| Literature DB >> 30486448 |
Alessandra Braca1,2, Chiara Sinisgalli3, Marinella De Leo4,5, Beatrice Muscatello6, Pier Luigi Cioni7, Luigi Milella8, Angela Ostuni9, Sergio Giani10, Rokia Sanogo11.
Abstract
Background: Adansonia digitata L. (Malvaceae), also known as baobab, is a tree attracting recent interest especially due to the high nutritional value of the fruit pulp. However, few studies are reported on the secondary metabolite content, showing high variability depending on the geographic region.Entities:
Keywords: Adansonia digitata; LC-ESI-MS/MS; antidiabetic activity; antioxidant activity; baobab; phenols; tiliroside; volatile organic compounds
Mesh:
Substances:
Year: 2018 PMID: 30486448 PMCID: PMC6321735 DOI: 10.3390/molecules23123104
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Antioxidant activity of three different n-butanol extracts of baobab fruit pulp.
| TPC (mgGAE/g) * | DPPH (mgTE/g) ** | ABTS (mgTE/g) ** | FRAP (mgTE/g) ** | BCB (%AA) *** | SO (IC50) **** | |
|---|---|---|---|---|---|---|
| Fruit 1 | 148.19 ± 6.40 a | 355.42 ± 2.76 a | 667.38 ± 34.56 a | 439.94 ± 26.02 a | 12.01 ± 3.21 a | 0.18 ± 0.02 a |
| Fruit 2 | 120.07 ± 4.67 b | 322.65 ± 7.95 a | 654.71 ± 26.72 a | 293.99 ± 14.58 b | 57.19 ± 2.04 b | 0.89 ± 0.09 a |
| Fruit 3 | 161.40 ± 2.82 c | 392.22 ± 28.13 b | 799.44 ± 35.96 b | 458.50 ± 23.41 a | 68.83 ± 0.38 b | 0.55 ± 0.002 a |
* TPC: total polyphenol content expressed as milligrams of gallic acid per grams of extract; ** DPPH: 2,2-diphenyl-1-picrylhydrazyl; ABTS: 2,2′-azinobis-(3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt; FRAP: ferric reducing antioxidant power expressed as milligrams of Trolox equivalents per grams of extract; *** BCB: β-carotene bleaching assay expressed as antioxidant activity at 0.5 mg/mL; **** SO: superoxide anion expressed as concentration required for 50% inhibition. Experiments were carried out in triplicate and data were reported as mean ± SD. Significant differences (p < 0.05) are highlighted with different letters (a, b and c).
Figure 1Relative antioxidant capacity index (RACI) values obtained comparing TPC, DPPH, FRAP, BCB, NO, and SO results. DPPH: 2,2-diphenyl-1-picrylhydrazyl; FRAP: ferric reducing antioxidant power; BCB: β-carotene bleaching assay; TPC: total polyphenolic content; RACI: relative antioxidant capacity index.
Figure 2Concentration-dependent inhibition of α-glucosidase by baobab fruit pulp extracts and acarbose (standard).
Figure 3Inhibition of α-glucosidase by baobab fruit pulp extracts and acarbose (standard). Experiments were carried out in triplicate and data were reported as mean ± SD. Significant differences (p < 0.05) are highlighted with different letters (a, a,b and b).
Figure 4HPLC-ESI-MS/MS profiles of three Malian commercial samples of baobab pulp fruit (Fruits 1, 2, and 3) and leaves. Peak characteristics are showed in Table 2.
Mass/UV spectral data and retention time (tR) of compounds 1–26 detected in the baobab fruit pulp (F) and leaves (L). Compound numbers correspond with peak numbers in Figure 4. Compounds are listed in order of increasing tR.
| Peak | Compound | M | [M + HCOO]− | [M − H]− | ESI-MS/MS Ions ( | UV (λmax) | Organ | |
|---|---|---|---|---|---|---|---|---|
| Organic acids | ||||||||
|
| citric acid | 4.6 | 192 | 191 | 173, 129, | 212 | F | |
| Phenolic compounds | ||||||||
|
| procyanidin dimer I | 21.0 | 578 | 577 | 451, | 246, 279 | F, L | |
|
| procyanidin dimer II | 22.1 | 578 | 577 | 451, | 245, 279 | F, L | |
|
| feruloylquinic acid | 23.1 | 368 | 413 ** | 367 | 248, 279 | F | |
|
| procyanidin trimer I | 24.2 | 866 | 865 | 847, 739, 713, | 247, 279 | F, L | |
|
| procyanidin trimer II | 25.2 | 866 | 865 | 847, 739, 713, | 246, 279 | F, L | |
|
| procyanidin tetramer | 25.5 | 1154 | 1153 | 1001, | 238, 279 | L | |
|
| catechin | 25.8 | 290 | 335 | 289 | 245, 279 | F | |
|
| epicatechin | 26.7 | 290 | 335 | 289 | 243, 279 | F | |
|
| apigenin | 34.0 | 448 | 493 | 447 | 357, | 242, 270, 349 | L |
|
| quercetin glycoside *** | 35.0 | 756 | 755 | 737, 609, 591, 489, | 244, 268, 352 | L | |
|
| vitexin/isovitexin | 36.5 | 432 | 431 | 341, | 243, 273, 331 | L | |
|
| kaempferol glycoside **** | 38.6 | 740 | 739 | 593, 575, | 244, 278 | L | |
|
| rutin | 40.5 | 610 | 609 | 463, 343, | 256, 356 | L | |
|
| quercetin 3- | 40.7 | 464 | 463 | 445, | 246, 278 | F | |
|
| quercetin pentoside | 42.1 | 434 | 433 | 248, 268, 355 | L | ||
|
| quercetin 3-hydroxy-3-methylglutaryl- | 42.7 | 608 | 607 | 545, 505, | 247, 273, 344 | L | |
|
| kaempferol glycoside I | 43.5 | 594 | 639 | 593 | 447, | 247, 270, 315 | L |
|
| kaempferol 3- | 43.8 | 448 | 447 | 327, | 247, 278 | F | |
|
| kaempferol glycoside II | 44.8 | 594 | 639 | 593 | 447, | 248, 269, 315 | L |
|
| kaempferol 3- | 44.9 | 448 | 447 | 327, | 247, 278 | F | |
|
| quercetin | 50.1 | 302 | 301 | 273, 257, 229, | 277 | L | |
|
| tiliroside isomer | 52.0 | 594 | 593 | 447, 429, | 270, 312 | F, L | |
|
| tiliroside I | 52.8 | 594 | 593 | 447, 429, | 268, 287, 315 | F, L | |
|
| tiliroside II | 53.6 | 594 | 593 | 447, 429, | 269, 312 | F, L | |
|
| kaempferol | 55.8 | 286 | 285 | 277 | F |
* The base ion peaks generated in the ESI-MS/MS experiments are shown in bold; ** Product ions were generated by fragmentation of [M + HCOO]−; *** Identified as quercetin 3-O-(2,6-di-O-rhamnosyl)-glucoside by Sokeng et al. [14]; **** Identified as kaempferol 3-O-(4′′-rhamnosyl)-neohesperidoside by Sokeng et al. [14].
Quantitative amount (μg/g ± standard deviation of dried fruit pulp) of phenol constituents detected in baobab fruit pulp. Compound numbers (in bold) correspond with peak numbers in Figure 4.
| Peak | Fruit 1 | Fruit 2 | Fruit 3 | |
|---|---|---|---|---|
| procyanidins | 1.07 ± 0.01 | 0.228 ± 0.002 | 0.50 ± 0.09 | |
| tiliroside I, II and isomer | 17.4 ± 0.6 | 33 ± 2 | 23 ± 2 | |
| kaempferol |
| 0.010 ± 0.001 | 0.017 ± 0.001 | 0.020 ± 0.002 |
| kaempferol 3- |
| 0.13 ± 0.02 | 0.18 ± 0.01 | 0.144 ± 0.002 |
| catechin and epicatechin | 4.5 ± 0.1 | 1.28 ± 0.04 | 2.5 ± 0.2 | |
| quercetin 3- |
| nd | 0.010 ± 0.001 | 0.010 ± 0.001 |
| feruloylquinic acid |
| 0.29 ± 0.01 | 0.27 ± 0.01 | 0.22 ± 0.01 |
| Total | 23 ± 1 | 35 ± 2 | 26 ± 2 |
Total volatile organic compound (VOC) profile for the baobab samples by HS-SPME-GC/MS.
| N. |
| LRI | Component | Relative Content % | |||
|---|---|---|---|---|---|---|---|
| Leaves | Fruit 1 | Fruit 2 | Fruit 3 | ||||
| 1 | 2.01 | 736 | isopentyl alcohol | tr | - | - | - |
| 2 | 2.56 | 800 | hexanal | tr | - | - | - |
| 3 | 3.01 | 834 | isovaleric acid | tr | - | - | - |
| 4 | 3.28 | 853 | ( | 2.6 | - | - | - |
| 5 | 4.72 | 926 | tricyclene | tr | - | - | - |
| 6 | 5.36 | 953 | 1-hexanol | 1.7 | - | - | - |
| 7 | 5.44 | 961 | benzaldehyde | 0.5 | - | - | - |
| 8 | 5.79 | 980 | β-pinene | 0.3 | - | - | - |
| 9 | 5.85 | 985 | 1-octen-3-ol | 0.1 | - | - | - |
| 10 | 6.05 | 987 | 6-methyl-5-hepten-2-one | 4.8 | tr | tr | tr |
| 11 | 6.72 | 1011 | δ-3-canene | 0.1 | - | - | - |
| 12 | 7.10 | 1026 | 1- | 1.6 | - | - | - |
| 13 | 7.23 | 1031 | 3-ethyl-1-hexanol | tr | - | - | - |
| 14 | 7.30 | 1032 | limonene | 1.2 | 6.1 | - | - |
| 15 | 7.37 | 1035 | 1,8-cineole | tr | 1.0 | 2.0 | tr |
| 16 | 8.80 | 1079 | 1.9 | 1.2 | 0.3 | tr | |
| 17 | 9.37 | 1090 | 1.0 | 1.0 | 0.2 | - | |
| 18 | 9.83 | 1098 | linalool | 1.7 | 4.6 | - | tr |
| 19 | 9.97 | 1102 | nonanal | 0.4 | 6.5 | 6.4 | 4.8 |
| 20 | 10.11 | 1105 | α-thujone | 4.2 | - | - | tr |
| 21 | 10.53 | 1110 | phenyl ethyl alcohol | 0.8 | - | - | - |
| 22 | 11.51 | 1143 | camphor | - | tr | 0.5 | 1.9 |
| 23 | 11.80 | 1151 | ethyl hexyl acetate | 0.1 | - | - | - |
| 24 | 11.91 | 1154 | menthone | - | 4.3 | 5.0 | 7.4 |
| 25 | 12.31 | 1164 | isomenthone | - | tr | 2.0 | 2.5 |
| 26 | 12.43 | 1165 | borneol | - | 1.9 | 1.7 | 2.4 |
| 27 | 12.73 | 1173 | menthol | - | tr | 4.8 | 3.9 |
| 28 | 12.91 | 1177 | 0.7 | - | - | - | |
| 29 | 13.50 | 1190 | α-terpineol | tr | - | - | - |
| 30 | 13.81 | 1200 | safranal | 0.9 | tr | 0.4 | - |
| 31 | 14.09 | 1204 | decanal | 0.6 | tr | 3.3 | 5.3 |
| 32 | 14.69 | 1217 | β-cyclocitral | 2.5 | - | - | - |
| 33 | 15.73 | 1240 | cuminaldheyde | - | - | 1.7 | 1.3 |
| 34 | 16.25 | 1256 | β-cyclo-homocitral | 0.7 | - | - | - |
| 35 | 17.7 | 1283 | ( | - | tr | 31.6 | 24.0 |
| 36 | 18.74 | 1312 | 2,3,4-trimethyl benzaldheyde | - | - | 0.6 | - |
| 37 | 19.71 | 1340 | δ-elemene | 0.6 | tr | tr | - |
| 38 | 20.23 | 1351 | δ-longipinene | 0.1 | - | - | - |
| 39 | 21.34 | 1376 | α-copaene | 5.0 | 7.3 | 2.0 | 1.9 |
| 40 | 22.08 | 1391 | β-elemene | 0.7 | - | - | - |
| 41 | 22.45 | 1400 | tetradecane | 1.3 | - | tr | - |
| 42 | 22.54 | 1402 | longifolene | 0.7 | 17.9 | 5.7 | 4.6 |
| 43 | 22.87 | 1408 | α-cedrene | - | 4.4 | 1.1 | 3.5 |
| 44 | 23.18 | 1418 | β-caryophyllene | 24.0 | 21.2 | 4.3 | 9.3 |
| 45 | 23.57 | 1433 | γ-elemene | 4.6 | - | - | 1.9 |
| 46 | 23.96 | 1439 | trans-α-bergamotene | - | - | - | 0.7 |
| 47 | 24.62 | 1454 | α-humulene | 1.0 | - | - | - |
| 48 | 24.76 | 1456 | ( | 8.1 | - | - | 1.8 |
| 49 | 25.96 | 1483 | ar-curcumene | - | 1.6 | - | tr |
| 50 | 26.07 | 1485 | ( | 6.2 | - | - | - |
| 51 | 26.36 | 1495 | bicyclogermacrene | 0.6 | - | - | - |
| 52 | 26.67 | 1500 | - | - | 1.1 | 2.3 | |
| 53 | 27.00 | 1509 | β-bisabolene | 1.3 | tr | 0.5 | 1.0 |
| 54 | 27.56 | 1524 | δ-cadinene | - | 3.9 | 1.3 | 1.8 |
| 55 | 27.84 | 1536 | dihydroactinidiolide | 4.3 | - | - | - |
| 56 | 29.93 | 1581 | caryophyllene oxide | 1.2 | tr | 0.8 | tr |
| 57 | 30.68 | 1599 | cedrol | - | 6.2 | 2.4 | 5.0 |
| 58 | 34.45 | 1700 | - | - | tr | - | |
| 59 | 39.87 | 1845 | hexahydrofarnesyl acetone | 0.5 | - | - | - |
| Total | 89.3 | 97.8 | 85.5 | 91.5 | |||
|
|
|
|
|
| |||
| monoterpene hydrocarbons | 3.3 | 6.1 | 18.1 | - | |||
| oxygenated monoterpenes | 9.7 | 12.1 | 15.4 | 20.8 | |||
| sesquiterpene hydrocarbons | 38.6 | 56.5 | 3.8 | 24.8 | |||
| oxygenated sesquiterpenes | 6.0 | 6.3 | 16.2 | 5.1 | |||
| non terpene derivatives | 13.3 | 16.6 | 31.6 | 15.1 | |||
| phenylpropanoids | - | 0.1 | 0.4 | 24.0 | |||
| apocarotenoids | 18.4 | 0.1 | 18.1 | 1.8 | |||
LRI = linear retention index; tr = traces.