| Literature DB >> 30853865 |
Carla de Moura Martins1, Sérgio A L de Morais2, Mário M Martins2, Luís C S Cunha2, Cláudio V da Silva3, Carlos H G Martins4, Luís F Leandro4, Alberto de Oliveira2, Francisco J T de Aquino2, Evandro A do Nascimento2, Roberto Chang2.
Abstract
The species Inga laurina is native to the Brazilian Cerrado. There are no studies about the chemical composition and biological activities of extracts of this endangered species. The ethanolic extract and its successive fractions are rich in phenolic compounds and presented good antifungal activities. HPLC/MS-MS/MS and H1/C13 analysis led to the identification of seventeen compounds, most of which are gallic acid derivatives, myricetin and quercetin glycosides. The ethyl acetate fraction (EAF) contained high levels of total phenolics, expressed in milligrams of gallic acid equivalents per gram of extract (475.3 ± 1.9 mg GAE gextract -1) and flavonoids expressed in milligrams of quercetin equivalents per gram of extract (359.3 ± 10.6 mg QE gextract -1). This fraction was active against fungi of the Candida genus. The EAF showed MIC value 11.7 μg mL-1 against C. glabrata and a selectivity index of 1.6 against Vero cells. The flavonol glycoside myricetin-3-O-rhamnoside was isolated for the first time from the Inga laurina. These results make I. laurina a promising plant as a source of pharmaceutical and biological active antifungal compounds.Entities:
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Year: 2019 PMID: 30853865 PMCID: PMC6377950 DOI: 10.1155/2019/9423658
Source DB: PubMed Journal: ScientificWorldJournal ISSN: 1537-744X
Total phenolics, proanthocyanidins, and flavonoids for extracts and fractions of I. laurina leaves.
| Samples | TP (mg GAE gextract−1) | P (mg CE gextract−1) | F (mg QE gextract−1) |
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| EE | 127.7 ± 0.1 | 76.7 ± 1.3a | 133.1 ± 3.5 |
| HF | 35.0 ± 0.1 | 20.2 ± 1.9 | 33.6 ± 2.1a |
| CF | 82.2 ± 1.0 | 43.3 ± 4.5 | 205.9 ± 9.2 |
| EAF | 475.3 ± 1.9 | 68.1 ± 4.4a | 359.3 ± 10.6 |
| BF | 135.9 ± 1.5 | 59.7 ± 4.1 | 24.2 ± 1.2a |
EE = ethanol extract; HF = hexane fraction; CF = chloroform fraction; EAF = ethyl acetate fraction; BF = n-butanol fraction; TP = total phenolics; GAE = gallic acid equivalent; P = proanthocyanidins; CE = catechin equivalent; F = flavonoids; QE = quercetin equivalent. Results are presented as mean ± standard deviation for the triplicate assays. The analyses with the same letters did not show a significant difference between the averages by 5% Tukey test.
Results of antifungal activity (expressed as MIC in μg mL−1), cytotoxic activity (expressed as CC50 in μg mL−1), and selectivity index for extract and fractions of I. laurina leaves.
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| Microorganisms | EE | HF | CF | EAF | BF |
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| 46.8 | 1,500 | >3,000 | 93.8 | 11.7 |
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| 11.7 | 187.5 | >3,000 | 11.7 | 23.4 |
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| 93.8 | 3,000 | >3,000 | 93.8 | 46.8 |
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| Vero cells | 352 ± 5 | 384 ± 9 | >512 | >512 | >512 |
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| Microorganisms | EE | HF | CF | EAF | BF |
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| 0.9 | - 0.6 | > - 0.8 | > 0.7 | > 1.6 |
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| 1.5 | 0.3 | > - 0.8 | > 1.6 | > 1.3 |
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| 0.6 | - 0.9 | > - 0.8 | > 0.7 | > 1.0 |
EE = ethanol extract; HF = hexane fraction; CP = chloroform fraction; EAF = ethyl acetate fraction; BF = n-butanol fraction. SI: selectivity index. ATCC: American Type Culture Collection.
Figure 1Total ion chromatogram of EAF obtained by HPLC-ESI.
Phenolic compounds identified in EAF and subfractions from I. laurina by HPLC-ESI/MS2.
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| EAF | 2.9 | 169.0154 | 169.0142 | -7.1 | 125 | C7H6O5 | Gallic acid ( | [ |
| 5.4 | 305.0663 | 305.0667 | 1.3 | 261, 219, 167/165, 125 | C15H14O7 | Gallocatechin ( | [ | |
| 6.9 | 183.0300 | 183.0299 | -0.5 | 168, 124 | C8H8O5 | Methyl derivative of gallic acid ( | [ | |
| 9.1 | 197.0468 | 197.0455 | -6.6 | 169, 124/123 | C9H10O5 | Ethyl gallate ( | [ | |
| 10.1 | 631.0956 | 631.0941 | -2.4 | 479, 316, 169 | C28H24O17 | Myricetin- | [ | |
| 10.7 | 479.0826 | 479.0831 | 1.0 | 316, 178 | C21H19O13 | Myricetin-3- | [ | |
| 11.1 | 463.0904 | 463.0888 | -3.5 | 316, 178 | C21H19O12 | Myricetin-3- | [ | |
| 12.2 | 615.1007 | 615.0992 | -2.4 | 463, 316/317, 178 | C28H24O16 | Myricetin galloyl rhamnoside ( | [ | |
| 12.4 | 317.0318 | 317.0303 | -4.7 | 178, 151 | C15H10O8 | Myricetin ( | [ | |
| 12.7 | 447.0955 | 447.0933 | -4.9 | 300/301 | C21H20O11 | Quercetin-3- | [ | |
| 13.5 | 599.1044 | 599.1042 | -0.3 | 447, 301, 169, 151 | C28H24O15 | Quercetin 3-O-alpha-(2′′-galloyl)rhamnoside ( | [ | |
| 13.8 | 301.0357 | 301.0354 | -1.0 | 178/179, 151 | C15H10O7 | Quercetin ( | [ | |
| F2 | 10.8 | 505.0999 | 505.0988 | - 2.2 | 463, 316, 271, 163 | C23H22O13 | Myricetin-3-O-acetyl-rhamnoside ( | [ |
| F5 | 7.0 | 495.0786 | 495.0780 | - 1.2 | 343, 169 | C21H20O14 | Digalloylquinic acid ( | [ |
| F5 | 10.3 | 609.1482 | 609.1461 | - 3.4 | 463, 316, 178 | C27H30O16 | Myricetin-3-O- rhamnoside -3′-O-rhamnoside ( | Structure proposed by the author |
| F6 | 7.7 | 647.0885 | 647.0890 | 0.8 | 495, 343, 325, 169 | C28H24O18 | Trigalloylquinic acid ( | [ |
| F7 | 8.3 | 167.0355 | 167.0350 | - 3.0 | 108 | C8H8O4 | Vanillic acid ( | [ |
Figure 2Compounds identified in the EAF.
Figure 3Compounds identified in subfractions F2-F7.
Figure 4MS/MS spectrum of ion m/z 609.
Figure 5High resolution mass spectra of fraction F4.
Figure 6MS/MS spectrum of the ion m/z 463.
Figure 7Structure of myricetin-3-O-rhamnoside compound isolated from the fraction F4.