| Literature DB >> 31671687 |
Joana F Malheiro1,2,3, Jean-Yves Maillard4, Fernanda Borges5, Manuel Simões6.
Abstract
Surface disinfection is of utmost importance in the prevention of bacterial infections. This study aims to assess the ability of ten phytochemicals and related derivatives as potentiators of two commonly used biocides-cetyltrimethylammonium bromide (CTAB) and lactic acid (LA). LA in combination with cinnamic, hydrocinnamic, α-methylcinnamic, and α-fluorocinnamic acids had a factional inhibitory concentration index (FICI) ≤ 1 for Escherichia coli and Staphylococcus aureus. Several phytochemicals/derivatives in combination with biocides improved the biocidal efficacy against early sessile bacteria. The most effective combination was LA with allyl cinnamate (2.98 ± 0.76 log CFU.cm-2 reduction) against E. coli. The combination with CTAB was successful for most phytochemicals/derivatives with a maximum bactericidal efficacy against sessile E. coli when combined with allyl cinnamate (2.20 ± 0.07 log CFU.cm-2 reduction) and for S. aureus when combined with α-methylcinnamic acid (1.68 ± 0.30 log CFU.cm-2 reduction). This study highlights the potential of phytochemicals and their derivatives to be used in biocide formulations.Entities:
Keywords: biocide; disinfection; phytochemicals; potentiation; sessile cells
Mesh:
Substances:
Year: 2019 PMID: 31671687 PMCID: PMC6865212 DOI: 10.3390/molecules24213918
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Phytochemicals/derivatives concentration used in combination with lactic acid (LA) or cetyltrimethylammonium bromide (CTAB).
| Phytochemical or Derivative (mM) | Combination with | ||||
|---|---|---|---|---|---|
| LA (mM) | CTAB (mM) | ||||
| Concentration (mM) | Bacterium (FICI) | Concentration (mM) | Bacterium (FICI) | ||
| Cinnamic Acid | 5 |
| 0.01 | - | |
| Cinnamaldehyde | 0.5 | 300 | - |
| |
| Cinnamyl alcohol | 5 | 40 | - | 0.015 | - |
| Allyl cinnamate | 5 |
| 0.015 | - | |
| Methyl trans-cinnamate | 5 | 40 | - |
| |
| Cinnamamide | 5 | 40 | - | 0.015 | - |
| Hydrocinnamic acid | 8 |
| 0.015 | - | |
| α-Methylhydrocinnamic acid | 5 |
| 0.015 | - | |
| α-Methylcinnamic acid | 3 |
| 0.015 | - | |
| α-Fluorocinnamic acid | 5 |
| 0.015 | - | |
These concentrations were determined by the checkerboard methodology where factional inhibitory concentration index (FICI) was calculated for all the tested bacteria and the best value for at least two bacteria was chosen. If no potentiation was detected, the combination was chosen, taking into consideration the phytochemical and derivative concentration used with both biocides and where solubility was not compromised. Potentiation with a given biocide is highlighted in bold and the FICI value is presented in parentheses.
Figure 1Effect of the combination of lactic acid (top) or CTAB (bottom) with the phytochemicals/derivatives on E. coli (left) and S. aureus (right). Each bacterium was exposed for 30 min to the established concentration of the phytochemical or derivative () and biocide (lactic acid or CTAB; ) alone and in combination (). Bacteria were exposed to the phytochemicals/derivatives concentrations presented in Table 1. Values are mean ± SD. The statistical significance is represented (* p < 0.05; ** p < 0.01; *** p < 0.001).
Technical information of the phytochemicals/derivatives and biocides used in this study.
| Phytochemical or Derivative | Brand | CAS Number | Price per 1 g (€) a | |
|---|---|---|---|---|
|
| ||||
| Cinnamic Acid | Merck | 140-10-3 | 4.86 | |
| Cinnamaldehyde |
| Sigma Aldrich | 14371-10-9 | 0.05 |
| Cinnamyl Alcohol |
| Acros Organics | 104-54-1 | 0.15 |
| Allyl Cinnamate |
| Sigma Aldrich | 1866-31-5 | 0.49 |
| Methyl Trans-Cinnamate |
| Merck | 1754-62-7 | 0.12 |
| Cinnamamide |
| Alfa Aesar | 621-79-4 | 7.22 |
| Hydrocinnamic Acid |
| Acros Organics | 501-52-0 | 0.31 |
| α-Methylhydrocinnamic Acid |
| Acros Organics | 1009-67-2 | 12.02 |
| α-Methylcinnamic Acid |
| Acros Organics | 1199-77-5 | 2.64 |
| α-Fluorocinnamic Acid |
| Sigma Aldrich | 350-90-3 | 91.90 |
|
|
|
|
| |
| CTAB | Acros Organics | 57-09-0 | 0.26 | |
| Lactic Acid | Fluka | 50-21-5 | 0.14 | |
The price per 1 g of product corresponds to the price of the chemicals when purchased by the research group. Some information was adapted from Malheiro et al. [49].
Effect of the selected phytochemicals/derivatives on the surface tension parameters and hydrophobicity of E. coli, S. aureus, and E. hirae.
| Surface Tension Parameters (mJ m−2) | Hydrophobicity (mJ m−2) | |||||||||||||||
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| Control (water) | 33.43 | ± | 1.98 | 13.74 | ± | 3.65 | 1.03 | ± | 0.52 | 48.78 | ± | 3.08 | 28.98 | ± | 4.49 |
| Control (DMSO) | 31.99 | ± | 1.36 | 15.78 | ± | 1.99 | 1.26 | ± | 0.32 | 50.11 | ± | 4.16 | 29.91 | ± | 4.98 | |
| Cinnamic acid | 29.67 | ± | 3.33 | 21.63 | ± | 1.76 | 2.45 | ± | 0.34 | 47.81 | ± | 1.49 | 24.65 | ± | 1.64 | |
| Cinnamaldehyde | 32.96 | ± | 0.61 | 12.78 | ± | 2.02 | 0.92 | ± | 0.27 | 45.02 | ± | 3.13 | 24.84 | ± | 3.73 | |
| Hydrocinnamic acid | 30.48 | ± | 1.04 | 19.14 | ± | 2.34 | 1.95 | ± | 0.49 | 47.63 | ± | 1.14 | 25.69 | ± | 2.90 | |
| α-Methylhydrocinnamic acid | 28.55 | ± | 1.19 |
|
|
|
|
|
| 49.87 | ± | 0.68 | 25.75 | ± | 0.80 | |
| α-Methylcinnamic acid |
|
|
|
|
|
|
|
|
| 46.42 | ± | 1.86 |
|
|
| |
|
| Control (water) | 35.26 | ± | 1.18 | 18.01 | ± | 2.09 | 1.71 | ± | 0.52 | 48.68 | ± | 4.23 | 25.80 | ± | 5.62 |
| Control (DMSO) | 36.24 | ± | 1.19 | 17.56 | ± | 0.68 | 1.58 | ± | 0.09 | 48.92 | ± | 4.14 | 25.80 | ± | 4.73 | |
| Cinnamic acid | 34.79 | ± | 1.73 | 19.35 | ± | 0.75 | 1.83 | ± | 0.14 | 51.07 | ± | 0.66 | 27.94 | ± | 1.31 | |
| Cinnamaldehyde | 35.70 | ± | 0.52 | 17.25 | ± | 3.06 | 1.51 | ± | 0.51 | 50.19 | ± | 2.08 | 27.76 | ± | 3.06 | |
| Hydrocinnamic acid | 34.36 | ± | 1.55 | 19.60 | ± | 1.25 | 1.89 | ± | 0.14 | 50.79 | ± | 3.03 | 27.62 | ± | 3.05 | |
| α-Methylhydrocinnamic acid | 34.49 | ± | 2.20 | 16.93 | ± | 0.90 | 1.34 | ± | 0.09 | 53.59 | ± | 2.47 | 32.40 | ± | 3.09 | |
| α-Methylcinnamic acid | 35.82 | ± | 1.04 | 16.68 | ± | 1.09 | 1.32 | ± | 0.18 | 52.98 | ± | 1.21 | 31.34 | ± | 2.18 | |
|
| Control (water) | 35.65 | ± | 1.77 | 13.20 | ± | 2.62 | 0.86 | ± | 0.33 | 52.45 | ± | 2.79 | 32.88 | ± | 3.80 |
| Control (DMSO) | 33.93 | ± | 0.59 | 17.72 | ± | 2.40 | 1.52 | ± | 0.52 | 53.02 | ± | 3.10 | 31.58 | ± | 4.83 | |
| Cinnamic acid | 32.26 | ± | 2.25 | 20.96 | ± | 1.62 | 2.15 | ± | 0.34 | 51.38 | ± | 1.27 | 28.31 | ± | 1.34 | |
| Cinnamaldehyde | 33.02 | ± | 1.72 | 20.03 | ± | 3.58 | 2.00 | ± | 0.75 | 51.64 | ± | 2.64 | 28.94 | ± | 4.11 | |
| Hydrocinnamic acid | 30.61 | ± | 1.70 | 22.87 | ± | 2.29 | 2.61 | ± | 0.46 | 50.25 | ± | 1.73 | 26.48 | ± | 1.76 | |
| α-Methylhydrocinnamic acid | 33.15 | ± | 0.50 | 18.76 | ± | 2.37 | 1.69 | ± | 0.50 | 53.41 | ± | 3.69 | 31.70 | ± | 5.47 | |
| α-Methylcinnamic acid | 34.33 | ± | 2.72 | 17.22 | ± | 2.81 | 1.41 | ± | 0.40 | 53.17 | ± | 2.43 | 31.75 | ± | 3.02 | |
Statistically significant values (* p < 0.05; ** p < 0.01;*** p < 0.001) when compared to the control of DMSO are highlighted in bold. Bacteria were exposed to the phytochemicals/derivatives concentrations presented in Table 1. Values are mean ± SD.