<p>Premature ovarian failure (POF) is a perplexing condition in women characterized by cessation of oocyte production in the ovaries. Despite numerous proposed causes for the development of POF, the actual cause of the most POF cases remains unknown. Given that POF significantly affects fertility and is a devastating diagnosis for women, there is an urgent need for the development of new therapies aimed at reducing the long-term health consequences associated with POF. To explore the functions and potential mechanisms of growth hormone (GH) in ovarian development, follicle formation, and oocyte production, we created a mouse model of premature ovarian failure (POF) by administering cisplatin via intraperitoneal injection. Subsequently, we investigated the role of GH in attenuating the POF-induced effects. Our findings demonstrate that GH effectively improves the ovarian coefficient, promotes follicular development, and increases the quantity of oocytes. To explore the functions and potential mechanisms of growth hormone (GH) in ovarian development, follicle formation, and oocyte production, we created a mouse model of premature ovarian failure (POF) by administering cisplatin via intraperitoneal injection. Subsequently, we investigated the role of GH in attenuating the POF-induced effects. Our findings demonstrate that GH effectively improves the ovarian coefficient, promotes follicular development, and increases the quantity of oocytes.</p> Graphical Abstract <p></p>

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Growth Hormone Improves Ovarian Follicle Health in Premature Ovarian Failure Mice by Reducing Apoptosis

  • Ziwei Hong,
  • Xinyi Ni,
  • Liying Zhou,
  • Hong Ji,
  • Daowei Yang,
  • Hongshu Sui,
  • Hailong Wang

摘要

Premature ovarian failure (POF) is a perplexing condition in women characterized by cessation of oocyte production in the ovaries. Despite numerous proposed causes for the development of POF, the actual cause of the most POF cases remains unknown. Given that POF significantly affects fertility and is a devastating diagnosis for women, there is an urgent need for the development of new therapies aimed at reducing the long-term health consequences associated with POF. To explore the functions and potential mechanisms of growth hormone (GH) in ovarian development, follicle formation, and oocyte production, we created a mouse model of premature ovarian failure (POF) by administering cisplatin via intraperitoneal injection. Subsequently, we investigated the role of GH in attenuating the POF-induced effects. Our findings demonstrate that GH effectively improves the ovarian coefficient, promotes follicular development, and increases the quantity of oocytes. To explore the functions and potential mechanisms of growth hormone (GH) in ovarian development, follicle formation, and oocyte production, we created a mouse model of premature ovarian failure (POF) by administering cisplatin via intraperitoneal injection. Subsequently, we investigated the role of GH in attenuating the POF-induced effects. Our findings demonstrate that GH effectively improves the ovarian coefficient, promotes follicular development, and increases the quantity of oocytes.

Graphical Abstract