| Literature DB >> 26060918 |
Ming-Zhi Zhu1, Wei Wu2, Li-Li Jiao3, Ping-Fang Yang4, Ming-Quan Guo5.
Abstract
Lotus (Nelumbo nucifera) leaves, a traditional Chinese medicinal herb, are rich in flavonoids. In an effort to thoroughly analyze their flavonoid components, macroporous resin chromatography coupled with HPLC-MS/MS was employed to simultaneously enrich and identify flavonoids from lotus leaves. Flavonoids extracted from lotus leaves were selectively enriched in the macroporous resin column, eluted subsequently as fraction II, and successively subjected to analysis with the HPLC-MS/MS and bioactivity assays. Altogether, fourteen flavonoids were identified, four of which were identified from lotus leaves for the first time, including quercetin 3-O-rhamnopyranosyl-(1→2)-glucopyranoside, quercetin 3-O-arabinoside, diosmetin 7-O-hexose, and isorhamnetin 3-O-arabino- pyranosyl-(1→2)-glucopyranoside. Further bioactivity assays revealed that these flavonoids from lotus leaves possess strong antioxidant activity, and demonstrate very good potential to be explored as food supplements or even pharmaceutical products to improve human health.Entities:
Keywords: antioxidant activity; lotus leaves; macroporous resin chromatography; mass spectrometry
Mesh:
Substances:
Year: 2015 PMID: 26060918 PMCID: PMC6272455 DOI: 10.3390/molecules200610553
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Identification of flavonoids in fraction II of lotus leaves by LC-MS/MS.
| Peak No. | Rt (min) a | NI-MS | MS/MS | Identification |
|---|---|---|---|---|
| 1 | 25.9 | 479 | 316 | Myricetin 3- |
| 2 | 27.4 | 595 | 300 | Quercetin 3- |
| 3 | 33.0 | 609 | 300 | Quercetin 3- |
| 4 | 34.1 | 463 | 300 | Quercetin 3- |
| 5 | 35.5 | 463 | 300 | Quercetin 3- |
| 6 | 37.2 | 477 | 301 | Quercetin 3- |
| 7 | 38.7 | 433 | 300 | Quercetin 3- |
| 8 | 40.6 | 447 | 284 | Kaempferol 3- |
| 9 | 43.7 | 447 | 284 | Kaempferol 3- |
| 10 | 45.7 | 461 | 285 | Kaempferol 3- |
| 11 | 47.5 | 461 | 446; 298; 283 | Diosmetin 7- |
| 12 | 52.6 | 609 | 314; 299 | Isorhamnetin 3- |
| 13 | 56.7 | 477 | 314 | Isorhamnetin 3- |
| 14 | 57.9 | 491 | 315 | Isorhamnetin 3- |
a Rt: retention time on HPLC.
Figure 1The HPLC profile of flavonoids in fraction II from lotus leaves recorded at 350 nm.
Figure 2The MS/MS model of flavonoid O-glycosides.
Figure 3The MS/MS spectra of newly identified flavonoids in fraction II from lotus leaves: (A) peak 3; (B) peak 7; (C) peak 11; (D) peak 12.
Total flavonoids in fraction II from lotus leaves a and their corresponding antioxidant activity.
| Sample | Total Flavonoid (mg IE/g) | DPPH | ABTS | FRAP (mmol Fe2+/100 g) | ||
|---|---|---|---|---|---|---|
| (μmol TE/g) | IC50 value b (mg/mL) | (μmol TE/g) | IC50 value b (mg/mL) | |||
| Fraction II | 690.5 ± 35.8 | 4695.3 ± 144.3 | 0.101 ± 0.007 | 5012.3 ± 133.8 | 0.138 ± 0.007 | 500.5 ± 62.8 |
| BHT | nt | 3612.3 ± 170.9 | 0.121 ± 0.004 | 4567.0 ± 155.6 | 0.143 ± 0.004 | nt |
| Trolox | nt | nt | 0.112 ± 0.005 | nt | 0.119 ± 0.005 | 642.1 ± 55.7 |
a Each value is presented as the mean ± SD of three replicate determinations; b IC50 value was determined to be the effective concentration at which DPPH and ABTS radicals were inhibited by 50%, respectively. IE, isoquercetin equivalents; TE, Trolox equivalents; nt, not tested.