| Literature DB >> 28326319 |
Seung Hwan Hwang1, Shin Hwa Kwon2, Set Byeol Kim1, Soon Sung Lim3.
Abstract
Stauntonia hexaphylla (Thunb.) Decne. (Lardizabalaceae) leaves (SHL) have been used traditionally as analgesics, sedatives, diuretics, and so on, in China. To date, no data have been reported on the inhibitory effect of SHL and its constituents on rat lens aldose reductase (RLAR) and advanced glycation end products (AGEs). Therefore, the inhibitory effect of compounds isolated from SHL extract on RLAR and AGEs was investigated to evaluate potential treatments of diabetic complications. The ethyl acetate (EtOAC) fraction of SHL extract showed strong inhibitory activity on RLAR and AGEs; therefore, EtOAc fraction (3.0 g) was subjected to Sephadex LH-20 column chromatography, for further fractionation, with 100% MeOH solvent system to investigate its effect on RLAR and AGEs. Phytochemical investigation of SHL led to the isolation of seven compounds. Among the isolated compounds, chlorogenic acid, calceolarioside B, luteolin-3'-O-β-D-glucopyranoside, quercetin-3-O-β-D-glucopyranoside, and luteolin-7-O-β-D-glucopyranoside exhibited significant inhibitory activity against RLAR with IC50 in the range of 7.34-23.99 μM. In addition, 3-(3,4-dihydroxyphenyl) propionic acid, neochlorogenic acid, and luteolin-3'-O-β-D-glucopyranoside exhibited the most potent inhibitory activity against formation of AGEs, with an IC50 value of 115.07-184.06 μM, compared to the positive control aminoguanidine (820.44 μM). Based on these findings, SHL dietary supplements could be considered for the prevention and/or treatment of diabetes complication.Entities:
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Year: 2017 PMID: 28326319 PMCID: PMC5343222 DOI: 10.1155/2017/4273257
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Inhibitory effect of crude extract and fractions of Stauntonia hexaphylla leaves on rat lens aldose reductase (RLAR), advanced glycation end products (AGEs), and antioxidant (DPPH).
| Extract and fractions | IC50 ( | |||
|---|---|---|---|---|
| RLAR | AGEs | DPPH | ||
| Extract | 70% EtOH | 34.52 ± 2.21 | 422.51 ± 36.77 | 193.19 ± 19.01 |
|
| ||||
| Fractions | Hex | 31.24 ± 2.24 | 270.51 ± 26.77 | >2000 |
| CH2Cl2 | 24.87 + 0.98 | 222.53 ± 11.25 | 420.28 ± 41.23 | |
| EtOAc | 6.90 ± 0.34 | 50.07 ± 4.21 | 63.00 ± 6.20 | |
|
| 14.98 ± 1.01 | 100.90 ± 9.32 | 254.84 ± 21.52 | |
| Water | >50 | >500 | 1109.59 ± 98.17 | |
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| ||||
| Positive controls | Quercetinb | 5.48 ± 0.44 | — | — |
| Aminoguanidinec | — | 90.70 ± 8.71 | — | |
| L-ascorbic acidd | — | — | 9.58 ± 7.89 | |
aThe IC50 value was defined as a mean ± SEM of half-maximal inhibitory concentration from three independent experiments performed in duplicate.
bQuercetin is the positive control for aldose reductase.
cAminoguanidine is the positive control for advanced glycation end products.
dL-ascorbic acid is the positive control for DPPH.
Figure 1Chemical structures of the compounds isolated from Stauntonia hexaphylla leaves.
Inhibitory effect of compounds isolated from Stauntonia hexaphylla leaves on rat lens aldose reductase (RLAR).
| Compounds | IC50 ( |
|---|---|
| 3-(3,4-Dihydroxyphenyl)-propionic acid ( | >1000 |
| Chlorogenic acid ( | 8.35 ± 0.45 |
| Neochlorogenic acid ( | 72.03 ± 25.77 |
| Calceolarioside B ( | 23.99 ± 2.30 |
| Luteolin-3′- | 7.34 ± 0.35 |
| Quercetin-3- | 10.40 ± 1.38 |
| Luteolin-7- | 16.10 ± 1.20 |
|
| |
| Quercetinb | 18.09 ± 1.30 |
aThe IC50 value was defined as a mean ± SEM of half-maximal inhibitory concentration from three independent experiments performed in duplicate.
bQuercetin is the positive control for aldose reductase.
Inhibitory effect of compounds isolated from Stauntonia hexaphylla leaves on advanced glycation end products (AGEs) formation.
| Compounds | IC50 ( |
|---|---|
| 3-(3,4-Dihydroxyphenyl)-propionic acid ( | 184.06 ± 17.62 |
| Chlorogenic acid ( | >1000 |
| Neochlorogenic acid ( | 115.07 ± 10.47 |
| Calceolarioside B ( | >1000 |
| Luteolin-3′- | 117.80 ± 11.46 |
| Quercetin-3- | >1000 |
| Luteolin-7- | >1000 |
|
| |
| Aminoguanidineb | 820.44 ± 79.42 |
aThe IC50 value was defined as a mean ± SEM of half-maximal inhibitory concentration from three independent experiments performed in duplicate.
bAminoguanidine is the positive control for advanced glycation end products.
Inhibitory effect of compounds isolated from Stauntonia hexaphylla leaves on DPPH radical scavenging activity.
| Compounds | IC50 ( |
|---|---|
| 3-(3,4-Dihydroxyphenyl)-propionic acid ( | 109.73 ± 9.39 |
| Chlorogenic acid ( | 162.60 ± 14.39 |
| Neochlorogenic acid ( | >1000 |
| Calceolarioside B ( | 94.60 ± 6.86 |
| Luteolin-3′- | 96.28 ± 9.19 |
| Quercetin-3- | 122.34 ± 10.94 |
| Luteolin-7- | >1000 |
|
| |
| L-ascorbic acidb | 54.39 ± 5.73 |
aThe IC50 value was defined as a mean ± SEM of half-maximal inhibitory concentration from three independent experiments performed in duplicate.
bL-ascorbic acid is the positive control for DPPH radical scavenging activity.
Figure 2HPLC profile of seven compounds isolated from EtOAc fraction of Stauntonia hexaphylla, 70% ethanol extract at 254 nm.