| Literature DB >> 21745360 |
Mirza Bojić1, Zeljko Debeljak, Maja Tomičić, Marica Medić-Šarić, Siniša Tomić.
Abstract
BACKGROUND: Among natural compounds, present in every day diet, flavonoids have shown beneficial effect in prevention of cardiovascular diseases that can be attributed, at least partially to the described antiaggregatory activity i.e. antiplatelet effects of flavonoids. Due to the ever increasing pharmacological interest in antiplatelet agents a systematic experimental evaluation of large flavonoid series is needed.Entities:
Mesh:
Substances:
Year: 2011 PMID: 21745360 PMCID: PMC3166895 DOI: 10.1186/1475-2891-10-73
Source DB: PubMed Journal: Nutr J ISSN: 1475-2891 Impact factor: 3.271
Figure 1Basic structure of flavonoids. Flavonoids are divided into classes based on the structure of ring C. Basic structure corresponds to flavan which are named flavanols (catechins) if hydroxylated at position C3. Flavanones have keto group on position C4. If the double bond C2 = C3 is present in structure flavanols and flavanones are named flavones and flavanonols, respectively. Isoflavonoids have B-ring at the position C3.
Antiaggregatory activity of flavanons
| Flavanons | Structure | ||
|---|---|---|---|
| Hesperetina | 1.907 | 0.035 | |
| Homoeriodictyolb | 7.629 | 0.003 | |
| Isosakuranetinb | 0.954 | 0.037 | |
| Pinocembrinc | 15.259 | 0.010 | |
| Pinocembrin-7-methyletherc | 0.954 | 0.025 | |
Minimal antiaggregatory concentration of flavanons expressed in μM with statistical significance (p).
Flavonoids purchased from aSigma-Aldrich, Switzerland, bBioChemika, Switzerland, cExtrasynthese, France.
Antiaggregatory activity of flavones
| Flavones | Structure | ||
|---|---|---|---|
| 6-hydroxyflavonea | 0.954 | 0.030 | |
| 7-hydroxyflavonea | 15.259 | 0.038 | |
| Acacetinb | 3.815 | 0.013 | |
| Apigeninc | 3.815 | 0.037 | |
| Chrysinc | 3.815 | 0.016 | |
| Chrysin dimethyletherd | 1.907 | 0.025 | |
| Diosmetind | 7.629 | 0.021 | |
| Flavonec | 3.815 | 0.037 | |
| Luteolind | 7.629 | 0.029 | |
| Tangeretinb | 30.518 | 0.029 | |
| Tectochrysind | 0.954 | 0.013 | |
Minimal antiaggregatory concentration of flavones expressed in μM with statistical significance (p).
Flavonoids purchased from aChromaDex, USA, bBioChemika, Switzerland, cFluka, Germany, dExtrasynthese, France.
Antiaggregatory activity of flavanonols
| Flavanonols | Structure | ||
|---|---|---|---|
| 3-hydroxyflavonea | 1.907 | 0.019 | |
| 3,6-dihydroxyflavonea | 0.119 | 0.005 | |
| 3,7-dihydroxyflavonea | 1.907 | 0.001 | |
| Fisetinb | 122.070 | 0.003 | |
| Galanginc | 122.070 | 0.008 | |
| Isorhamnetind | 7.629 | 0.029 | |
| Quercetine,* | 15.259 | 0.047 | |
| Rhamnetind | 0.954 | 0.041 | |
| Syringetind | 0.119 | 0.013 | |
Minimal antiaggregatory concentration of flavanonols expressed in μM with statistical significance (p).
Flavonoids purchased from aChromaDex, USA, bExtrasynthese, France, cSigma-Aldrich, Switzerland, dBioChemika, Switzerland, eFluka, Germany; *in the form of quercetin dihydrate.
Antiaggregatory activity of isoflavones
| Isoflavones | Structure | ||
|---|---|---|---|
| Daidzeina | 15.259 | 0.048 | |
| Formononetina | 7.629 | 0.043 | |
| Genisteina | 30.518 | 0.013 | |
| Prunetina | 7.629 | 0.033 | |
Minimal antiaggregatory concentration of isoflavones expressed in μM with statistical significance (p).
Flavonoids purchased from aExtrasynthese, France.
Antiaggregatory activity of positive control and catechin
| Substance | Structure | ||
|---|---|---|---|
| Epicatechina | 1.907 | 0.030 | |
| Clopidogrel | 0.019 | 0.029 | |
Minimal antiaggregatory concentration of positive control and catechin expressed in μM with statistical significance (p).
Flavonoid purchased from aSigma-Aldrich, Switzerland.
Figure 2Design of the experiment. Aggregation of untreated sample (without adding the flavonoid, AUC0) and the sample of flavonoid (AUC) are measured. If the difference of the aggregations is greater than 5% the measurement of additional two citrated bloods is performed. Otherwise, double concentration of flavonoid is taken and the first step is repeated. If the flavonoid in the analysed concentration shows statistically lower aggregation compared to the untreated sample (t-test) the analysed concentration is equal to minimal antiaggregatory concentration (MINaAC). If not analysis is performed from the beginning with double the concentration of flavonoid. This presumes that the analyzed concentration is not the first analysed (n > 1), else, the analysis is performed from beginning using the half of the concentration of flavonoid. Example of prunetin is given. Aggregation of analysed concentration of prunetin: 3.8 μM is not greater than aggregation of the untreated sample (58 U vs. 59 U). Thus additional measurement with double concentration (7.6 μM) of prunetin is performed. As the difference of aggregation is greater than 5% (ΔAUC = 17%) measurements on two additional citrated blood samples were performed. The concentration obtained is statistically different compared to the untreated sample (p = 0.033) thus minimal antiaggregatory concentration of prunetin is equal 7.6 μM. Note that red and blue lines in charts indicate two parallel measurements of the same sample. If the deviation between these two measurements is greater than 10%, quality control flag appears and measurements should be repeated.