M D' Aquino’s research while affiliated with University of Buenos Aires and other places

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Publications (1)


Figure 1. Kinetic of bacterial inactivation by essential clove oil at two concentrations.(◊) essential clove oil at 0.4 %-21º C; 
Figure 1 shows the effect of clove oil concentration (0.2 and 0.4% v/v) on the survival of the three bacterial species. 
Figure 2. Kinetic of bacterial inactivation by essential clove oil at two temperatures 21 and 37° C. (◊) essential clove oil at 0.4 %-21º C; (■) essential clove oil at 0.4 %-37º C. 
Figure 3 show that adding organic matter to the disinfecting solution does not compromise antimicrobial activity. In the case of Staphylococcus aureus, albumin shows the greatest interference, as they needed 10 minutes to reach the reduction of 5 log cycles in the bacterial population (3 min are required in the absence of organic matter). 
Figure 3. Influence of organic matter on bactericidal effect of clove oil. (◊) absence of organic matter; (○)serum 10%; (▲) bakers' yeast 1%; ( □) BSA 1% 
Microbicide activity of clove essential oil (Eugenia Caryophyllata)
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October 2012

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155 Citations

Brazilian Journal of Microbiology

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M D' Aquino

Clove essential oil, used as an antiseptic in oral infections, inhibits Gram-negative and Gram-positive bacteria as well as yeast. The influence of clove essential oil concentration, temperature and organic matter, in the antimicrobial activity of clove essential oil, was studied in this paper, through the determination of bacterial death kinetics. Escherichia coli, Staphylococcus aureus and Pseudomonas aeruginosa were the microorganisms selected for a biological test. To determine the temperature effect, they were assayed at 21° and 37° C. The concentration coefficient was determined with 0.4%, and 0.2% of essential oil. The influence of the presence of organic matter was determined with 0.4% of essential oil. The results obtained demonstrated that Escherichia coli were more sensitive even though the essential oil exerted a satisfactory action in three cases. In the three microbial species, 0.4% of essential oil at 21° C have reduced the bacterial population in 5 logarithmic orders. Organic matter reduces the antibacterial activity even though the bactericide efficacy was not lost. Clove essential oil can be considered as a potential antimicrobial agent for external use.

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Citations (1)


... The enhanced antimicrobial activity observed at elevated temperatures is due to factors such as increased permeability of the membrane. This allows for improved penetration and build-up of the antimicrobial substances inside the microbial cells, resulting in more extensive damage and cell death 24,25 . Q10 is calculated using the formula: ...

Reference:

Preservative efficacy testing of refrigerated pharmaceuticals: choice of challenging isolate and storage temperature
Microbicide activity of clove essential oil (Eugenia Caryophyllata)

Brazilian Journal of Microbiology