| Literature DB >> 23455671 |
Viviane Raïssa Sipowo Tala1, Viviane Candida da Silva, Clenilson Martins Rodrigues, Augustin Ephrem Nkengfack, Lourdes Campaner dos Santos, Wagner Vilegas.
Abstract
The present study investigates the chemical composition of the African plant Parkia biglobosa (Fabaceae) roots and barks by Liquid Chromatography-Electrospray Ionization and Direct Injection Tandem Mass Spectrometry analysis. Mass spectral data indicated that B-type oligomers are present, namely procyanidins and prodelphinidins, with their gallate and glucuronide derivatives, some of them in different isomeric forms. The analysis evidenced the presence of up to 40 proanthocyanidins, some of which are reported for the first time. In this study, the antiradical activity of extracts of roots and barks from Parkia biglobosa was evaluated using DPPH method and they showed satisfactory activities.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23455671 PMCID: PMC6269974 DOI: 10.3390/molecules18032803
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Peak number, retention time, m/z [M−H]− ion, MSn fragments of the compounds obtained by FIA-ESI-IT-MSn and HPLC/ESI-IT-MS analysis of P. biglobosa roots and barks.
| Peak No. | tR (min) | [M−H]−,
| MS2 | MS3 | Proposed Names |
|---|---|---|---|---|---|
|
| |||||
|
| 42.42 | 289 | 137 [M−H−152]− | ( | |
|
| 24.98 | 305 | 179 [M−H−126]− | ( | |
|
| 43.33 | 167 [M−H−138]− | |||
| 137 [M−H−168]− | |||||
|
| 55.12 | 457 | 331 [M−H−126]− | (epi)gallocatechin- | |
| 305 [M−H−152]− | |||||
| 169 [M−H−288]− | |||||
|
| 55.77 | 481 | 463 [M−H−18]− | ( | |
| 305 [M−H−176]− | |||||
| 287 [M−H−176−18]− | |||||
| 313 [M−H−168]− | |||||
|
| 55.74 | 617 | 599 [M−H−18]− | 289 [M−H−152−176]− | ( |
| 465 [M−H−152]− | 271 [M−H−152−176−18]− | ||||
| 463 [M–H−170]− | |||||
|
| 55.40 | 633 | 507 [M−H−126]− | 463 [M−H−152−18]− | ( |
| 481 [M−H−152]− | 305 [M−H−152−176]− | ||||
| 287 [M−H−152−176−18]− | |||||
|
| |||||
|
| 36.68 | 577 | 559 [M−H−18]− | ( | |
|
| 46.27 | 451 [M−H−126]− | |||
|
| 48.40 | 425 [M−H−152]− | |||
|
| 49.89 | 407 [M−H−152−18]− | |||
| 289 [M−H−288]− | |||||
|
| 33.21 | 593 | 467 [M−H−126]− | ( | |
|
| 36.67 | 441 [M−H−152]− | |||
|
| 39.55 | 289 [M−H−304]− | |||
|
| 13.57 | 609 | 483 [M−H−126]− | ( | |
|
| 22.46 | 441 [M−H−168]− | |||
| 305 [M−H−304]− | |||||
| 303 [M−H−306]− | |||||
|
| |||||
|
| 50.55 | 729 | 577 [M−H−152]− | ( | |
|
| 54.93 | 559 [M−H−170]− | |||
| 289 [M−H−440]− | |||||
| 287 [M−H−442]− | |||||
|
| 38.09 | 745 | 619 [M−H−126]− | 467 [M–H−152−126]− | ( |
|
| 42.68 | 593 [M−H−152]− | 407 [M–H−152−168−18]− | ||
|
| 47.44 | 575 [M−H−152−18]− | |||
|
| 49.89 | ||||
|
| 29.43 | 761 | 635 [M–H−126]− | 591 [M−H−152−18]− | ( |
|
| 31.65 | 609 [M–H−152]− | 483 [M−H−152−126]− | ||
|
| 36.87 | 593 [M–H−168]− | 305 [M−H−152−304]− | ||
|
| 38.13 | ||||
|
| 45.18 | 785 | 659 [M−H−126]− | 479 [M−H−168−138]− | ( |
|
| 47.48 | 617 [M−H−168]− | 423 [M−H−168−176−18]− | ||
| 591 [M−H−176−18]− | 599 [M−H−168−18]− | ||||
| 481 [M−H−304]− | |||||
|
| |||||
|
| 41.69 | 881 | 729 [M−H−152]− | ( | |
|
| 54.71 | 577 [M−H−304]− | or | ||
|
| 55.38 | ( | |||
|
| 54.93 | 897 | 745 [M−H−152]− | ( | |
|
| 55.28 | 727 [M−H−170]− | |||
|
| 49.44 | 913 | 761 [M–H−152]− | ( | |
|
| 50.62 | 787 [M−H−126]− | |||
| 743 [M−H−170]− | |||||
|
| 54.88 | 937 | 919 [M−H−18]− | 641 [M−H−170−126]− | ( |
|
| 55.27 | 811 [M−H−126]− | 629 [M−H−170−138]− | ||
| 785 [M−H−152]− | 591 [M−H−152−176−18]− | ||||
| 767 [M−H−170]− | 599 [M−H−176−168]− | ||||
|
| |||||
|
| 55.54 | 865 | 739 [M−H−126]− | ( | |
| 713 [M−H−152]− | |||||
| 695 [M−H−152−18]− | |||||
| 577 [M−H−288]− | |||||
| 425 [M−H−288−152]− | |||||
|
| |||||
|
| 54.95 | 1017 | n.a. | n.a. | ( |
|
| 40.75 | 1049 | n.a. | n.a. | ( |
|
| 45.73 | ||||
|
| 54.86 | ||||
|
| 55.22 | ||||
|
| 46.55 | 1089 | n.a. | n.a. | ( |
|
| 55.52 | ||||
|
| |||||
|
| 55.25 | 1153 | n.a. | n.a. | ( |
|
| 55.23 | 1169 | n.a. | n.a. | ( |
|
| 55.32 | 1185 | n.a. | n.a. | ( |
|
| 54.83 | 1201 | n.a. | n.a. | ( |
|
| 54.90 | 1217 | n.a. | n.a. | ( |
(*) ions obtained by FIA-ESI-IT-MSn. (#) ions obtained by HPLC-ESI-IT-MS. n.a. not analyzed.
Figure 1Negative ion ESI-MSn spectra of B-type dimer. (A) MS2 of m/z 745 [M−H]− and (B) MS3 of m/z 593 [M−H]−.
Figure 2Negative ion ESI-MSn spectra of B-type dimer. (A) MS2 of m/z 785 [M−H]− and (B) MS3 of m/z 617 [M−H]−.
Figure 3Characteristic fragmentation pathways of B-type proanthocyanidins proposed for the glucuronide dimer identified in the enriched fractions from roots of P. biglobosa.
Figure 4Negative ion ESI-MSn spectra of B-type dimer. (A) MS2 of m/z 937 [M−H]−, (B) MS3 of m/z 785 [M−H]− and (C) MS3 of m/z 767 [M−H]−.
Figure 5Negative ion HPLC/ESI-IT-MS analysis of proanthocyanidins present in P. biglobosa. (a) total ion chromatogram of roots and (b) total ion chromatogram of barks.