| Literature DB >> 29299033 |
Xican Li1,2, Hong Xie1,2, Qian Jiang1, Gang Wei1,2, Lishan Lin1, Changying Li1, Xingmei Ou1, Lichan Yang1, Yulu Xie1,2, Zhen Fu3,4, Yamei Liu3,4, Dongfeng Chen4.
Abstract
The natural dihydroflavonol (+) taxifolin was investigated for its protective effect on Fenton reagent-treated bone marrow-derived mesenchymal stem cells (bmMSCs). Various antioxidant assays were used to determine the possible mechanism. These included •OH-scavenging, 2-phenyl-4, 4, 5, 5-tetramethylimidazoline-1-oxyl-3-oxide radical-scavenging (PTIO•-scavenging), 1, 1-diphenyl-2-picryl-hydrazl radical-scavenging (DPPH•-scavenging), 2, 2'-azino-bis (3-ethylbenzo-thiazoline-6-sulfonic acid) radical-scavenging (ABTS+•-scavenging), Fe3+-reducing, and Cu2+-reducing assays. The Fe2+-binding reaction was also investigated using UV-Vis spectra. The results revealed that cell viability was fully restored, even increasing to 142.9 ± 9.3% after treatment with (+) taxifolin. In the antioxidant assays, (+) taxifolin was observed to efficiently scavenge •OH, DPPH• and ABTS+• radicals, and to increase the relative Cu2+- and Fe3+-reducing levels. In the PTIO•-scavenging assay, its IC50 values varied with pH. In the Fe2+-binding reaction, (+) taxifolin was found to yield a green solution with two UV-Vis absorbance peaks: λmax = 433 nm (ε =5.2 × 102 L mol-1 cm -1) and λmax = 721 nm (ε = 5.1 × 102 L mol-1 cm -1). These results indicate that (+) taxifolin can act as an effective •OH-scavenger, protecting bmMSCs from •OH-induced damage. Its •OH-scavenging action consists of direct and indirect antioxidant effects. Direct antioxidation occurs via multiple pathways, including ET, PCET or HAT. Indirect antioxidation involves binding to Fe2+.Entities:
Keywords: (+) Taxifolin; bmMSCs; Antioxidant mechanism; Electron transfer; Fe2+ binding; •OH damage
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Year: 2017 PMID: 29299033 PMCID: PMC5745628 DOI: 10.1186/s11658-017-0066-9
Source DB: PubMed Journal: Cell Mol Biol Lett ISSN: 1425-8153 Impact factor: 5.787
Fig. 1Structure (a) and preferential conformation-based ball-and-stick model (b) of (+) taxifolin
Fig. 2Protective effect of (+) taxifolin towards •OH-treated bmMSCs determined using the MTT assay. The •OH radical was generated via the addition of Fenton reagent (FeCl2•4H2O) followed by H2O2. Each value is expressed as the mean ± SD, n = 3; *p < 0.05 vs. model (MSCs damaged by •OH radical). **p < 0.05 vs. control
The IC50 values of (+) taxifolin and trolox in various assays (μM)
| Assays | (+) taxifolin | Trolox | Ratio value | |
|---|---|---|---|---|
| •OH-scavenging | 259.2 ± 4.4 a | 411.4 ± 17.0 b | 1.59 | Average 1.67 |
| PTIO•-scavenging* | 663.9 ± 34.4 a | 736.8 ± 29.9 b | 1.11 | |
| DPPH•-scavenging | 16.0 ± 0.2 a | 18.5 ± 0.4 b | 1.16 | |
| ABTS+•-scavenging | 4.6 ± 0.2 a | 11.4 ± 0.2 b | 2.48 | |
| Cu2+-reducing | 22.4 ± 0.5 a | 40.4 ± 1.9b | 1.80 | |
| FRAP | 33.7 ± 1.0 a | 62.8 ± 1.0 b | 1.86 | |
The IC50 value was defined as the final concentration of 50% radical inhibition (relative reducing power). It was calculated by linear regression analysis, and expressed as the mean ± SD (n = 3). The linear regression was analyzed using Origin 6.0. Mean values with different superscripts (a or b) in the same row are significantly different (p < 0.05). *The assay was conducted at pH 7.4. The ratio value is defined as IC50 Trolox/IC50 (+) taxifolin. The dose–response curves are shown in Additional file 1: Figures S2-S7
Fig. 3The UV-vis spectra of (+) taxifolin and its Fe2+-complex. a Comparison of UV spectra of 0.05 mmol/l (+) taxifolin and 0.05 mmol/l (+) taxifolin plus 2.5 mmol/l Fe2+. b Vis spectra of 1.0 mmol/l (+) taxifolin and Vis spectra of the reaction mixtures of 1.0 mmol/l (+) taxifolin with 50.0 mmol/l Fe2+ for 0, 10, 20, 30, 60 min (① 50.0 mmol/l Fe2+; ② 1.0 mmol/l (+) taxifolin; ③ reaction mixture for 0 min; ④ reaction mixture for 10 min; ⑤ reaction mixture for 20 min; ⑥ reaction mixture for 30 min; ⑦ reaction mixture for 60 min. The inset in Fig. 3B is the appearance of solutions
Fig. 4Proposed reaction of (+) taxifolin binding to Fe2+ (including UV-Vis spectra assignments)