2018
DOI: 10.1016/j.repbio.2018.02.001
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Mouse preantral follicle growth in 3D co-culture system using human menstrual blood mesenchymal stem cell

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Cited by 29 publications
(18 citation statements)
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References 80 publications
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“…Similarly, in vitro, MenSC increased indices of mouse follicular growth, including survival rate, diameter and antrum formation, Bmp15 and Gdf9 expression and maturation rate in a 3D culture system. Secreted progesterone and estradiol increased in co-cultured murine preantral follicles and human MenSC implying a supportive role of MenSCs in follicle development, growth and maturation (Rajabi et al, 2018). In a recent clinical trial in 15 women, intraovarian injection of autologous MenSC in poor ovarian responders increased clinical pregnancy and live births (Zafardoust et al, 2020).…”
Section: Ovarian Function and Reservementioning
confidence: 94%
“…Similarly, in vitro, MenSC increased indices of mouse follicular growth, including survival rate, diameter and antrum formation, Bmp15 and Gdf9 expression and maturation rate in a 3D culture system. Secreted progesterone and estradiol increased in co-cultured murine preantral follicles and human MenSC implying a supportive role of MenSCs in follicle development, growth and maturation (Rajabi et al, 2018). In a recent clinical trial in 15 women, intraovarian injection of autologous MenSC in poor ovarian responders increased clinical pregnancy and live births (Zafardoust et al, 2020).…”
Section: Ovarian Function and Reservementioning
confidence: 94%
“…190 Human menstrual blood-derived endometrial MSCs increased follicular growth and IVM rates when cocultured with mouse alginate-encapsulated preantral follicles. 191 In the same way, coculture of BMSCs with human alginate-encapsulated follicles improved follicle growth and viability in a dose-dependent manner, suggesting that the number of MSCs influences culture outcomes. 192…”
Section: Use Of Stem Cells To Improve Follicle Ivmmentioning
confidence: 85%
“…Although the use of these stem cells for cell therapy has been criticized and vigorously challenged by some researchers, HuMenSCs transplantation has been used to treat irreversible genetic disorders such as muscular dystrophies, diabetes, heart failure, and spinal cord injury. As a source of mesenchymal stem cells (MSCs), HuMenSCs have several interesting features, including their ability to grow rapidly, and are minimally invasive and safe for autologous transplantation (Gargett, ; Hida et al, ; Lin et al, ; Meng et al, ; Patel et al, ; Rajabi et al, ; Santamaria, Massasa, Feng, Wolff, & Taylor, ). HuMenSCs can also be induced to differentiate into specific tissue or organ‐like cells.…”
Section: Discussionmentioning
confidence: 99%