| Literature DB >> 32033416 |
Ana Clara da Costa Pinaffi1, Geni Rodrigues Sampaio1, Maiara Jurema Soares1, Fereidoon Shahidi2, Adriano Costa de Camargo3, Elizabeth A F S Torres1.
Abstract
The Brazilian Food Supplement Law recently recognized that guarana (Paullinia cupana) contains bioactive substances, hence supporting its role as a functional food ingredient. The health benefits of guarana are associated, at least in part, to its phenolic compounds. However, to the best of our knowledge, there is no literature addressing the presence of phenolic compounds in the fraction containing insoluble-bound compounds and its contribution in terms of alpha-glucosidase inhibition. The concentration of phenolic extracts released from the insoluble-bound fraction required to inhibit 50% of alpha-glucosidase (IC50) activity was 5.8-fold lower than that present in the soluble counterpart. Both fractions exhibited a mixed inhibition mode. Fourteen proanthocyanidins (dimers to tetramers) present in the insoluble-bound fraction were tentatively identified by MALDi-TOF-MS. Future studies aiming at increasing the concentration of the soluble counterpart are deemed necessary. The results presented here enhance the phenolic database of guarana and have a practical impact on the procurement of nutraceuticals and functional ingredients related to the prevention and/or management of type 2 diabetes. The Brazilian normative on food supplements has been recently revised. This study lends support to the future inclusion of guarana powder in the list of sources of proanthocyanidins for the industry of food supplements.Entities:
Keywords: Paullinia cupana; alpha-glucosidase; bioactive compounds; polyphenols; proanthocyanidins; type 2 diabetes
Mesh:
Substances:
Year: 2020 PMID: 32033416 PMCID: PMC7036825 DOI: 10.3390/molecules25030679
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Dose-response curves of the inhibitory activity of (A) the soluble polyphenols (SPP) fraction and (B) the insoluble-bound polyphenols (IBPP) fraction on alpha-glucosidase.
Figure 2Reaction progress curve in the absence of inhibitors, and in the presence of SPP or IBPP as an inhibitor.
Figure 3Enzyme kinetics analysis of both polyphenol fractions on alpha-glucosidase. (A) Lineweaver–Burk plot of the SPP fraction. (B) Lineweaver–Burk plot of the IBPP fraction.
Calculated inhibition kinetics parameters for the soluble (SPP) and the insoluble-bound polyphenol (IBPP) fractions from guarana powder (Paullinia cupana) on alpha-glucosidase.
| Km | Vmax | KI | K’I | K’I/KI | Inhibition Mode | |
|---|---|---|---|---|---|---|
| No inhibitor | 0.128 | 0.020 | / | / | / | / |
| SPP | 0.489 | 0.003 | 0.403 | 1.735 | 4.30 | Mixed |
| IBPP | 0.292 | 0.007 | 0.287 | 0.847 | 2.95 | Mixed |
Figure 4MALDI-TOF spectra of the insoluble-bound polyphenol from guarana powder. (A) 200–1400 Da. 1: Monomers peaks cluster; 2: Dimers peaks cluster; 3: Trimer peaks cluster; 4: Tetramer peaks cluster. (B) 700–4700 Da. 5: Pentamers peaks cluster.
Figure 5Simplified chemical structures of proanthocyanidin monomers and representation of the type-A and type-B linkages.
Figure 6MALDI-TOF spectra of the insoluble-bound polyphenol from guarana powder: inset of the spectra highlighting the 16 Da increments associated with varying degrees of hydroxylation.
Insoluble-bound proanthocyanidin composition from guarana powder (Paullinia cupana) a.
| Calculated | Observed | Possible Identity | |
|---|---|---|---|
|
| 544.136 | 545.013 | Type-A afzelechin dimer |
| 560.131 | 560.993 | Type-A afzelechin/catechin dimer | |
| 576.126 | 576.969 | Type-A catechin dimer | |
|
| 814.188 | 815.082 | Type-A afzelechin trimer |
| 830.183 | 831.052 | Type-A (2)afzelechin/catechin trimer | |
| 846.178 | 847.021 | Type-A afzelechin/(2)catechin | |
| 862.173 | 862.995 | Type-A catechin trimer | |
|
| 1090.288 | 1089.061 | Type-B afzelechin tetramer |
| 1106.283 | 1105.044 | Type-B (3)afzelechin/catechin tetramer | |
| 1122.278 | 1121.009 | Type-B (2)afzelechin/(2)catechin tetramer | |
| 1116.230 | 1117.052 | Type-A (2)afzelechin/(2)catechin tetramer | |
| 1132.225 | 1133.023 | Type-A afzelechin/(3)catechin tetramer | |
| 1148.220 | 1148.998 | Type-A catechin tetramer | |
| 1164.215 | 1164.962 | Type-A (3)catechin/gallocatechin tetramer |
a: Selected peaks of the IBPP fraction obtained with MALDI-TOF.