LI Xianghui, LIU Ruixia, ZHAO Junfang, et al. Effects of Ilex paraguariensis on Redox Status in High-fat Diet Fed Mice[J]. Science and Technology of Food Industry, 2022, 43(11): 376−382. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021100191.
Citation: LI Xianghui, LIU Ruixia, ZHAO Junfang, et al. Effects of Ilex paraguariensis on Redox Status in High-fat Diet Fed Mice[J]. Science and Technology of Food Industry, 2022, 43(11): 376−382. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021100191.

Effects of Ilex paraguariensis on Redox Status in High-fat Diet Fed Mice

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  • Received Date: October 18, 2021
  • Available Online: April 15, 2022
  • Objective: To investigate the effects of Ilex paraguariensis on redox status in high-fat diet fed mice. Methods: Forty-eight male C57BL/6J mice of six-week-old were randomly divided into 4 groups, normal diet (ND), high-fat diet (HF), high-fat diet+1 g/kg Ilex paraguariensis (HFL), high-fat diet+2 g/kg Ilex paraguariensis (HFH). The mice were sacrificed six weeks later. Hepatic redox status-related indicators were measured. The expression of FoxO3a, catalase and MnSOD genes in liver were analyzed. Results: Compared with the ND group, the levels of ROS and MDA in the liver of the HF group were increased significantly (P < 0.05), CAT, SOD, GSH-Px, GSH/GSSG values and T-AOC were reduced significantly (P < 0.05), the expression of FoxO3a, catalase and MnSOD genes in the liver were decreased significantly (P < 0.05). Compared with the HF group, the levels of ROS and MDA in the liver of the HFL and HFH groups were reduced significantly (P < 0.05), CAT, SOD, GSH-Px, GSH/GSSG values and T-AOC were increased significantly (P < 0.05), the expression of FoxO3a, catalase and MnSOD genes in the liver were increased significantly (P < 0.05). Correlation analysis showed that ROS and FoxO3a, catalase, MnSOD genes expression were significantly negative correlation (P < 0.01), CAT, SOD, GSH-Px and FoxO3a, catalase, MnSOD genes expression were significantly positive correlation (P < 0.01). Conclusion: Appropriate amount of Ilex paraguariensis can improve the redox state imbalance of mice caused by high-fat diet, which has a certain relationship with FoxO3a gene pathway.
  • [1]
    杨慧霞, 王俊平. 1982-2012年中国居民膳食摄入变化[J]. 食品工业,2020,41(6):244−248. [YANG H X, WANG J P. The changes of dietary intake of chinese residents from the year of 1982 to 2012[J]. The Food Industry,2020,41(6):244−248.
    [2]
    王志宏, 孙静, 王惠君, 等. 中国居民膳食结构的变迁与营养干预策略发展[J]. 营养学报,2019,41(5):427−432. [WANG Z H, SUN J, WANG H J, et al. Dietary structure transition and development of nutrition intervention strategies in china[J]. Acta Nutrimenta Sinica,2019,41(5):427−432. doi: 10.3969/j.issn.0512-7955.2019.05.003
    [3]
    XIA S F, XIE Z X, QIAO Y, et al. Salvianolic acid B counteracts cognitive decline triggered by oxidative stress in mice fed with high-fat diets[J]. Journal of Functional Foods,2014,11:278−292. doi: 10.1016/j.jff.2014.10.010
    [4]
    XIE Z, XIA S, LE G W. Gamma-aminobutyric acid improves oxidative stress and function of the thyroid in high-fat diet fed mice[J]. Journal of Functional Foods,2014,8:76−86. doi: 10.1016/j.jff.2014.03.003
    [5]
    陈丽梅, 夏淑芳, 乐国伟. 槲皮素对高脂膳食小鼠肝脏甲状腺激素作用的影响[J]. 营养学报,2019,41(5):482−488. [CHEN L M, XIA S F, LE G W. Effects of quercetin on hepatic thyroid hormone action in mice fed a high-fat diet[J]. Acta Nutrimenta Sinica,2019,41(5):482−488. doi: 10.3969/j.issn.0512-7955.2019.05.013
    [6]
    PRIOR R L, WU X. Diet antioxidant capacity: Relationships to oxidative stress and health[J]. American Journal of Biomedical Sciences,2013:126−139. doi: 10.5099/aj130200126
    [7]
    ZWYRZYKOWSKA A, KUPCZYŃSKI R, JAROSZ B, et al. Qualitative and quantitative analysis of polyphenolic compounds in Ilex sp.[J]. Open Chemistry,2015,13(1):1303−1312.
    [8]
    MATEOS R, BAEZA G, SARRIÁ B, et al. Improved lc-msn characterization of hydroxycinnamic acid derivatives and flavonols in different commercial mate (Ilex paraguariensis) brands, quantification of polyphenols, methylxanthines, and antioxidant activity[J]. Food Chemistry,2018,241:232−241. doi: 10.1016/j.foodchem.2017.08.085
    [9]
    DANIEL G, OLIVEIRA C C, CALADO V M D A, et al. Statistical approaches to assess the association between phenolic compounds and thein vitro antioxidant activity of Camellia sinensis and Ilex paraguariensis teas[J]. Critical Reviews in Food Science and Nutrition,2015,55(10):1456−1473. doi: 10.1080/10408398.2012.750233
    [10]
    TESELKIN Y O, BABENKOVA I V, PAVLOVA L A, et al. The antioxidant capacity of aqueous extracts from yerba mate (Ilex paraguariensis)[J]. Biophysics,2021,66(1):125−132. doi: 10.1134/S0006350921010176
    [11]
    COLPO A C, LIMA M E, MAYA-LÓPEZ M, et al. Compounds from Ilex paraguariensis extracts have antioxidant effects in the brains of rats subjected to chronic immobilization stress[J]. Applied Physiology, Nutrition, and Metabolism,2017,42(11):1172−1178. doi: 10.1139/apnm-2017-0267
    [12]
    NOUREDDINE T, HUSSEINI Z, NEHME A, et al. Rial activity of Ilex paraguariensis (yerba mate) against gram-positive and gram-negative bacteria[J]. The Journal of Infection in Developing Countries,2018,12:712−719. doi: 10.3855/jidc.10380
    [13]
    RONCO A L, STEFANI E D, MENDOZA B, et al. Mate intake and risk of breast cancer in uruguay: A case-control study[J]. Asian Pacific Journal of Cancer Prevention:Apjcp,2016,17(3):1453−1461. doi: 10.7314/APJCP.2016.17.3.1453
    [14]
    VALENCA S S, VALENCA H M, LANZETTI M. Yerba maté (Ilex paraguariensis) and dimethyl fumarate can improve metabolic syndrome condition induced by high fat diet in mice[J]. The Faseb Journal,2019,33(S1):820.
    [15]
    乔小燕, 马棉霞, 陈维, 等. 阿根廷马黛茶与广东红茶挥发性成分比较分析[J]. 食品与发酵科技,2020,56(1):109−115. [QIAO X Y, MA M X, CHEN W, et al. Comparative analysis of the volatile of yerba maté tea (Ilex paraguariensis) and guangdong black teas[J]. Food and Fermentation Sciences & Technology,2020,56(1):109−115. doi: 10.3969/j.issn.1674-506X.2020.01.021
    [16]
    蔡晓婧, 张华, 时海燕, 等. 基于指纹图谱的马黛茶中多酚类物质组纯化工艺[J]. 医药导报,2018,37(2):231−235. [CAI X J, ZHANG H, SHI H Y, et al. Purification process of polyphenols group inIlex paraguariensis based on fingerprint[J]. Herald of Medicine,2018,37(2):231−235.
    [17]
    PEREIRA A A F, TIRAPELI K G, CHAVES-NETO A H, et al. Ilex paraguariensis supplementation may be an effective nutritional approach to modulate oxidative stress during perimenopause[J]. Experimental Gerontology,2017,90:14−18. doi: 10.1016/j.exger.2017.01.011
    [18]
    FISHER-WELLMAN K H, RYAN T E, SMITH C D, et al. A direct comparison of metabolic responses to high-fat diet in C57BL/6J and C57BL/6NJ mice[J]. Diabetes,2016,65(11):3249−3261. doi: 10.2337/db16-0291
    [19]
    UECKER J N, SCHNEIDER J P, CERQUEIRA J H, et al. Ilex paraguariensis extract prevents body weight gain in rats fed a high-fat diet[J]. Food Science and Technology,2019,39(3):620−626. doi: 10.1590/fst.39817
    [20]
    宋昱. 膳食能量和白藜芦醇剂量对小鼠氧化应激和脂代谢的影响[D]. 无锡: 江南大学, 2015

    SONG Y. Effects of dietary energy and resveratrol dose on oxidative stress and lipid metabolism in mice[D]. Wuxi: Jiangnan University, 2015.
    [21]
    李龙囡, 王艳艳, 尹彩娜, 等. 硫辛酸对高脂日粮小鼠脂代谢紊乱及氧化应激的调节作用[J]. 食品与生物技术学报,2013,32(06):608−614. [LI L N, WANG Y Y, YIN C N, et al. Effects of lipoic acid on lipid metabolism disorder and oxidative stress on mice feed high-fat diet[J]. Journal of Food Science and Biotechnology,2013,32(06):608−614. doi: 10.3969/j.issn.1673-1689.2013.06.009
    [22]
    TSIKAS D. Assessment of lipid peroxidation by measuring malondialdehyde (MDA) and relatives in biological samples: Analytical and biological challenges[J]. Analytical Biochemistry,2017,524:13−30. doi: 10.1016/j.ab.2016.10.021
    [23]
    BRASILINO M DA S, STRINGHETTA-GARCIA C T, PEREIRA C S, et al. Mate tea (Ilex paraguariensis) improves bone formation in the alveolar socket healing after tooth extraction in rats[J]. Clinical Oral Investigations,2018,22(3):1449−1461. doi: 10.1007/s00784-017-2249-1
    [24]
    LIU X C, SUN T C, LI H Y, et al. Antioxidative effect of melatonin on cryopreserved ovarian tissue in mice[J]. Cryobiology,2020,96:99−105. doi: 10.1016/j.cryobiol.2020.07.010
    [25]
    YOUNUS H. Therapeutic potentials of superoxide dismutase[J]. International Journal of Health Sciences,2018,12(3):88−93.
    [26]
    CHEN D, SUN H, SHEN Y, et al. Selenium bio-absorption and antioxidant capacity in mice treated by selenium modified rice germ polysaccharide[J]. Journal of Functional Foods,2019,61:103492. doi: 10.1016/j.jff.2019.103492
    [27]
    BREMER BOAVENTURA B C, DA SILVA E L, LIU R H, et al. Effect of yerba mate (Ilex paraguariensis a. st. hil. ) infusion obtained by freeze concentration technology on antioxidant status of healthy individuals[J]. LWT-Food Science and Technology,2015,62(2):948−954. doi: 10.1016/j.lwt.2015.02.028
    [28]
    NORRIS K M, OKIE W, KIM W K, et al. A high-fat diet differentially regulates glutathione phenotypes in the obesity-prone mouse strains DBA/2J, C57BL/6J, and AKR/J[J]. Nutrition Research,2016,36(12):1316−1324. doi: 10.1016/j.nutres.2016.10.004
    [29]
    SILVA C, NARDIN P, GRINGS M, et al. Evaluation of the redox state of wistar rats submitted to high-fat diet supplemented with infusion of Ilex paraguariensis[J]. Brazilian Archives of Biology and Technology,2018,61:e18161189.
    [30]
    ZHAO H, LI J, ZHAO J, et al. Antioxidant effects of compound walnut oil capsule in mice aging model induced by dga-lactose[J]. Food & Nutrition Research,2018,62:1371.
    [31]
    HUANG W, LI G, QIU J, et al. Protective effects of resveratrol in experimental retinal detachment[J]. Plos One,2013,8(9):e75735. doi: 10.1371/journal.pone.0075735
    [32]
    李昂, 邢雅琪, 李晓霞, 等. 氧化应激中ROS对FoxO3a转录因子的调控作用研究进展[J]. 中国药理学通报,2016,32(9):1203−1207. [LI A, XING Y Q, LI X X, et al. Redox regulation of FoxO3a transcription factor[J]. Chinese Pharmacological Bulletin,2016,32(9):1203−1207. doi: 10.3969/j.issn.1001-1978.2016.09.005
    [33]
    GLORIEUX C, ZAMOCKY M, SANDOVAL J M, et al. Regulation of catalase expression in healthy and cancerous cells[J]. Free Radical Biology and Medicine,2015,87:84−97. doi: 10.1016/j.freeradbiomed.2015.06.017
    [34]
    刘丙岩. 黄芩素通过FoxO3a调控氧化应激和细胞自噬抑制心肌肥大的机制研究[D]. 青岛: 青岛大学, 2020

    LIU B Y. The mechanism of baicalein regulate oxidative stress and autophagy to inhibit cardiac hypertrophy by targeting FoxO3a[D]. Qingdao: Qingdao University, 2020.
    [35]
    CALLAWAY D A, RIQUELME M A, SHARMA R, et al. Caspase-2 modulates osteoclastogenesis through down-regulating oxidative stress[J]. Bone,2015,76:40−48. doi: 10.1016/j.bone.2015.03.006
    [36]
    SHALINI S, DORSTYN L, WILSON C, et al. Impaired antioxidant defence and accumulation of oxidative stress in Caspase-2-deficient mice[J]. Cell Death & Differentiation,2012,19(8):1370−1380.
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