Comparison of Human Amniotic, Chorionic, and Umbilical Cord Multipotent Mesenchymal Stem Cells Regarding Their Capacity for Differentiation Toward Female Germ Cells

生物 间充质干细胞 脐带 干细胞 沃顿果冻 男科 川地34 羊膜上皮细胞 多能干细胞 免疫学 细胞生物学 羊膜干细胞 细胞分化 帘布衬里 生殖细胞 成体干细胞 祖细胞 医学 遗传学 基因
作者
Hamid Reza Asgari,Mohammad Akbari,Hossein Yazdekhasti,Zahra Rajabi,Shadan Navid,Fereshteh Aliakbari,Niloufar Abbasi,Freidon Sargolzaei Aval,Alireza Shams,Mehdi Abbasi
出处
期刊:Cellular Reprogramming [Mary Ann Liebert, Inc.]
卷期号:19 (1): 44-53 被引量:35
标识
DOI:10.1089/cell.2016.0035
摘要

Placenta harbors a plentiful source of various cells with stem cells or stem-like cell properties, which can be used in therapeutic procedures and research. Mesenchymal stem cells (MSCs) have attracted much attention due to their specific differentiation potential and tolerogenic properties. MSCs have been isolated from different parts of placenta; however, in this study, we isolated MSCs from amnion and chorion membrane, as well as umbilical cord (Wharton's jelly [WJ]) and compared their capacity regarding differentiation toward female germ cells under influence of 10 ng/mL BMP4. All placenta samples were collected from delivering mothers by normal cesarean section and cells were isolated by different methods. Results showed that all isolated cells were mostly positive for the MSC markers CD73, CD166, and CD105, and minimally reacted with CD34 and CD45 (hematopoietic markers). After differentiation induction using third passage cultured cells, immunocytochemistry staining showed that cells were positive for germline cell-related genes Ssea4, Oct4, and Ddx4, and oocyte-related gene Gdf9. RT-qPCR results indicated that human chorion MSCs (hCMSCs) had a greater potential to be differentiated into female germline cells. Moreover, the results of this study indicate that human umbilical cord MSCs originated from either male or female umbilical cord have the same differentiation potential into female germline cells. We recommend that for presumptive application of MSCs for infertility treatment and research, hUMSCs are best candidates due to their higher differentiation potential, ease of proliferation and expansion, and low immunogenicity.
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