Literature DB >> 30257351

Crocetin attenuates DHT-induced polycystic ovary syndrome in mice via revising kisspeptin neurons.

Qiaoyun Hu1, Jing Jin2, Huifang Zhou2, Dongsheng Yu1, Weichun Qian1, Ying Zhong1, Jia Zhang1, Chuanfeng Tang1, Peiyu Liu1, Yu Zhou1, Xiaoli Wang3, Liang Sheng4.   

Abstract

Polycystic ovarian syndrome (PCOS), the most common endocrine disorder of women in reproductive age, is typical with hyperandrogenism and disturbance of the hypothalamus-pituitary-ovary (HPO) axis, i.e. abnormal expression of hypothalamic gonadotropin-releasing hormone (GnRH) followed by the elevated ratio of serum luteinizing hormone (LH) level to follicle-stimulating hormone (FSH) level. This derangement might have a close relationship with hypothalamic kisspeptin expression that is thought to be a key regulator of GnRH. Crocetin, one of the main components of Saffron clinically used as traditional medicine in gynecology diseases, was evaluated for its therapeutic effects on PCOS induced by prenatally exposure to dihydrotestosterone (DHT) in mice. Herein, we found that DHT-treated mice showed a similar phenotype to human PCOS such as heavier ovary, prolonged diestrus, multiple enlarged follicles with fewer corpus luteum, and higher LH and testosterone levels. Kisspeptin expression was lower in anteroventral periventricular nucleus (AVPV) but higher in arcuate nucleus (ARC). Treatment of crocetin prevented the prolongation of diestrus and reduction in corpora luteum, recover the levels of GnRH, FSH, LH, progesterone (P4), estradiol (E2) and testosterone (T), and increase the kisspeptin level in AVPV but reduce that in ARC. The present study provides in vivo evidence that crocetin improved the PCOS in mice via increasing AVPV-kisspeptin and reducing ARC-kisspeptin expression.
Copyright © 2018 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Crocetin; Estrogen; Hypothalamic-pituitary-ovary (HPO) axis; Kisspeptin neurons; Polycystic ovary syndrome (PCOS)

Mesh:

Substances:

Year:  2018        PMID: 30257351     DOI: 10.1016/j.biopha.2018.08.135

Source DB:  PubMed          Journal:  Biomed Pharmacother        ISSN: 0753-3322            Impact factor:   6.529


  6 in total

Review 1.  Research Progress on the Effect of Epilepsy and Antiseizure Medications on PCOS Through HPO Axis.

Authors:  Shuang Li; Linhai Zhang; Nian Wei; Zhenzhen Tai; Changyin Yu; Zucai Xu
Journal:  Front Endocrinol (Lausanne)       Date:  2021-12-21       Impact factor: 5.555

Review 2.  Effect of Acupuncture on Polycystic Ovary Syndrome in Animal Models: A Systematic Review.

Authors:  Yan Li; Lijia Zhang; Jinjin Gao; Jun Yan; Xue Feng; Xiting He; Hong Jin; Xinyu Li; Zhengyi Cui; Junfei Zhao; Fengyi Liu; Xiaowai Liu; Yongfei Liu; Wan Ren; Songjiang Liu
Journal:  Evid Based Complement Alternat Med       Date:  2021-09-24       Impact factor: 2.629

Review 3.  Clinical and Biochemical Potential of Antioxidants in Treating Polycystic Ovary Syndrome.

Authors:  Xiangyi Cheng; Bing He
Journal:  Int J Womens Health       Date:  2022-04-01

4.  Prenatal androgen treatment impairs the suprachiasmatic nucleus arginine-vasopressin to kisspeptin neuron circuit in female mice.

Authors:  Bradley B Jamieson; Aleisha M Moore; Dayanara B Lohr; Simone X Thomas; Lique M Coolen; Michael N Lehman; Rebecca E Campbell; Richard Piet
Journal:  Front Endocrinol (Lausanne)       Date:  2022-08-05       Impact factor: 6.055

5.  Investigating the Effect of Crocus sativus (Saffron) Petal Hydro-alcoholic Extract on Ovarian Follicle, Inflammatory Markers, and Antioxidant Enzymes in Mice Model of Polycystic Ovary Syndrome.

Authors:  Fazeleh Moshfegh; Saeedeh Zafar Balanejad; Khadige Shahrokhabady; Armin Attaranzadeh
Journal:  J Reprod Infertil       Date:  2022 Jan-Mar

6.  Troxerutin protects against DHT-induced polycystic ovary syndrome in rats.

Authors:  Zixuan Gao; Xiaochen Ma; Jing Liu; Yuhang Ge; Lei Wang; Ping Fu; Zhian Liu; Ruiqin Yao; Xiaonan Yan
Journal:  J Ovarian Res       Date:  2020-09-13       Impact factor: 4.234

  6 in total

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