Reconstruction of functional uterine tissues through recellularizing the decellularized rat uterine scaffolds by MSCsin vivoandin vitro.
Xia LiYiming WangRuoyu MaXin LiuBiaobiao SongYongchao DuanJia GuoGuihai FengTongtong CuiLiu WangJie HaoHongmei WangQi GuPublished in: Biomedical materials (Bristol, England) (2020)
Infertile people suffered from loss of uterine structures and/or functions can be treated through gestational surrogacy or uterus transplantation, which remains challenging due to the ethical and social issues, the lack of donor organs as well as technical and safety risks. One promising solution is to regenerate and reconstruct a bioartificial uterus for transplantation through the engineering of uterine architecture and appropriate cellular constituents. Here, we developed a well-defined system to regenerate a functional rat uterine through recellularization of the decellularized uterine matrix (DUM) reseeded with human mesenchymal stem cells (hMSCs). Engraftment of the recellularized DUMs on the partially excised uteri yielded a functional rat uterus with a pregnancy rate and number of fetuses per uterine horn comparable to that of the control group with an intact uterus. Particularly, the recellularized DUMs enhanced the regeneration of traumatic uterine in vivo because of MSC regulation. The established system here will shed light on treatment of uterine infertility with heterogeneous DUMs/cells resources through tissue engineering in the future.
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