicals and interaction with thiol containing proteins
Biochimica et Biophysica Acta (BBA) - General Subjects · 1998 · 426 citations
Antimicrobial activity of essential oils and other plant extracts
Journal of Applied Microbiology · 1999 · 2,545 citations
The Organosulfur Chemistry of the Genus <i>Allium</i> – Implications for the Organic Chemistry of Sulfur
Angewandte Chemie International Edition in English · 1992 · 984 citations
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