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Biological Activities of a-Pinene and β-Pinene Enantiomers

Molecules · 2012 · Vol. 17(6) · pp. 6305–6316
Ana Cristina Rivas da SilvaPaula Monteiro LopesMariana M. B. AzevedoDanielle Cristina Machado CostaCeluta Sales AlvianoDaniela Sales Alviano

Abstract

The antimicrobial activities of the isomers and enantiomers of pinene were evaluated against bacterial and fungal cells. The agar diffusion test showed that only the positive enantiomers of the α- and β-isomers of pinene were active. The minimal inhibitory concentration (MIC) and minimal microbicidal concentration (MMC) of these monoterpenes were also determined, confirming that the positive enantiomers exhibited microbicidal activity against all fungi and bacteria tested with MICs ranging from 117 to 4,150 μg/mL. However, no antimicrobial activity was detected with the negative enantiomers up to 20 mg/mL. Time-kill curves showed that (+)-α-pinene and (+)-β-pinene were highly toxic to Candida albicans, killing 100% of inoculum within 60 min. By contrast, the bactericidal effect occurred after 6 h in methicillin-resistant Staphylococcus aureus (MRSA). In combination with commercial antimicrobials, ciprofloxacin plus (+)-α-pinene or (+)-β-pinene presented synergistic activity against MRSA whereas an indifferent effect against all fungi was detected when amphotericin B was combined with the positive enantiomers of pinene. The potential of (+)-α-pinene and (+)-β-pinene to inhibit phospholipase and esterase activities was also evaluated, and the best inhibition results were obtained with Cryptococcus neoformans. C. albicans biofilm formation was prevented with the MIC concentration of (+)-α-pinene and twice the MIC value of (+)-β-pinene. Finally, the cytotoxicity of the positive enantiomers of pinene to murine macrophages was evaluated, and 250 μg/mL of (+)-α-pinene and (+)-β-pinene reduced the cell viability to 66.8% and 57.7%, respectively.

Essential Oils and Antimicrobial ActivityPlant chemical constituents analysisAdvanced Chemical Sensor TechnologiesPineneAntimicrobialChemistryCandida albicansalpha-PineneEnantiomerMicrobiologyChromatographyBiologyStereochemistry

MeSH terms

Bicyclic MonoterpenesAnimalsAnti-Infective AgentsAnti-Bacterial AgentsAntifungal AgentsBacteriaBridged Bicyclo CompoundsDrug SynergismEsterasesFungiMacrophagesMicrobial Sensitivity TestsPhospholipasesBiofilmsMonoterpenes

Funding

  • Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
  • Conselho Nacional de Desenvolvimento Científico e Tecnológico
  • Fundação Carlos Chagas Filho de Amparo à Pesquisa do Estado do Rio de Janeiro
Citations
655
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References
Riddle of Biofilm Resistance
Antimicrobial Agents and Chemotherapy · 2001 · 1,960 citations
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