| Literature DB >> 30719447 |
Jorge Jesús Veloz1, Marysol Alvear2,3, Luis A Salazar3.
Abstract
Dental caries is multifactorial disease and an important health problem worldwide. Streptococcus mutans is considered as a major cariogenic agent in oral cavity. This bacteria can synthetize soluble and insoluble glucans from sucrose by glucosyltransferases enzymes and generate stable biofilm on the tooth surface. Biological properties of Chilean propolis have been described and it includes antimicrobial, antifungal, and antibiofilm activities. The main goal of this study was to quantify the concentrations of main flavonoids presents in Chilean propolis and compare some biological properties such as antimicrobial and antibiofilm activity of individual compounds and the mixture of this compounds, against S. mutans cultures. Chilean propolis was studied and some polyphenols present in this extract were quantified by HPLC-DAD using commercial standards of apigenin, quercetin, pinocembrin, and caffeic acid phenethyl ester (CAPE). MIC for antimicrobial activity was determined by serial dilution method and biofilm thickness on S. mutans was quantified by confocal microscopy. Pinocembrin, apigenin, quercetin, and caffeic acid phenethyl ester (CAPE) are the most abundant compounds in Chilean propolis. These polyphenols have strong antimicrobial and antibiofilm potential at low concentrations. However, pinocembrin and apigenin have a greater contribution to this action. The effect of polyphenols on S. mutans is produced by a combination of mechanisms to decrease bacterial growth and affect biofilm proliferation due to changes in their architecture.Entities:
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Year: 2019 PMID: 30719447 PMCID: PMC6334332 DOI: 10.1155/2019/7602343
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
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| Quercetin | 3.91 | 13.03 | 13.03 – 40.00 | y = 16902x + 145755 | 0.9931 |
| Apigenin | 2.23 | 7.43 | 7.43 – 50.00 | y = 59358x + 24261 | 0.9987 |
| Pinocembrin | 1.34 | 4.45 | 4.45 – 100.00 | y = 151122x + 80657 | 0.9999 |
| CAPE | 0.29 | 0.98 | 0.98 – 20.00 | y = 72216x - 84427 | 0.9998 |
LOD: limit of detection; LOQ: limit of quantification; LR: linear range; R2: coefficient of correlation
Figure 1Compounds identified in EP2008 by HPLC-DAD. 1. Quercitin, 2. Apigenin, 3. Pinocembrin, and 4. CAPE.
Polyphenolics compounds quantified by HPLC-DAD in EP.
| Compounds | Tr. | Area | Concentrations ± SD |
|---|---|---|---|
| (minutes) | (mm2) | (mg L−1) | |
| Apigenin | 36.59 | 2409968 | 40.2 ± 0.6 |
| CAPE | 43.96 | 1234518 | 19.2 ± 0.3 |
| Pinocembrin | 40.66 | 12714319 | 83.6 ± 0.9 |
| Quercetin | 27.13 | 657840 | 21.0 ± 0.3 |
Antimicrobial activity of individual compounds and polyphenols mixture on S. mutans cultures.
| Compounds | MIC | p-value | p-value |
|---|---|---|---|
| Polyphenols Mixture | 1.6 ± 0.4 | p<0.5 | p<0.001 |
| Apigenin | 1.3 ± 0.4 | p<0.01 | p<0.001 |
| Pinocembrin | 1.4 ± 0.4 | p<0.01 | p<0.001 |
| Chlorhexidine | 1.6 ± 0.2 | p<0.5 | p<0.001 |
| Quercetin | 4.1 ± 0.8 | - | NSD |
| CAPE | 5.2 ± 0.8 | NSD | - |
MIC: minimum inhibitory Concentration. MIC values were expressed in μg mL−1 as Mean ± Standard Deviation. P-value was calculated as significant differences after ANOVA Multiple Comparison and test Tukey's Posttest. NSD: Nonstatistical Differences.
Figure 2Evaluation of bacterial biofilm thickness in S. mutans cultures treated with individual and mixtures of polyphenols. Each values of individual experiments were expressed as a mean ± standard deviation. P-value was determined by ANOVA and Tukey Post Test. ∗p < 0.5; ∗∗p<0.01, when compared with the control without treatment.
Figure 3Images of bacterial biofilms from S. mutans cultures obtained by confocal microscopy. (a) Control group. (b) Chlorhexidine. (c) Pinocembrin. (d) Apigenin. (e) CAPE. (f) Quercitin.