Ovarian granulosa cells produce a variety of biologically active compounds in addition to steroid hormones that include numerous families of growth factors, cytokines and adipokines. Many of these function as endocrine, paracrine and autocrine hormones to regulate ovarian activity. The goal of this review is to provide an update on the evidence in domestic animals on how FSH, insulin and IGF1 regulate the function of granulosa cells with a focus on ovarian steroidogenesis and cell proliferation with comparisons across six domestic animals: pigs, cattle, horses, water buffalo, goats and sheep. In most species, FSH was not a mitogenic stimulus to granulosa cells whereas insulin and IGF1 were stimulatory to cell proliferation in the species it was evaluated. FSH, insulin and IGF1 were all stimulatory to granulosa cell steroidogenesis in the species it was studied. More research is needed to evaluate the role of insulin in the regulation of cell proliferation and steroidogenesis in water buffalo and goats. The role of IGF1 in regulating granulosa cell function in horses also needs further study. Most granulosa-cell secreted factors have direct effects (either positive or negative) on FSH-, insulin- and IGF1-induced steroid production in ovarian cells, but how they all work together to create a cumulative effect to regulate fertility will require further research.
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http://dx.doi.org/10.1016/j.domaniend.2025.106919 | DOI Listing |
Tohoku J Exp Med
January 2025
Department of Obstetrics and Gynecology, Shanxi Fenyang Hospital.
Domest Anim Endocrinol
January 2025
Department of Agriculture, Veterinary & Rangeland Sciences, University of Nevada, Reno, NV, 89557 USA.
Ovarian granulosa cells produce a variety of biologically active compounds in addition to steroid hormones that include numerous families of growth factors, cytokines and adipokines. Many of these function as endocrine, paracrine and autocrine hormones to regulate ovarian activity. The goal of this review is to provide an update on the evidence in domestic animals on how FSH, insulin and IGF1 regulate the function of granulosa cells with a focus on ovarian steroidogenesis and cell proliferation with comparisons across six domestic animals: pigs, cattle, horses, water buffalo, goats and sheep.
View Article and Find Full Text PDFGinekol Pol
January 2025
Department of Clinical Dietetics, Faculty of Health Sciences, Medical University of Warsaw, Poland, Poland.
Anti-Müllerian hormone (AMH), also known as Müller duct inhibitory factor and primarily known for its role in sexual differentiation. In female fetuses, AMH production by granulosa cells begins around the 36th week of gestation and continues in women until menopause. It is becoming more significant in the endocrine and gynecological diagnosis of adult women.
View Article and Find Full Text PDFInt J Gynecol Cancer
January 2025
Memorial Sloan Kettering Cancer Center, Department of Medicine, Gynecologic Medical Oncology Service, New York, NY, USA; Weill Cornell Medical College, Department of Medicine, New York, NY, USA. Electronic address:
Objective: We sought to determine the safety and efficacy of the oral progesterone antagonist onapristone in combination with anastrozole in patients with recurrent progesterone receptor-positive adult-type granulosa cell tumor of the ovary.
Methods: This was a single-institution phase II study of patients with progesterone receptor-positive adult-type granulosa cell tumor who received at least 1 prior line of chemotherapy. Patients were enrolled from November 2021 to August 2022 and tissue was evaluated for progesterone receptor status via immunohistochemistry.
Jpn J Clin Oncol
January 2025
Department of Gynecology, National Cancer Center Hospital, 5-1-1 Tsukiji, Chuo-ku, Tokyo 104-0045, Japan.
There are many histologic types of gynecologic malignancies. I reviewed three rare ovarian tumor types that have poor prognoses. Ovarian mesonephric-like adenocarcinoma (MLA) is a newly described histological type known for its aggressive behavior.
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