1 |
Effects of electroacupuncture on the kisspeptin-gonadotropin-releasing hormone (GnRH) /luteinizing hormone (LH) neural circuit abnormalities and androgen receptor expression of kisspeptin/neurokinin B/dynorphin neurons in PCOS rats |
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| Ge Xu, Xuedan Zhao, Zhihao Li, Junwei Hu, Xu Li, Juanjuan Li, Yuelai Chen |
|
| Journal of Ovarian Research. 2023; 16(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
2 |
Hyperandrogenism induces proportional changes in the expression of Kiss-1, Tac2, and DynA in hypothalamic KNDy neurons |
|
|
| Hiroe Okada, Haruhiko Kanasaki, Tuvshintugs Tumurbaatar, Zolzaya Tumurgan, Aki Oride, Satoru Kyo |
|
| Reproductive Biology and Endocrinology. 2022; 20(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
3 |
Key signalling pathways underlying the aetiology of polycystic ovary syndrome |
|
|
| Kirsty A Walters, Alba Moreno-Asso, Nigel K Stepto, Michael W Pankhurst, Valentina Rodriguez Paris, Raymond J Rodgers |
|
| Journal of Endocrinology. 2022; 255(1): R1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
4 |
Levels of spexin and its receptors GALR2 and GALR3 in the hypothalamus and ovary of letrozole-induced polycystic ovary syndrome in rats |
|
|
| Natalia Respekta, Agnieszka Maslanka, Ewa Mlyczynska, Maria Billert, Agata Szlaga, Patryk Sambak, Piotr Pawlicki, Bartosz Plachno, Marek Skrzypski, Malgorzata Kotula – Balak, Anna Blasiak, Agnieszka Rak |
|
| Biochemical and Biophysical Research Communications. 2022; 627: 207 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
5 |
Blockade of mineralocorticoid receptor by low-dose spironolactone rescues hypothalamic-ovarian dysfunction in PCOS experimental rat model |
|
|
| Stephanie E. Areleogbe, Mmenyene U. Peter, Adesola A. Oniyide, Christopher O. Akintayo, Adedamola A. Fafure, Mosunmola B. Oyeleke, Isaac O. Ajadi, Oluwatobi A. Amusa, Aturamu Ayodeji, Kehinde S. Olaniyi |
|
| Endocrine and Metabolic Science. 2022; : 100123 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
6 |
Serum kisspeptin levels correlated with anti-mullerian hormone levels in women with and without polycystic ovarian syndrome |
|
|
| Aysegül Mut, Cemal Tamer Erel, Deniz Inan, Yahya Özgün Öner |
|
| Gynecological Endocrinology. 2021; 37(5): 462 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
7 |
Neurokinin 3 Receptor Antagonism Ameliorates Key Metabolic Features in a Hyperandrogenic PCOS Mouse Model |
|
|
| Irene E Sucquart, Ruchi Nagarkar, Melissa C Edwards, Valentina Rodriguez Paris, Ali Aflatounian, Michael J Bertoldo, Rebecca E Campbell, Robert B Gilchrist, Denovan P Begg, David J Handelsman, Vasantha Padmanabhan, Richard A Anderson, Kirsty A Walters |
|
| Endocrinology. 2021; 162(5) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
8 |
Animal Models to Understand the Etiology and Pathophysiology of Polycystic Ovary Syndrome |
|
|
| Elisabet Stener-Victorin, Vasantha Padmanabhan, Kirsty A Walters, Rebecca E Campbell, Anna Benrick, Paolo Giacobini, Daniel A Dumesic, David H Abbott |
|
| Endocrine Reviews. 2020; 41(4): 538 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
9 |
Metastatin as a Marker for Hyperandrogenemia in Iraqi Women with Polycystic Ovary Syndrome |
|
|
| Manal Madany Abdalqader, Shatha Sami Hussein |
|
| Obstetrics and Gynecology International. 2020; 2020: 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
10 |
In depth analysis of the association of FTO SNP (rs9939609) with the expression of classical phenotype of PCOS: a Sri Lankan study |
|
|
| Umayal Branavan, Sulochana Wijesundera, Vishvanath Chandrasekaran, Carukshi Arambepola, Chandrika Wijeyaratne |
|
| BMC Medical Genetics. 2020; 21(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|