Antagonism of resveratrol on oxidative stress injury of follicular granulosa cells

XING Peng ZHANG Na ZHAO Jing-yun ZHANG Yi Lü Cui-ting XU Bi-sha

Acta Anatomica Sinica ›› 2020, Vol. 51 ›› Issue (2) : 189-194.

PDF(4755 KB)
Welcome to visit Acta Anatomica Sinica! Today is Chinese
PDF(4755 KB)
Acta Anatomica Sinica ›› 2020, Vol. 51 ›› Issue (2) : 189-194. DOI: 10.16098/j.issn.0529-1356.2020.02.007
Cell and Molecules Biology

Antagonism of resveratrol on oxidative stress injury of follicular granulosa cells

  • XING Peng1,2  ZHANG Na1*  ZHAO Jing-yunZHANG Yi1  Lü Cui-ting1  XU Bi-sha1
Author information +
History +

Abstract

Objctive  To investigate the protective effect of resveratrol on oxidative stress damage of follicular granulosa cells induced by hydrogen peroxide.   Methods  Granulosa cells were collected from the follicular fluid of in vitro fertilization(IVF) patients after oocyte retrieval and cultured. The cultured granulosa cells were divided into four groups: control group, injury model group, 10 μmol/L resveratrol group and 50 μmol/L resveratrol group. Cell viability was determined by CCK-8 assay, malondialdehyde(MDA) content by thiobarbituric(TBA) assay, superoxide dismutase(SOD) level by water soluble tetrazdium-1(WST-1) assay, apoptosis by AnnexinV-FITC/PI double-staining flow cytometry, Bcl-2 and Caspase-3 protein expression by Western blotting, and progesterone secretion by competitive ELISA.  Resutls  Compared with the control group, the cell viability, SOD level, Bcl-2 protein expression and progesterone secretion were significantly decreased in the injury model group, while MDA content, apoptosis rate and Caspase-3 apoptotic protein expression were significantly increased (P<0.05). Compared with the injury model group, the 10 μmol/L resveratrol group showed no statistically significant differences in various parameters; however, the cell viability, SOD level, progesterone secretion, and Bcl-2 and silent information regulator factor 2 related enzyme 1(SIRT1) protein expression were significantly increased, and the MDA content, apoptosis rate, and Caspase-3 apoptotic protein expression were significantly decreased in the 50 μmol/L resveratrol group (P<0.05).   Conclusion  50 μmol/L resveratrol can increase the activity of SIRT1, enhance the anti-oxidation and anti-apoptosis ability of granulosa cells and improve the function of granulosa cells.

Key words

Resveratrol
/ Hydrogen peroxide / Follicular granulosa cells / Oxidative stress / Antioxidants / Western blotting / Human

Cite this article

Download Citations
XING Peng ZHANG Na ZHAO Jing-yun ZHANG Yi Lü Cui-ting XU Bi-sha. Antagonism of resveratrol on oxidative stress injury of follicular granulosa cells[J]. Acta Anatomica Sinica. 2020, 51(2): 189-194 https://doi.org/10.16098/j.issn.0529-1356.2020.02.007

References

[1] vila J, González-Fernández R, Rotoli D, et al. Oxidative stress in granulosa-lutein cells from in vitro fertilization patients[J]. Reprod Sci, 2016, 23(12): 1656-1661.
[2] Spitz DR, Azzam EI, Li JJ, et al. Metabolic oxidation/reduction reactions and cellular responses to ionizing radiation: a unifying concept in stress response biology[J]. Cancer Metastasis Rev, 2004, 23(3-4): 311-322.
[3] Galli F, Piroddi M, Annetti C, et al. Oxidative stress and reactive oxygen species[J]. Contrib Nephrol, 2005, 149: 240-260.
[4] Hennet ML, Combelles CM. The antral follicle: a microenvironment for oocyte differentiation[J]. Int J Dev Biol, 2012, 56(10-12): 819-831.
[5] Koushki M, Amiri-Dashatan N, Ahmadi N, et al. Resveratrol: a miraculous natural compound for diseases treatment[J]. Food Sci Nutr, 2018, 6(8): 2473-2490.
[6] Zhao AJ, Liu C, Wang H, et al. The effects of bone morphogenetic protein-9 on estradiol and progesterone production in human luteinized granulosa cells in vitro[J]. Journal of HeBei Medical University, 2018,39(7):801-805. (in Chinese)
赵爱娟, 刘灿, 汪辉, 等. 骨形态发生蛋白9对人卵巢黄素化颗粒细胞雌、孕激素分泌功能的影响[J]. 河北医科大学学报, 2018,39(7):801-805.
[7] Zhang N, Li W, Nie ZhY, et al. Comparison of angiopoietin-2 expression on thawed and heteroplastic human ovarian tissues between two freezing methods[J]. Acta Anatomica Sinica, 2018,49(6):825-829. (in Chinese)
张娜, 李微, 乜照燕, 等. 两种冷冻方法冻融人卵巢组织异种移植后血管生成素-2表达变化的比较[J]. 解剖学报, 2018,49(6):825-829.
[8] Havelock JC, Rainey WE, Carr BR. Ovarian granulosa cell lines[J]. Mol Cell Endocrinol, 2004,228(1-2):67-78.
[9] Almeida CP, MCF F, Silveira CO, et al. Clinical correlation of apoptosis in human granulosa cells-A review[J]. Cell Biol Int, 2018,42(10):1276-1281.
[10] Finkel T, Holbrook NJ. Oxidants, oxidative stress and the biology of ageing[J]. Nature, 2000, 408(6809): 239-247.
[11] Agarwal A, Aponte-Mellado A, Premkumar BJ, et al. The effects of oxidative stress on female reproduction: a review[J]. Reprod Biol Endocrinol, 2012, 10: 49.
[12] Tatone C, Amicarelli F. The aging ovary- -the poor granulosa cells[J]. Fertil Steril, 2013, 99(1): 12-17.
[13] Tatone C, Carbone MC, Falone S, et al. Age-dependent changes in the expression of superoxide dismutases and catalase are associated with ultrastructural modifications in human granulosa cells[J]. Mol Hum Reprod, 2006, 12(11): 655-660.
[14] Zhang N, Zhen XL, Zhang Y, et al. Influence ofreactive oxygen species in follicular fluid on the outcome of in vitro fertilization and embryo transfer[J].Chinese Journal of Birth Health & Heredity, 2013, (9): 111-112. (in Chinese)
张娜, 甄秀丽, 张轶, 等. 卵泡液中活性氧对体外受精胚胎移植结局的影响[J]. 中国优生与遗传杂志, 2013,(9): 111-112.
[15] Dong ZY, Huang J, Xu MX, et al. Protective effect of angelicapolysaccharides on pancreatic injury induced by D-galactose in mice[J]. Acta Anatomica Sinica, 2018,49(6):740-744. (in Chinese)
董照瀛, 黄杰, 许梦雄, 等. 当归多糖对D-半乳糖致小鼠胰腺损伤的保护作用[J]. 解剖学报, 2018,49(6):740-744.
[16] Banks CJ, Rodriguez NW, Gashler KR, et al. Acylation of Superoxide Dismutase 1 (SOD1) at K122 governs SOD1-mediated inhibition of mitochondrial respiration[J]. Mol Cell Biol, 2017, 37(20): 1-19.
[17] Nakahara T, Iwase A, Nakamura T, et al. Sphingosine-1-phosphate inhibits H2O2-induced granulosa cell apoptosis via the PI3K/Akt signaling pathway[J]. Fertil Steril, 2012, 98(4): 1001-1008.
[18] Ling XM, Zhang XH, Tan Y, et al. Protective effects of Oviductus Ranae-containing serum on oxidative stress-induced apoptosis in rat ovarian granulosa cells[J]. J Ethnopharmacol, 2017, 208: 138-148.
[19] Han Y, Luo H, Wang H, et al. SIRT1 induces resistance to apoptosis in human granulosa cells by activating the ERK pathway and inhibiting NF-κB signaling with anti-inflammatory functions[J]. Apoptosis, 2017,22(10):1260-1272.
[20] Liao HY, Liu J, Liu J, et al. Effect of resveratrol on activation of microglia cell line N9 after oxygen-glucose deprivation/reoxygenation injury in vitro[J]. Acta Anatomica Sinica, 2019,50(2):137-144. (in Chinese)
廖鸿雁, 刘杰, 刘菁, 等. 白藜芦醇对氧糖剥夺/再复氧损伤后小胶质细胞系N9活化的影响[J]. 解剖学报, 2019,50(2):137-144.
[21] Liu M, Yin Y, Ye X, et al. Resveratrol protects against age-associated infertility in mice[J]. Hum Reprod, 2013,28(3):707-717.
[22] Chen L, Hu Sh, Li SP. Effect of resveratol on the granulosa cell mitochondrial function and ART pregnancy outcome[J]. Chongqing Medicine, 2016,45(29): 4080-4082. (in Chinese)
陈兰, 胡沙, 李素萍. 白藜芦醇对卵泡颗粒细胞线粒体的调节作用及人工辅助生殖效果的影响[J]. 重庆医学, 2016, 45(29): 4080-4082.
PDF(4755 KB)

Accesses

Citation

Detail

Sections
Recommended

/