| Literature DB >> 30223457 |
Oscar Forero Doria1, Ricardo Castro2,3, Margarita Gutierrez4, Diego Gonzalez Valenzuela5, Leonardo Santos6, David Ramirez7, Luis Guzman8.
Abstract
Keeping in mind the concept of green chemistry, this research aims to synthesize and characterize new ionic liquids (ILs) derived from N-cinnamyl imidazole with different sizes of alkyl chains (1, 6, 8, and 10 carbon atoms), and evaluate their antibacterial activity against Skin and soft tissue infections (SSTIs) causative bacteria. The antibacterial screening was carried out by agar well diffusion and the Minimum Inhibitory Concentration (MIC) and Half Maximum Inhibitory Concentration (IC50) of the different ILs were determined by microdilution in broth, also Molecular dynamics simulations were performed to study the interaction mechanism between ILs and membranes. The MIC value in Gram-positive bacteria showed that as the hydrocarbon chain increases, the MIC value decreases with a dose-dependent effect. Furthermore, Gram-negative bacteria showed high MIC values, which were also evidenced in the antibacterial screening. The molecular dynamics showed an incorporation of the ILs with the longer chain (10 C), corresponding to a passive diffusion towards the membrane surface, for its part, the ILs with the shorter chain due to its lack of hydrophobicity was not incorporated into the bilayer. Finally, the new ILs synthesized could be an alternative for the treatment of Gram-positive bacteria causative of SSTIs.Entities:
Keywords: antibacterial; ionic liquids; skin and soft tissue infections
Mesh:
Substances:
Year: 2018 PMID: 30223457 PMCID: PMC6225289 DOI: 10.3390/molecules23092354
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of different ILs derived from cinnamyl with different chain lengths.
Figure 1IR spectra of the different N-cinnamylimidazolium ILs.
Figure 2TG curve of different N-cinnamylimidazolium ILs.
Thermal decomposition temperatures (Tonset) of the N-cinnamylalkylimidazolium ILs.
| Ionic Liquids | Temperature (°C) Corresponding to | ||
|---|---|---|---|
| [CMIM]Cl | 61 | 118 | 245 |
| [CHIM]Cl | 76 | 148 | 251 |
| [COIM]Cl | 91 | 176 | 251 |
| [CDIM]Cl | 106 | 193 | 257 |
Decomposition temperatures (°C): a onset decomposition, b at 10% mass loss, c at 50% mass loss.
Figure 3S. aureus growth inhibition halos in the presence of ILs with different chain lengths. C.P. positive control (mupirocin 5 μg), C.N. negative control.
Bacterial growth inhibition halos (mm) at different ILs concentrations in agar well diffusion assay.
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| mM | 0.125 | 0.25 | 0.5 | 1 | 2 | 0.125 | 0.25 | 0.5 | 1 | 2 | 0.125 | 0.25 | 0.5 | 1 | 2 |
| Imidazole | − | − | − | − | − | − | − | − | − | − | − | − | − | − | − |
| [CMIM]Cl | − | − | + | ++ | ++ | − | + | ++ | ++ | ++ | − | − | + | ++ | ++ |
| [CHIM]Cl | − | − | ++ | ++ | ++ | − | ++ | ++ | ++ | ++ | − | − | ++ | ++ | ++ |
| [COIM]Cl | − | ++ | ++ | ++ | ++ | − | ++ | ++ | ++ | ++ | + | ++ | ++ | ++ | ++ |
| [CDIM]Cl | − | ++ | ++ | ++ | +++ | − | ++ | ++ | ++ | +++ | ++ | ++ | ++ | ++ | ++ |
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| mM | 0.125 | 0.25 | 0.5 | 1 | 2 | 0.125 | 0.25 | 0.5 | 1 | 2 | 0.125 | 0.25 | 0.5 | 1 | 2 |
| Imidazole | − | − | − | − | − | − | − | − | - | − | − | − | − | − | − |
| [CMIM]Cl | − | − | − | − | ++ | − | − | − | - | − | − | − | − | − | + |
| [CHIM]Cl | − | − | ++ | ++ | ++ | − | − | − | − | − | − | − | − | − | + |
| [COIM]Cl | − | − | ++ | ++ | ++ | − | − | − | − | − | − | − | − | + | ++ |
| [CDIM]Cl | − | − | ++ | ++ | ++ | − | − | − | − | − | − | − | − | ++ | ++ |
n = 3 (three independent experiments). (−), no inhibition; (+), < 15 mm; (++) 15–25 mm; (+++) > 25 mm.
Minimum inhibitory concentration (MIC) and calculation of mean viability inhibition (IC50) of Gram-positive and Gram-negative bacteria.
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| 250 | 125 | 62.5 | 31.25 |
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| 125 | 62.5 | 62.5 | 31.25 |
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| 250 | 125 | 62.5 | 31.25 |
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| 2000 | 500 | 500 | 250 |
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| >2000 | > 2000 | > 2000 | > 2000 |
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| 2000 | 1000 | 1000 | 1000 |
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| 137 | 106 | 32.9 | 27.3 |
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| 41.6 | 38.1 | 25 | 19.4 |
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| 149 | 55.7 | 38.5 | 31.2 |
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| 1380 | 340 | 290 | 210 |
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| >2000 | >2000 | >2000 | >2000 |
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| 1870 | 570 | 480 | 465 |
n = 3 (three independent experiments).
Figure 4Distances between ILs [CDIM]Cl (black) and [CMIM]Cl (blue) and membrane center of masses (COMs) as a function of simulation time.
Figure 5Incorporation of [CDIM]Cl into the membrane along with the 50 ns MDs.
Physicochemical descriptor calculated by QikProp simulation.
| Ligands | MW (g/mol) a | HB-D b | HB-A c | Rotable Bonds | Total SASA d | MV (Å3) e | PSA f |
|---|---|---|---|---|---|---|---|
| [CMIM]Cl | 200.283 | 0 | 4 | 3 | 491.174 | 799.137 | 5.203 |
| [CHIM]Cl | 270.417 | 0 | 4 | 8 | 587.938 | 1055.386 | 4.991 |
| [COIM]Cl | 298.470 | 0 | 4 | 10 | 607.754 | 1137.921 | 4.991 |
| [CDIM]Cl | 326.524 | 0 | 4 | 12 | 630.815 | 1217.397 | 4.991 |
a Molecular Weight. 95% Drugs range (130.0–725.0); b Estimated number of H-Bonds that would be donated by the solute to water molecules in an aqueous solution. Values are averages that take over several conformations, so they can be non-integer. 95% Drugs range (0.0–6.0); c Estimated number of H-Bonds that would be accepted by the solute to water molecules in an aqueous solution. Values are averages that take over several conformations, so they can be non-integer. 95% Drugs range (2.0–20.0); d Total Solvent Accessible Surface Area (SASA). 95% Drugs range (300.0–1000.0); e Total solvent-accessible volume in cubic Å3 using a probe with 1.4 Å of radius. 95% Drugs range (500.0–2000.0); f Van de Waals surface area of polar nitrogen and oxygen atoms. 95% Drugs range (5.0–200.0). All predictions are based in a data set of 1712 drugs.
Pharmacokinetics properties predicted by QikProp simulation.
| Lead Ligands | QP log P (o/w) a | QP log S b | QP log HERG c | QP log Kp d | % HOA in GI e | Qual HOA Model f | Lipinski’s Rule of 5 Violations g |
|---|---|---|---|---|---|---|---|
| [CMIM]Cl | 1.859 | −0.503 | −6.903 | −4.295 | 88 | HIGH | 0 |
| [CHIM]Cl | 3.511 | −1.523 | −6.728 | −3.877 | 100 | HIGH | 0 |
| [COIM]Cl | 4.028 | −1.573 | −6.404 | −3.748 | 100 | HIGH | 0 |
| [CDIM]Cl | 4.523 | −1.684 | −6.197 | −3.628 | 100 | HIGH | 0 |
a QP log P for octanol/water. 95% Drugs range (−2.0–6.5); b Predicted aqueous solubility. Log S, S in dm3 is the solute concentration in a saturated solution in equilibrium with the crystalline solid. (−6.5–0.5); c HERG K+ channel blockage; log IC50. Concern below −5.000; d QP log Kp for skin permeability. Kp in cm/h; e % model for Human Oral Absorption in Gastro Intestinal System. <20% in poor; f Quality of model for Human Oral Absorption in Gastro Intestinal System. >80% in high; g Maximum is 4.