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Accès ouvert déclaré 2025 article

Wharton’s Jelly Hydrogel: An Innovative Artificial Ovary for Xenotransplantation of Isolated Human Ovarian Follicles

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BACKGROUND: An artificial ovary has emerged as a novel alternative approach to prevent the reintroduction of cancerous cells after ovarian tissue autotransplantation. This study evaluates the ability of decellularized Wharton's jelly (dWJ) to facilitate human ovarian follicle growth in a xenotransplantation model. MATERIALS AND METHODS: Two transplanted groups were established; one consisted of a decellularized Wharton's jelly/alginate (dWJ/Alg) composite, and an alginate (Alg) group was used as the control group. Each artificial ovary received approximately 20 partially isolated viable human ovarian follicles, subsequently undergoing xenotransplantation into ovariectomized, non-immunodeficient NMRI mice. Grafts were extracted at 1, 2, 4, or 5 weeks for comprehensive histological and immunohistochemical evaluations. Additionally, mouse blood serum was collected for hormonal analysis. RESULTS: H&E staining confirmed granulosa cell proliferation and follicle growth in dWJ/Alg after 1 week of grafting. While human ovarian-like structures and cell proliferation were visible in other grafts, follicles were not observed. Conversely, immunohistochemical staining for Vimentin, Ki67, and CD45 confirmed the presence of human cells, proliferative cells, and inflammatory cells, respectively. However, hormonal assays revealed no significant difference in estrogen or progesterone levels between the experimental groups. CONCLUSIONS: It seems that Wharton's jelly/alginate hydrogel can be used as an artificial niche for simulating the ovarian environment, effectively supporting the growth of xenotransplants of isolated human follicles.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Wharton’s Jelly Hydrogel: An Innovative Artificial Ovary for Xenotransplantation of Isolated Human Ovarian Follicles
Date Crossref
01/10/2025
Éditeur
MDPI AG
Type
journal-article

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Sujets associés

Reproductive Biology and FertilityTissue Engineering and Regenerative MedicineMesenchymal stem cell research

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