| Literature DB >> 31638966 |
Ban Chen1,2, Xican Li3,4, Jie Liu5,6, Wei Qin5,6, Minshi Liang1,2, Qianru Liu1,2, Dongfeng Chen7,8.
Abstract
BACKGROUND: Pyrola decorata H. Andres, is exclusively distributed in China and a source of traditional Chinese herbal medicine Luxiancao for more than 2000 years. Here, we evaluated the antioxidant and cytoprotective effects of P. decorata and its five phenolic components (protocatechuic acid, gallic acid, hyperoside, 2''-O-galloylhyperin, and quercetin), and discussed their antioxidant chemistry.Entities:
Keywords: 2′′-O-galloylhyperin; Antioxidant; Cytoprotection; Hyperoside; Luxiancao; Mesenchymal stem cells; Pyrola decorata
Year: 2019 PMID: 31638966 PMCID: PMC6805648 DOI: 10.1186/s12906-019-2698-y
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Fig. 1Structural formulae of hyperoside (a) and 2′′-O-galloylhyperin (b) (hyperoside is also called as hyperin)
Fig. 2Preparation of LAEP
Fig. 3HPLC analysis of LAEP. LAEP means the lyophilized aqueous extract of P. decorata. The determining wavelength was 280 nm; the longitudinal axis was the strength of absorbance; mAu, milli-absorbance unit; Rt, retention time; Min, minute
The IC50 values of LAEP and its five phenolic components in various antioxidant assays
| Assays | LAEP (μg/mL) | Protocatechuic acid (μM) | Gallic acid (μM) | Hyperoside (μM) | 2′′- | Quercetin (μM) | Trolox (μM) |
|---|---|---|---|---|---|---|---|
| Fe3+-reducing | 367.6 ± 11.2 | 105.5 ± 4.1c | 54.3 ± 2.2a | 51.4 ± 1.0a | 48.9 ± 2.5a | 59.3 ± 3.0b | 97.3 ± 9.7 |
| Cu2+-reducing | 829.0 ± 13.9 | 183.7 ± 3.7d | 148.3 ± 4.0c | 105.6 ± 4.9b | 71.9 ± 2.7a | 123.5 ± 9.9b | 373.9 ± 17.6 |
| PTIO•-scavenging (pH 4.5) | 131.7 ± 11.9 | 527.5 ± 6.6b | 181.5 ± 5.6a | 193.7 ± 28.4a | 167.1 ± 14.7a | 185.3 ± 15.3a | 217.7 ± 5.0 |
| PTIO•-scavenging (pH 7.4) | 279.8 ± 58.3 | 437.0 ± 43.0d | 179.7 ± 10.9c | 135.2 ± 23.3b | 92.2 ± 7.0a | 103.6 ± 4.6a | 142.9 ± 5.0 |
| DPPH•-scavenging | 82.4 ± 5.2 | 7.6 ± 0.5c | 5.0 ± 0.2b | 3.5 ± 0.1b | 3.0 ± 0.1a | 3.4 ± 0.2a | 17.0 ± 1.5 |
| ABTS+•-scavenging | 42.3 ± 4.3 | 25.4 ± 0.4d | 11.6 ± 0.4c | 5.9 ± 0.2b | 3.5 ± 0.1a | 3.3 ± 0.1a | 21.8 ± 0.6 |
The IC50 value was defined as the final concentration corresponding to 50% radical inhibition (or relative reducing power) obtained from the dose-response curves in Additional file 8, as analyzed by Origin 2017 professional software (OriginLab, Northampton, MA, USA). The IC50 values of the five phenolics with different superscripts (a, b, c, or d) in the same row are significantly different (p < 0.05). Trolox ((±)-6-hydroxyl-2,5,7,8-tetramethlychromane-2-carboxylic acid) served as the positive control. LAEP means the lyophilized aqueous extract of P. decorata. Each experiment was performed in triplicates; the data were recorded as mean ± standard deviation (SD)
Fig. 4Results of UPLC-ESI-Q-TOF-MS/MS analysis. a Chromatogram of proto catechuic acid-protocatechuic acid dimer after the extraction of [C14H10O8-H]−.a1 Primary MS spectra of protocatechuic acid-protocatechuic acid dimer. a2 Secondary MS spectra of protocatechuic acid-protocatechuic acid dimer. b Chromatogram of gallic acid-gallic acid dimer after the extraction of [C14H10O10-H]−. (B1) Primary MS spectra of gallic acid-gallic acid dimer. c Chromatogram of hyperoside-hyperoside dimer after the extraction of [C42H38O24-H]−. c1 Primary MS spectra of hyperoside-hyperoside dimer. c2 Secondary MS spectra of hyperoside-hyperoside dimer. d Chromatogram of 2′′-O-galloylhyperin-2′′-O-galloylhyperin dimer after the extraction of [C56H46O32-H]−. d1 Primary MS spectra of 2′′-O-galloylhyperin-2′′-O-galloylhyperin dimer. d2 Secondary MS spectra of 2′′-O-galloylhyperin-2′′-O-galloylhyperin dimer. e Chromatogram of quercetin-quercetin dimer upon extraction of [C30H18O14-H]−. e1 Primary MS spectra of quercetin-quercetin dimer. e2 Secondary MS spectra of quercetin-quercetin dimer
Fig. 5LAEP and its five phenolic components protect bmMSCs against Fenton-induced apoptosis. The percentage of damaged cells was assessed using a flow cytometric assay. Experiments were performed with three different batches of cells and each batch was tested in triplicates. Data are calculated as the mean ± SD values. LAEP means the lyophilized aqueous extract of P. decorata. The percentages of damaged cells with different superscripts (a, b, c, d, e, or f) are significantly different (p < 0.05)
Fig. 6The ball-stick models of hyperoside (a) and 2′′-O-galloylhyperin (b) (red, O atom; white, H atom; gray, C atom; pink, long pair). The molecular models were created based on the calculation of molecular mechanics using Chem3D Pro 14.0 (CambridgeSoft, Cambridge, MA, USA)
Fig. 7Proposed RAF products with MS elucidations of protocatechuic acid (a) and 2″-O-galloylhyperin (b) after mixed with 4-methoxy-TEMPO•. (The MS spectra were in the negative ion model, and the charge imposed by the MS field was not marked. Other linking sites between two phenolic moieties should not be excluded. Other reasonable cleavages should not be excluded in the MS elucidation)