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Derivation and Differentiation of Canine Ovarian Mesenchymal Stem Cells
Published on: December 16, 2018
Mesenchymal stem cells and their promise in reversing ovarian aging
Dongmei Yao1, Hong Chen1, Jianlong Yuan1
1Department of Clinical Laboratory, Affiliated Hospital of Inner Mongolia Medical University, Hohhot, China.
Abstract:
Ovarian aging is accompanied by a decline in the quantity and quality of follicles, leading to reduced fertility. Ovarian aging encompasses natural aging due to DNA damage, telomere attrition, and mitochondrial dysfunction, as well as a pathological functional failure caused by environmental toxins, known as a premature ovarian failure. Cell therapy is currently a focal point of research, with mesenchymal stem cells (MSCs) being particularly notable due to their wide availability, ease of expansion, strong self-renewal capabilities, multipotent differentiation, and paracrine functions. MSCs have shown great potential in the field of cell therapy, including delaying ovarian aging. MSCs can delay ovarian aging through various mechanisms: antioxidation, differentiation and regeneration, promotion of cell proliferation, inhibition of cell apoptosis, and anti-inflammatory responses. Currently, MSCs transplantation has achieved significant results in animal models, improving ovarian function and enhancing fertility. However, clinical applications still face numerous challenges, such as determining the optimal cell source, transplantation route, dosage, and long-term safety, which require further research. In this review, we will elaborate on the mechanisms of ovarian aging, the modes of action of MSCs, and the mechanisms by which MSCs delay ovarian aging, aiming to provide a theoretical basis for the clinical application of MSCs and to bring breakthroughs in the treatment of diseases such as premature ovarian failure.
Insights
Mesenchymal stem cells (MSCs) show promise in delaying ovarian aging and improving fertility by targeting key aging mechanisms. Further research is needed to overcome challenges for successful clinical application in premature ovarian failure.
Area of Science:
- Reproductive biology and regenerative medicine.
Background:
- Ovarian aging leads to decreased follicle count and quality, reducing fertility.
- Aging involves DNA damage, telomere attrition, mitochondrial dysfunction, and premature ovarian failure due to toxins.
- Mesenchymal stem cells (MSCs) are promising for cell therapy due to their regenerative and paracrine capabilities.
Purpose of the Study:
- To review the mechanisms of ovarian aging.
- To explore the action modes and mechanisms of MSCs in delaying ovarian aging.
- To provide a theoretical basis for clinical MSC application in ovarian aging and premature ovarian failure.
Main Methods:
- Review of existing literature on ovarian aging and MSCs.
- Analysis of MSC mechanisms including antioxidation, differentiation, proliferation promotion, apoptosis inhibition, and anti-inflammatory effects.
- Evaluation of MSC transplantation outcomes in animal models.
Main Results:
- MSCs demonstrate potential in delaying ovarian aging through multiple biological pathways.
- MSC transplantation has shown positive results in animal models, improving ovarian function and fertility.
- Significant challenges remain for clinical translation, including optimal cell source, dosage, and safety.
Conclusions:
- MSCs offer a promising therapeutic strategy for ovarian aging and premature ovarian failure.
- Understanding MSC mechanisms is crucial for advancing their clinical application.
- Further research is essential to address clinical challenges and translate findings into effective treatments.
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