4.2 Article

Mouse preantral follicle growth in 3D co-culture system using human menstrual blood mesenchymal stem cell

期刊

REPRODUCTIVE BIOLOGY
卷 18, 期 1, 页码 122-131

出版社

INST ANIMAL REPRODUCTION FOOD RESEARCH
DOI: 10.1016/j.repbio.2018.02.001

关键词

Preantral follicle; Menstrual blood stem cells; 3D co-culture; Fertility preservation; In vitro culture and maturation

资金

  1. Tehran University of Medical Sciences [28959.30.02.94]

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Follicle culture provides a condition which can help investigators to evaluate various aspects of ovarian follicle growth and development and impact of different components and supplementations as well as presumably application of follicle culture approach in fertility preservation procedures. Mesenchymal Stem Cells (MSCs), particularly those isolated from menstrual blood has the potential to be used as a tool for improvement of fertility. In the current study, a 3D co-culture system with mice preantral follicles and human Menstrual Blood Mesenchymal Stem Cells (MenSCs) using either collagen or alginate beads was designed to investigate whether this system allows better preantral follicles growth and development. Results showed that MenSCs increase the indices of follicular growth including survival rate, diameter, and antrum formation as well as the rate of in vitro maturation (IVM) in both collagen and alginates beads. Although statistically not significant, alginate was found to be superior in terms of supporting survival rate and antrum formation. Hormone assay demonstrated that the amount of secreted 17 beta-estradiol and progesterone in both 3D systems increased dramatically after 12 days, with the highest levels in system employing MenSCs. Data also demonstrated that relative expression of studied genes increased for Bmp15 and Gdf9 and decreased for Mater when follicles were cultured in the presence of MenSCs. Collectively, results of the present study showed that MenSCs could improve indices of follicular growth and maturation in vitro. Further studies are needed before a clinical application of MenSCs-induced IVM is considered.

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