» Articles » PMID: 35013490

Transplantation of Umbilical Cord-derived Mesenchymal Stem Cells Promotes the Recovery of Thin Endometrium in Rats

Overview
Journal Sci Rep
Specialty Science
Date 2022 Jan 11
PMID 35013490
Authors
Affiliations
Soon will be listed here.
Abstract

The endometrium plays a critical role in embryo implantation and pregnancy, and a thin uterus is recognized as a key factor in embryo implantation failure. Umbilical cord mesenchymal stem cells (UC-MSCs) have attracted interest for the repair of intrauterine adhesions. The current study investigated the repair of thin endometrium in rats using the UC-MSCs and the mechanisms involved. Rats were injected with 95% ethanol to establish a model of thin endometrium. The rats were randomly divided into normal, sham, model, and UC-MSCs groups. Endometrial morphological alterations were observed by hematoxylin-eosin staining and Masson staining, and functional restoration was assessed by testing embryo implantation. The interaction between UC-MSCs and rat endometrial stromal cells (ESCs) was evaluated using a transwell 3D model and immunocytochemistry. Microarray mRNA and miRNA platforms were used for miRNA-mRNA expression profiling. Gene ontology (GO) and Kyoto encyclopedia of genes and genomes (KEGG) analyses were performed to identify the biological processes, molecular functions, cellular components, and pathways of endometrial injury and UC-MSCs transplantation repair and real-time quantitative reverse transcription PCR (qRT-PCR) was performed to further identify the expression changes of key molecules in the pathways. Endometrium thickness, number of glands, and the embryo implantation numbers were improved, and the degree of fibrosis was significantly alleviated by UC-MSCs treatment in the rat model of thin endometrium. In vitro cell experiments showed that UC-MSCs migrated to injured ESCs and enhanced their proliferation. miRNA microarray chip results showed that expression of 45 miRNAs was downregulated in the injured endometrium and upregulated after UC-MSCs transplantation. Likewise, expression of 39 miRNAs was upregulated in the injured endometrium and downregulated after UC-MSCs transplantation. The miRNA-mRNA interactions showed the changes in the miRNA and mRNA network during the processes of endometrial injury and repair. GO and KEGG analyses showed that the process of endometrial injury was mainly attributed to the decomposition of the extracellular matrix (ECM), protein degradation and absorption, and accompanying inflammation. The process of UC-MSCs transplantation and repair were accompanied by the reconstruction of the ECM, regulation of chemokines and inflammation, and cell proliferation and apoptosis. The key molecules involved in ECM-receptor interaction pathways were further verified by qRT-PCR. Itga1 and Thbs expression decreased in the model group and increased by UC-MSCs transplantation, while Laminin and Collagen expression increased in both the model group and MSCs group, with greater expression observed in the latter. This study showed that UC-MSCs transplantation could promote recovery of thin endometrial morphology and function. Furthermore, it revealed the expression changes of miRNA and mRNA after endometrial injury and UC-MSCs transplantation repair processed, and signaling pathways that may be involved in endometrial injury and repair.

Citing Articles

Application of biomaterials in mesenchymal stem cell based endometrial reconstruction: current status and challenges.

He L, Li Q Front Bioeng Biotechnol. 2025; 13:1518398.

PMID: 39944223 PMC: 11813782. DOI: 10.3389/fbioe.2025.1518398.


Innovative therapeutic strategies for intrauterine adhesions: Role of umbilical cord mesenchymal stem cells in rat models.

Zhang M, Gao H, Zheng J, Du Y, Tian Y, Xiao Y Exp Ther Med. 2025; 29(3):55.

PMID: 39885907 PMC: 11775724. DOI: 10.3892/etm.2025.12805.


Advances in human umbilical cord mesenchymal stem cells-derived extracellular vesicles and biomaterial assemblies for endometrial injury treatment.

Zhang W, Wang H, Deng C World J Stem Cells. 2025; 17(1):97905.

PMID: 39866901 PMC: 11752459. DOI: 10.4252/wjsc.v17.i1.97905.


Olig2 single-colony-derived cranial bone-marrow mesenchymal stem cells achieve improved regeneration in a cuprizone-induced demyelination mouse model.

Peng D, Lu R, Lu L, Yao Q, Yang K, Xu Y J Zhejiang Univ Sci B. 2025; 25(12):1108-1114.

PMID: 39743297 PMC: 11693392. DOI: 10.1631/jzus.B2300790.


Effects of miR-214-5p and miR-21-5p in hypoxic endometrial epithelial-cell-derived exosomes on human umbilical cord mesenchymal stem cells.

Zhang W, Wang H, Deng C World J Stem Cells. 2024; 16(11):906-925.

PMID: 39619875 PMC: 11606348. DOI: 10.4252/wjsc.v16.i11.906.


References
1.
Vartanyan E, Tsaturova K, Devyatova E . Thin endometrium problem in IVF programs. Gynecol Endocrinol. 2020; 36(sup1):24-27. DOI: 10.1080/09513590.2020.1816724. View

2.
Liu K, Hartman M, Hartman A . Management of thin endometrium in assisted reproduction: a clinical practice guideline from the Canadian Fertility and Andrology Society. Reprod Biomed Online. 2019; 39(1):49-62. DOI: 10.1016/j.rbmo.2019.02.013. View

3.
Moustafa S, Garneau A, Goodman L . Elusive effect of endometrial thickness: through thick and thin. Fertil Steril. 2020; 115(1):89-90. DOI: 10.1016/j.fertnstert.2020.09.135. View

4.
Sarvi F, Arabahmadi M, Alleyassin A, Aghahosseini M, Ghasemi M . Effect of Increased Endometrial Thickness and Implantation Rate by Granulocyte Colony-Stimulating Factor on Unresponsive Thin Endometrium in Fresh In Vitro Fertilization Cycles: A Randomized Clinical Trial. Obstet Gynecol Int. 2017; 2017:3596079. PMC: 5534287. DOI: 10.1155/2017/3596079. View

5.
Azizi R, Aghebati-Maleki L, Nouri M, Marofi F, Negargar S, Yousefi M . Stem cell therapy in Asherman syndrome and thin endometrium: Stem cell- based therapy. Biomed Pharmacother. 2018; 102:333-343. DOI: 10.1016/j.biopha.2018.03.091. View