| Literature DB >> 22075573 |
Laís Goyos Pieroni1, Fernanda Mendes de Rezende, Valdecir Farias Ximenes, Anne Lígia Dokkedal.
Abstract
Miconia is onpan>e of the largest genpan>us of the Melastomataceae, with approximately 1,000 species. Studies aiming to describe the diverse biological activities of the Miconia species have shown promising results, such as analgesic, antimicrobial and trypanocidal properties. M. albicans leaves were dried, powdered and extracted to afford chloroformic and methanolic extracts. Total phenolic contents in the methanolic extract were determined according to modified Folin-Ciocalteu method. The antioxidant activity was measured using AAPH and DPPH radical assays. Chemical analysis was performed with the n-butanol fraction of the methanolic extract and the chloroformic extract, using different chromatographic techniques (CC, HPLC). The structural elucidation of compounds was performed using 500 MHz NMR and HPLC methods. The methanolic extract showed a high level of total phenolic contents; the results with antioxidant assays showed that the methanolic extract, the n-butanolic fraction and the isolated flavonoids from M. albicans had a significant scavenging capacity against AAPH and DPPH. Quercetin, quercetin-3-O-glucoside, rutin, 3-(E)-p-coumaroyl-α-amyrin was isolated from the n-butanolic fraction and α-amyrin, epi-betulinic acid, ursolic acid, epi-ursolic acid from the chloroformic extract. The results presented in this study demonstrate that M. albicans is a promising species in the search for biologically active compounds.Entities:
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Year: 2011 PMID: 22075573 PMCID: PMC6264309 DOI: 10.3390/molecules16119439
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1AAPH-induced hemolysis and the protective effect of n-BuoH fraction and methanolic extract of leaves from M. albicans. Concentration: n-BuOH fraction 0.59mg/mL; methanolic extract 4.3mg/mL; quercetin 0.08mg/mL. The reaction mixture (positive control) contained 10% (v/v) erythrocytes and 100 mM AAPH in PBS at 37 °C.
Antioxidant activity (IC50) of the methanolic extract, n-butanolic fraction, and isolated flavonoids of M. albicans.
| Compound | IC50 (µg/mL) ± SD |
|---|---|
|
| 14.94 ± 0.0040 |
|
| 5.93 ± 0.0035 |
|
| 2.97 ± 0.0105 |
| 7.72 ± 0.0350 | |
| MeOH Extract | 49.45 ± 0.0050 |
| Standard (rutin) | 2.55 ± 0.0075 |
| Standard (quercetin) | 1.60 ± 0.0450 |
IC = concentration in µg/mL capable of reducing DPPH by 50%; SD = standard deviation.
Figure 2HPLC-DAD chromatograms and respective UV spectrum of compounds 2 (A; Rt = 18.939 min) and 3 (B; Rt = 41.615 min). Zorbax SB C18 column (250 × 4.6 mm, 5 mm). Solvent gradient: 0–5 min 12% de acetonitrile (B) in acetic acid 0.1% (A); 5–8 min 12–20% B in A; 8–28 min 20% B in A; 28–38 min 20–50% B in A; 38–48 min 50–65% B in A; 48–50 min 65–100% B in A; 50–55 min 100% B; 55–56 min 100–12% B in A; 56–60 min 12% B in A; flows: 0–50 min, 0.5 mL.min−1; 50–55 min, 1 mL.min−1 and 56–60 min, 0.5 mL.min−1; λ = 352 nm.
13C-NMR data for compounds 4–8 from M. albicans (125MHz, DMSO-d6) a.
| Carbon | 4 | 5 | 6 | 7 | 8 | |
|---|---|---|---|---|---|---|
| 1 | 38.2 | 38.8 | 34.0 | 38.7 | 36.3 | |
| 2 | 22.8 | 27.3 | 25.1 | 27.5 | 27.5 | |
| 3 | 82.3 | 79.1 | 76.9 | 79.3 | 76.9 | |
| 4 | 39.3 | 38.8 | 38.5 | 38.7 | 38.2 | |
| 5 | 55.0 | 55.2 | 54.9 | 55.2 | 54.8 | |
| 6 | 17.5 | 18.3 | 18.0 | 18.6 | 18.1 | |
| 7 | 32.3 | 32.9 | 33.9 | 33.2 | 32.7 | |
| 8 | 40.4 | 39.6 | 41.2 | 39.1 | 38.5 | |
| 9 | 46.9 | 47.7 | 49.9 | 47.8 | 47.0 | |
| 10 | 36.9 | 36.9 | 36.7 | 36.9 | 36.5 | |
| 11 | 23.2 | 23.3 | 20.5 | 23.5 | 23.8 | |
| 12 | 125.0 | 124.4 | 27.1 | 126.1 | 124.6 | |
| 13 | 138.3 | 139.6 | 37.6 | 139.8 | 138.2 | |
| 14 | 42.0 | 42.2 | 42.6 | 42.2 | 46.9 | |
| 15 | 28.6 | 29.7 | 31.7 | 28.5 | 26.9 | |
| 16 | 26.6 | 26.6 | 36.4 | 24.4 | 26.9 | |
| 17 | 33.7 | 33.7 | 55.5 | 33.2 | 32.7 | |
| 18 | 55.9 | 59.1 | 46.7 | 52.9 | 52.4 | |
| 19 | 39.2 | 39.7 | 48.7 | 39.3 | 39.4 | |
| 20 | 39.2 | 39.6 | 150.4 | 39.3 | 39.3 | |
| 21 | 32.2 | 31.2 | 30.1 | 30.0 | 30.2 | |
| 22 | 41.5 | 41.5 | 38.3 | 23.6 | 23.8 | |
| 23 | 28.4 | 28.1 | 28.1 | 28.2 | 28.3 | |
| 24 | 16.9 | 15.6 | 15.8 | 15.7 | 15.2 | |
| 25 | 16.9 | 15.7 | 15.9 | 15.8 | 16.1 | |
| 26 | 16.8 | 16.8 | 16.0 | 17.0 | 16.9 | |
| 27 | 23.3 | 23.4 | 14.4 | 23.8 | 23.3 | |
| 28 | 28.2 | 28.1 | 177.3 | 178.3 | 178.3 | |
| 29 | 17.4 | 17.4 | 109.6 | 17.3 | 17.0 | |
| 30 | 21.0 | 21.3 | 19.0 | 21.3 | 21.1 | |
| 28OMe | 51.3 | |||||
| 1’ | 160.0 | |||||
| 3’ | 145.0 | |||||
| 4’ | 127.3 | |||||
| 5’ | 130.0 | |||||
| 6’ | 116.0 | |||||
| 7’ | 157.7 | |||||
| 8’ | 116.0 | |||||
| 9’ | 130.0 | |||||
a Chemical shifts are in ppm.
Figure 3Isolated substances from M. albicans.