Literature DB >> 22079309

In vitro evaluation of tectoridin, tectorigenin and tectorigenin sodium sulfonate on antioxidant properties.

Ting Han1, Gang Cheng, Ying Liu, Hong Yang, Yu-Tao Hu, Wen Huang.   

Abstract

Tectoridin (4',5,7-thrihydroxy-6-methoxyisoflavone-7-O-β-d-glucopyranoside) isolated from the flowers of Pueraria thunbergiana is reported to have less hepatoprotective, hypoglycemic, antiallergic and anaphylaxis inhibitory activity than its aglycone form tectorigenin. To obtain tectorigenin, tectoridin was hydrolyzed in the current study. However, practical limitations of tectorigenin do exist due to its poor water-solubility. To increase its water-solubility, tectorigenin was sulfonated with sulfuric acid (98wt.%) and mixed with saturated salt water to produce tectorigenin sodium sulfonate. Tectoridin and the two transfer products were identified by UV, IR, HPLC-MS, (1)H NMR and (13)C NMR, and the solubility of tectorigenin sodium sulfonate was increased about 9-fold than tectorigenin. Antioxidant experiments of tectoridin, tectorigenin and modified tectorigenin in vitro including reducing power, superoxide anion radical scavenging activity, hydroxyl radical scavenging activity, 1,1-diphenyl-2-picryl-hydrazyl (DPPH) radical scavenging activity and anti-lipid peroxidation were carried on comparing with ascorbic acid (Vc) or butylated hydroxytoluene (BHT). The results suggested that the antioxidant activity in all the experimental systems exhibited the same order as follows: tectorigenin sodium sulfonate>tectorigenin>tectoridin. Due to the high water-solubility and good antioxidant properties with tectorigenin sodium sulfonate, appropriate chemical modifications could greatly improve the biological activities of the naturally occurring products.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 22079309     DOI: 10.1016/j.fct.2011.10.066

Source DB:  PubMed          Journal:  Food Chem Toxicol        ISSN: 0278-6915            Impact factor:   6.023


  12 in total

1.  Tectorigenin attenuates the MPP+-induced SH-SY5Y cell damage, indicating a potential beneficial role in Parkinson's disease by oxidative stress inhibition.

Authors:  Ping Gong; Fang Deng; Wei Zhang; Jin Ji; Jia Liu; Yinan Sun; Jiayu Hu
Journal:  Exp Ther Med       Date:  2017-08-28       Impact factor: 2.447

2.  Flos Puerariae extract prevents myocardial apoptosis via attenuation oxidative stress in streptozotocin-induced diabetic mice.

Authors:  Wei Yu; Wenliang Zha; Shuang Guo; Hongke Cheng; Jiliang Wu; Chao Liu
Journal:  PLoS One       Date:  2014-05-27       Impact factor: 3.240

3.  The Antibacterial Assay of Tectorigenin with Detergents or ATPase Inhibitors against Methicillin-Resistant Staphylococcus aureus.

Authors:  Dae-Ki Joung; Su-Hyun Mun; Kuang-Shim Lee; Ok-Hwa Kang; Jang-Gi Choi; Sung-Bae Kim; Ryong Gong; Myong-Soo Chong; Youn-Chul Kim; Dong-Sung Lee; Dong-Won Shin; Dong-Yeul Kwon
Journal:  Evid Based Complement Alternat Med       Date:  2014-05-28       Impact factor: 2.629

4.  Protective effects of a new phloretin derivative against UVB-induced damage in skin cell model and human volunteers.

Authors:  Seoungwoo Shin; Hyunwoo Kum; Dehun Ryu; Minkyung Kim; Eunsun Jung; Deokhoon Park
Journal:  Int J Mol Sci       Date:  2014-10-20       Impact factor: 5.923

5.  Protective Effect of an Isoflavone, Tectorigenin, Against Oxidative Stress-induced Cell Death via Catalase Activation.

Authors:  Rui Zhang; Mei Jing Piao; Min Chang Oh; Jeong Eon Park; Kristina Shilnikova; Yu Jin Moon; Dong Hyun Kim; Uhee Jung; In Gyu Kim; Jin Won Hyun
Journal:  J Cancer Prev       Date:  2016-12-30

6.  Anti-Endometriotic Effects of Pueraria Flower Extract  in Human Endometriotic Cells and Mice.

Authors:  Ji-Hyun Kim; Jeong-Hwa Woo; Hye Mi Kim; Myung Sook Oh; Dae Sik Jang; Jung-Hye Choi
Journal:  Nutrients       Date:  2017-02-28       Impact factor: 5.717

7.  Rapid Identification and Isolation of Inhibitors of Rat Lens Aldose Reductase and Antioxidant in Maackia amurensis.

Authors:  Set Byeol Kim; Seung Hwan Hwang; Zhiqiang Wang; Jae Myung Yu; Soon Sung Lim
Journal:  Biomed Res Int       Date:  2017-04-06       Impact factor: 3.411

8.  Increasing Antiradical Activity of Polyphenols from Lotus Seed Epicarp by Probiotic Bacteria Bioconversion.

Authors:  Ying Liu; Xuekuan Hui; Salam A Ibrahim; Wen Huang
Journal:  Molecules       Date:  2018-10-17       Impact factor: 4.411

9.  Tectorigenin Attenuates Palmitate-Induced Endothelial Insulin Resistance via Targeting ROS-Associated Inflammation and IRS-1 Pathway.

Authors:  Qi Wang; Xiao-Lan Cheng; Dong-Yan Zhang; Xue-Jiao Gao; Ling Zhou; Xiao-Ying Qin; Guo-Yong Xie; Kang Liu; Yong Qin; Bao-Lin Liu; Min-Jian Qin
Journal:  PLoS One       Date:  2013-06-19       Impact factor: 3.240

10.  Tectorigenin Promotes Osteoblast Differentiation and in vivo Bone Healing, but Suppresses Osteoclast Differentiation and in vivo Bone Resorption.

Authors:  So-Youn Lee; Gyu-Tae Kim; Hyung-Mun Yun; Youn-Chul Kim; Il-Keun Kwon; Eun-Cheol Kim
Journal:  Mol Cells       Date:  2018-05-15       Impact factor: 5.034

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