| Literature DB >> 26493049 |
Daniela Batista1, Pedro L Falé1,2, Maria L Serralheiro1, Maria E Araújo1, Paulo J A Madeira1, Carlos Borges1, Isabel Torgal3, Margarida Goulart3, Jorge Justino3, Alice Martins4, Amélia P Rauter1.
Abstract
The inhibition of α-glucosidase and glucose-6-phosphatase, two enzymes involved in the carbohydrate metabolism, is an important target to control glycaemia on individuals with type 2 diabetes. In this work we report for the first time the inhibition of both enzymes by the antihyperglycemic n-butanol extract from Genista tenera (Fabaceae). This extract decreased α-glucosidase and glucose-6-phosphatase activities to 0.97 and 80.25 %, respectively, being more effective than acarbose, and phlorizin, the positive controls, which reduced enzymes activities only to 17.39 and 96.06 %. Once inflammation and oxidative stress are related to diabetic impairments, the anti-inflammatory activity of the extract was also evaluated, through its inhibitory activity over COX-1 enzyme (47.5 % inhibition). Moreover, after induction of oxidative stress by UV radiation, the viability of irradiated rat liver hepatoma cells exposed to the extract was significantly higher (67.82 %) than that promoted by ascorbic acid, the positive control (45.05 %). In addition, the stability of the extract under gastrointestinal conditions was evaluated by HPLC-DAD-ESI-MS/MS. Flavonoid diglycosides were identified as the main constituents of the extract, and no alterations in the chemical composition nor in the antioxidant activity were observed after in vitro digestion with artificial gastric and pancreatic juices.Entities:
Keywords: Antioxidant activity; Flavonoid glycosides; HPLC–DAD-ESI–MS/MS; In vitro digestion; α-Glucosidase inhibition
Year: 2015 PMID: 26493049 PMCID: PMC4681709 DOI: 10.1007/s13659-015-0077-z
Source DB: PubMed Journal: Nat Prod Bioprospect ISSN: 2192-2209
Fig. 1I Activity of rat small intestine α-glucosidase in the presence of G. tenera n-butanol extract. The activity was determined using maltose as substrate and acarbose as positive control. Each value is expressed as mean + standard deviation from a total of five replicates; II Activity of glucose-6-phosphatase from rabbit liver microsomes in the presence of G. tenera n-butanol, extract. The activity was determined using glucose-6-phosphate as substrate and phlorizin as positive control. Each value is expressed as mean + standard deviation from a total of 12 tests. For both assays the enzyme activity in the presence of the inhibitor is expressed in percentage of the enzyme activity without inhibitor (100 %). The same concentrations of extract, acarbose and phlorizin were used, 400 mg/L. Indexes (a–c) indicate statistically significant differences P < 0.05 analysed by the Tukey a posteriori test
Fig. 2In vitro gastric and pancreatic digestions of G.tenera n-butanol extract analysed by HPLC–DAD:7-O-glucosyl-8-glucosylgenistein (1), 8-(glucosyloxyglucosyl)genistein (2), 4´,7-di-O-glucosylgenistein (3), 6,8-diglucosylapigenin (4), unknown (5*), 8-[apiosyl-(1 → 6)-glucosyl]genistein (6), 3′,7-di-O-glucosylluteolin (7), rutin (8), and 3-O-rutinosylisorhamnetin (9)
Fig. 3Structures of the flavonoids identified in the n-butanol extract of G. tenera
Putative identification of glycosyl flavonoids from Genista tenera n-butanol extract, by HPLC–DAD and HPLC-ESI–MSn
| Peak | Rt (min) | λmax (nm) | [M-H]− |
| Identification (Massbank score and record) |
|---|---|---|---|---|---|
|
| 7.1 | 261, 295 sh | 593 | [MS2 593]: 503 (2), 473 (100) | 7- |
|
| 8.2 | 258, 290 sh | 593 | [MS2 593]: 503 (<1), 341 (5), 311 (100), 283 (7) | 8-(Glucosyloxyglucosyl)genistein |
|
| 8.7 | 261, 271 sh, 322 sh | 639a | [MS2 639]: 593 (10), 591 (2), 431 (100), 269 (2) | 4´,7-Di- |
|
| 9.2 | 272, 293, | 593 | [MS3 593]: 575 (8), 503 (30), 473 (100), 455 (4), 383 (22), 353 (39) | 6,8-Diglucosylapigenin |
|
| 9.6 | – | 563 | – | Unknown |
|
| 10.5 | 261, 290 sh | 563 | [MS2 563]: 341 (6), 311 (100), 283 (11) | 8-[Apiosyl-(1 → 6)-glucosyl]genistein |
|
| 12.2 | 240, 263, | 609 | [MS2 609]: 447 (100), 285 (6) | 3′,7-Di- |
|
| 13.6 | 241, 257, | 609 | [MS2 609]: 447(2), 343 (8), 301 (100), 271 (8), 255 (4), 179 (3) | Rutin (0.4606, PR100804) |
|
| 15.1 | 239, 257, | 623 | [MS2 623]: 315 (100), 300 (19), 271 (5), 255 (3) | 3- |
sh shoulder
aThis compound ionized as [M + HCOO]−