|Table of Contents|

Anti-tumor and Pro-apoptotic Effects of Soy Isoflavones and Saponins on H22-bearing Mice(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2016年03期
Page:
494-497
Research Field:
Publishing date:

Info

Title:
Anti-tumor and Pro-apoptotic Effects of Soy Isoflavones and Saponins on H22-bearing Mice
Author(s):
ZHENG FengJIN Yan-huaHE XinQUAN Ji-shuYIN Xue-zhe
1. Yanbian University Hospital,Yanji 133002,China;?
2. Yanbian University Medical College,Yanji 133000,China
Keywords:
Soy isoflavones Saponins H22 Anti-tumor
PACS:
R285. 5
DOI:
10.11861/j.issn.1000-9841.2016.03.0494
Abstract:
The anti-tumor and pro-apoptotic effects of soy isoflavones and saponins on H22-bearing mice were investigated.Mice bearing H22 hepatoma cells were randomly assigned into 4 groups including model,5-Fu,isoflavone and soyasaponingroups. Animals were treated with ig 200 mg·kg - 1 of soy isoflavones and saponins once daily for 10 days,and with ig 5-Fu 25mg·kg - 1 every other day for 3 times. At the end of experiment,the tumor growth inhibition ratios,spleen and thymus indexeswere calculated,the pathological changes were detected with hematoxylin & eosin( HE) staining,and the relative activities ofCaspase-3 and Caspase-8,as well as the serum levels of reduced glutathione( GSH) ,the total antioxidant capacity( T-AOC)and malondialdehyde( MDA) were detected by the colorimetric method. The results showed that the administration with soyisoflavones and saponins inhibited the growth of transplanted tumor with the inhibitory ratios of 36. 3% and 34. 8%,respectively.In addition,soy isoflavones and saponin treatment elevated the spleen index,increased the relative activities ofCaspase-3 and Caspase-8 of tumor tissue,decreased the serum MDA,and increased the serum GSH and T-AOC of H22-bearingmice. It is suggested that soy isoflavones and saponins could exhibit the inhibitory effects on the transplanted H22 tumor inmice,probably via pro-apoptotic and anti-oxidative activities.

References:

[1] Rodrigues H G,Diniz Y S,Faine L A,et al. Antioxidant effect ofsaponin: Potential action of a soybean flavonoid on glucose toleranceand risk factors for atherosclerosis[J]. International Journalof Food Sciences and Nutrition,2005,56( 2) : 79-85.

[2] 王力,刘辉,张梦媛,等. 三羟异黄酮对全氟辛酸暴露的小鼠肝脏抗氧化能力的影响[J]. 大豆科学,2014,33 ( 6) : 937-940. ( Wang L,Liu H,Zhang M Y,et al. Effects of genistein onrelevant enzyme activity in liver of mice exposed to perfluorooctanoicacid[J]. Soybean Science,2014,33( 6) : 937-940. )
[3] 裴迎新,赵焕焕,杜晓燕,等. 大豆皂甙Bb 对食管癌细胞凋亡的影响及其机制研究[J]. 卫生研究,2010,39 ( 4) : 444-446. ( Pei Y X,Zhao H H,Du X Y,et al. Apoptosis effects onhuman esophageal cancer cells by soyasaponin Bb and its mechanism[J]. Journal of Hygiene Research,2010,39( 4) : 444-446. )
[4] 赵育芳,张永生,徐珊,等. 大豆异黄酮对实验性肝纤维化大鼠肝星状细胞活化的影响[J]. 营养学报,2010,32( 3) : 295-296. ( Zhao Y F,Zhang Y S,Xu S,et al. The inhibitory effect ofsoybean isoflavones on activation of hepatic stellate cell in experimentalhepatic fibrosis rats[J]. Acta Nutrimenta Sinica,2010,32( 3) : 295-296. )
[5] Sasaki K,Minowa N,Kuzuhara H,et al. Preventive effects of soyasapogenolB derivatives on liver injury in a concanavalin A-inducedhepatitis model[J]. Bioorganic & Medicinal Chemistry,2005,13( 16) : 4900-4911.
[6] 张婷. 抗氧化基因在大豆异黄酮抑制内皮细胞氧化应激损伤中的作用及机制研究[D]. 重庆: 第三军医大学,2012.( Zhang T. Mechanisms of activation of antioxidant genes in soy3 期郑峰等: 大豆异黄酮和皂甙对H22小鼠肝癌移植瘤的抑瘤作用及促细胞凋亡作用497isoflavone-mediated attenuaton in oxidative stress-induced cell injuryin EA. hy 926 cells[D]. Chongqing: The Third MilitaryMedical University,2012. )
[7] 尹学哲,赵文玺,金爱花,等. 大豆异黄酮对长春瑞滨化疗兔鳞癌的干预作用[J]. 食品科学,2013,34( 15) : 236-239. ( YinX Z,Zhao W X,Jin A H,et al. Effects of soybean isoflavonescombined with vinorelbine on transplanted squamous cell carcinomasin rabbits[J]. Food Science,2013,34( 15) : 236-239. )
[8] 邢扬帆,刘旭杰,王智彪,等. 染料木黄酮对MKN45 胃癌细胞及其皮下移植瘤抗血管生成作用的研究[J]. 重庆医科大学学报,2014,39( 12) : 1686-1691. ( Xing Y F,Liu X J,WangZ H,et al. Genistein’ s anti-angiogenic effect on MKN45 gastriccancer cells and its subcutaneous xeno-transplanted tumors[J].Journal of Chongqing Medical University,2014,39 ( 12) : 1686-1691. )
[9] 朱孝娟,孙玉薇,宋柏捷. 大豆皂苷对荷瘤小鼠化疗疗效及T 淋巴细胞亚群的影响[J]. 实用预防医学, 2015,22( 3) : 292-295.( Zhu X J,Sun Y W,Song B. Effect of soyasaponins on chemotherapeuticefficacy and T-lymphocyte subsets in tumor-bearing mice[J]. Practical Preventive Medicie,2015,22( 3) : 292-295. )
[10] 金爱花. 漏芦对小鼠H22肝癌皮下移植瘤的抑制作用及机制研究[D]. 延吉: 延边大学,2011. ( Jin A H. Studies on antitumoreffect and mechanism of Rhaponticum uniflorum in H22 -bearing mice [D]. Yanji: Yanbian University,2011. )
[11] Dewell A,Weidner G,Sumner M D,et al. Relationship of dietaryprotein and soy isoflavones to serum IGF-1 and IGF binding proteinsin the prostate cancer lifestyle trial[J]. Nutrition and Cancer-An International Journal,2007,58( 1) : 35-42.
[12] 杜伯雨,姜丽平,仲来福,等. 姜黄素与5-氟尿嘧啶联用对人结肠癌HT-29 细胞增殖的影响[J]. 中国药理学与毒理学杂志,2005,19( 1) : 49-52. ( Du B Y,Jiang L P,Zhong L F,etal. Inhibitive effect of daidzein on growth of H22 tumor cells inmice[J]. Chinese Journal of Pharmacology and Toxicology,2005,19( 1) : 49-52. )
[13] 肖军霞,朱彩平,任丹丹,等. 大豆皂甙对肝癌H22小鼠的抗肿瘤研究[J]. 食品科学,2006,27( 6) : 203-206. ( Xiao J X,Zhu C P,Ren D D,et al. Study on antitumor inhibition of soyasaponinson hepatocarcinoma H22 mice[J]. Food Science,2006,27( 6) : 203-206. )
[14] 杨静静,刘素芳,李万里. 大豆甙元对小鼠肝癌H22瘤细胞生长抑制作用[J]. 中国公共卫生,2012,28 ( 2 ) : 197-198.( Yang J J,Liu S F,Li W L. Inhibitive effect of daidzein ongrowth of H22 tumor cells in mice[J]. Chinese Journal of PublicHealth,2012,28( 2) : 197-198. )

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Last Update: 2016-07-24