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Orthotopic Ovarian Transplantation Procedures to Investigate the Life- and Health-span Influence of Ovarian Senescence in Female Mice
Published on: February 12, 2018
Clinical Strategies for Counteracting Human Ovarian Aging: Molecular Background, Update, and Outlook
Jan Tesarik1, Raquel Mendoza Tesarik1
1MARGen (Molecular Assisted Reproduction and Genetics) Clinic, 18006 Granada, Spain.
Abstract:
Ovarian aging (OA) results from the senescence of different cell types present in the ovary, decreasing female fertility and quality of life and augmenting the risk of a variety of fertility-unrelated pathological conditions. The changes observed in the ovarian cells are accompanied by changes occurring in various elements of the hypothalamic-pituitary-ovarian (HPO) axis, the complex endocrine system that regulates the female reproductive cycle. Issues pertaining to the HPO axis have been addressed in animal models via hormonal treatments with preparations inhibiting ovarian follicular recruitment at the level of the receptors of gonadotropin-releasing hormone (GnRH)-secreting neurons, mainly acting on glutamate- and gamma-aminobutyric acid (GABA)-driven signaling. GnRH agonists and antagonists have also been used in women exposed to chemotherapeutics. HPO-independent OA can be delayed through the administration of different antioxidants and mitochondria-protecting agents, among which melatonin has been shown to be particularly useful. Other therapeutic approaches used with success in women include hormonal and growth factor (GF) modulators, such as growth hormone (GH), insulin-like growth factor 1 (IGF-1), vascular endothelial growth factors (VEGF), and dehydroepiandrosterone (DHEA), and the development of patient-tailored combination-based therapies (IGF-1 + VEGF + DHEA) has also been suggested. Intraovarian injection of autologous platelet-rich plasma (PRP), mitochondrial donation through pronuclear transfer, and ovarian tissue cryopreservation and autotransplantation have also yielded promising results in women, and their use can preserve not only fertility but also the ovarian endocrine function. Personalized mixtures of specific agents (desatinib, quercetin, rapamycin, metformin, resveratrol, melatonin, and coenzyme Q10) targeting different cell types in the ovary are currently under investigation. Overall, this review aims to present a global view of the subject, uniting the physiological and molecular background of this pathology with the history and development of potential treatment strategies and new perspectives in this domain. As such, this study may be helpful both to clinicians facing problems resulting from OA and to researchers pursuing further developments in this field.
Insights
Ovarian aging (OA) impacts fertility and health. This review explores OA
Area of Science:
- Reproductive Endocrinology
- Cellular Senescence
- Ovarian Physiology
Background:
- Ovarian aging (OA) is characterized by cellular senescence, leading to decreased female fertility and increased risk of other pathologies.
- OA is associated with alterations in the hypothalamic-pituitary-ovarian (HPO) axis, impacting reproductive cycle regulation.
- Understanding the molecular and physiological underpinnings of OA is crucial for developing effective interventions.
Purpose of the Study:
- To provide a comprehensive overview of ovarian aging, integrating its physiological and molecular basis.
- To review historical and current therapeutic strategies for managing OA and preserving ovarian function.
- To highlight emerging treatment perspectives and future research directions in the field of ovarian aging.
Main Methods:
- Review of existing literature on ovarian aging, HPO axis function, and therapeutic interventions.
- Analysis of hormonal treatments, antioxidants, growth factors, and novel regenerative approaches.
- Exploration of combination therapies and personalized treatment strategies targeting cellular senescence.
Main Results:
- Various therapeutic strategies, including hormonal modulators (GnRH agonists/antagonists), antioxidants (melatonin), and growth factors (GH, IGF-1, VEGF, DHEA), show promise in managing OA.
- Regenerative medicine approaches like autologous platelet-rich plasma (PRP) and mitochondrial donation offer potential for fertility preservation and endocrine function.
- Ongoing research investigates personalized combinations of agents targeting specific ovarian cell types for OA treatment.
Conclusions:
- Ovarian aging presents complex challenges affecting fertility and overall health, necessitating diverse therapeutic approaches.
- Current and emerging strategies, from hormonal therapies to regenerative medicine, aim to mitigate OA's effects and preserve ovarian function.
- Further research into personalized and combination therapies holds significant promise for clinical management of OA.
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