2008Acta AlimentariaRequires access

Antibacterial and antioxidative characterisation of essential oils fromMentha piperitaandMentha spicatagrown in Iran

Iraj Rasooli, Latif Gachkar, Davood Yadegarinia, Mohammad Rezaei, S. Alipoor Astaneh

Open publisher page 33 citations

Abstract

The present work evaluated the antioxidant and antimicrobial activities of the essential oils of Mentha piperita and Mentha spicata . Survival and growth of Bacillus cereus, E. coli and S. aureus were studied. Twenty-six and fifteen compounds were identified in the essential oils of Mentha piperita and Mentha spicata , respectively. Mentha piperita contained major compounds of α-terpinene (19.7%), isomenthone (10.3%), trans carveol (14.5%), pipertitinone oxide (19.3%) and β-caryophyllene (7.6%). The major compounds of Mentha spicata were limonene (48%), menthol (4.7%), piperitone (20.27%) and caryophyllene (7.9%). The essential oils have good or excellent antimicrobial activities against all microorganisms tested. Complete death time on exposure to Mentha piperita L. and Mentha spicata L. oils were (90, 15 and 10 min) and (45, 30 and 15 min) for B. cereus, E. coli and S. aureus , respectively. Two-gram positive microorganisms, B. cereus and S. aureus , showed the same pattern of zone/oil concentration ratios, while E. coli responded differently. The essential oils notably reduced the concentration of DPPH free radical and bleached β-carotene. The performance of the M. piperita oil was better than that of Mentha spicata . Application of these oils in food industries is recommended.

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What this paper is about

The present work evaluated the antioxidant and antimicrobial activities of the essential oils of Mentha piperita and Mentha spicata . Survival and growth of Bacillus cereus, E. coli and S. aureus were studied. Twenty-six and fifteen compounds were identified in the essential oils of Mentha piperita and Mentha spicata , respectively. Mentha piperita contained major compounds of α-terpinene (19.7%), isomenthone (10.3%), trans carveol (14.5%), pipertitinone oxide (19.3%) and β-caryophyllene (7.6%). The major compounds of Mentha spicata were limonene (48%), menthol (4.7%), piperitone (20.27%) and caryophyllene (7.9%). The essential oils have good or excellent antimicrobial activities against all microorganisms tested. Complete death time on exposure to Mentha piperita L. and Mentha spicata L. oils were (90, 15 and 10 min) and (45, 30 and 15 min) for B. cereus, E. coli and S. aureus , respectively. Two-gram positive microorganisms, B. cereus and S. aureus , showed the same pattern of zone/oil concentration ratios, while E. coli responded differently. The essential oils notably reduced the concentration of DPPH free radical and bleached β-carotene. The performance of the M. piperita oil was better than that of Mentha spicata . Application of these oils in food industries is recommended.

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Available abstract

The present work evaluated the antioxidant and antimicrobial activities of the essential oils of Mentha piperita and Mentha spicata . Survival and growth of Bacillus cereus, E. coli and S. aureus were studied. Twenty-six and fifteen compounds were identified in the essential oils of Mentha piperita and Mentha spicata , respectively. Mentha piperita contained major compounds of α-terpinene (19.7%), isomenthone (10.3%), trans carveol (14.5%), pipertitinone oxide (19.3%) and β-caryophyllene (7.6%). The major compounds of Mentha spicata were limonene (48%), menthol (4.7%), piperitone (20.27%) and caryophyllene (7.9%). The essential oils have good or excellent antimicrobial activities against all microorganisms tested. Complete death time on exposure to Mentha piperita L. and Mentha spicata L. oils were (90, 15 and 10 min) and (45, 30 and 15 min) for B. cereus, E. coli and S. aureus , respectively. Two-gram positive microorganisms, B. cereus and S. aureus , showed the same pattern of zone/oil concentration ratios, while E. coli responded differently. The essential oils notably reduced the concentration of DPPH free radical and bleached β-carotene. The performance of the M. piperita oil was better than that of Mentha spicata . Application of these oils in food industries is recommended.

Key concepts: Mentha spicata, Menthol, Bacillus cereus, Menthone, Essential oil, Mentha arvensis, Antimicrobial, Chemistry

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