Novel in vivo endometriotic models associated eutopic endometrium by implanting menstrual blood-derived stromal cells from patients with endometriosis

The eutopic endometrium provides novel insights into endometriotic pathophysiology and treatment. However, no in vivo models currently available are suitable for eutopic endometrium in endometriosis. In this study, we present new endometriotic in vivo models associated with eutopic endometrium using...

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Veröffentlicht in:Scientific reports 2023-05, Vol.13 (1), p.8347-8347, Article 8347
Hauptverfasser: Zhang, Yuejian, He, Tiantian, Lin, Taoxiu, Guo, Qi, Huo, Chaoyue, Roberts, Song Ze, Yang, Mengping, Yang, Sichen, Gao, Luyi, Zhang, Wenjuan, Li, Changxiang, Ma, Xiaona
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Sprache:eng
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Zusammenfassung:The eutopic endometrium provides novel insights into endometriotic pathophysiology and treatment. However, no in vivo models currently available are suitable for eutopic endometrium in endometriosis. In this study, we present new endometriotic in vivo models associated with eutopic endometrium using menstrual blood-derived stromal cells (MenSCs). First, we isolated endometriotic MenSCs (E-MenSCs) and healthy MenSCs (H-MenSCs) from the menstrual blood of patients with endometriosis ( n  = 6) and healthy volunteers ( n  = 6). Then, we identified MenSCs’ endometrial stromal cell properties using adipogenic and osteogenic differentiation. A cell counting kit-8 and wound healing assay were used to compare the proliferation and migration capability between E-MenSCs and H-MenSCs. Seventy female nude mice were used to prepare endometriotic models related to eutopic endometrium by implanting E-MenSCs relying on three approaches, including surgical implantation using scaffolds seeded with MenSCs, and subcutaneous injection of MenSCs in the abdomen and the back ( n  = 10). H-MenSCs or scaffolds only were implanted in control groups ( n  = 10). One month after the surgical implantation and 1 week after the subcutaneous injection, we evaluated modeling by hematoxylin–eosin (H&E) and immunofluorescent staining of human leukocyte antigen α (HLAA). Fibroblast morphology, lipid droplets, and calcium nodules in E-MenSCs and H-MenSCs identified their endometrial stromal cell properties. We noticed that the proliferation and migration of E-MenSCs were considerably enhanced compared to H-MenSCs ( P  
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-023-35373-4