PURPOSE: This study examined SSC proliferation on an epididymosome-enriched decellularized testicular matrix (DTM) hydrogel and spermatogenesis induction in azoospermic mice. METHODS: Epididymosomes were extracted and characterized using SEM and western blotting. After cryopreservation, thawed SSCs were cultured in a hydrogel-based three-dimensional (3D) culture containing 10 ng/mL GDNF or 20 µg/mL epididymosomes. SSCs were assessed using the MTT assay, flow cytometry, and qRT-PCR after two weeks of culture. The isolated SSCs were microinjected into the efferent ducts of busulfan-treated mice. DiI-labeled SSCs were followed, and cell homing was assessed after two weeks. After 8 weeks, the testes were evaluated using morphometric studies and immunohistochemistry. RESULTS: The expression of PLZF, TGF-β, and miR-10b did not increase statistically significantly in the 3Dâ+âGDNF and 3Dâ+âepididymosome groups compared to the 3D group. Among the groups, the GDNF-treated group exhibited the highest expression of miR-21 (*Pâ<â0.05). Caspase-3 expression was lower in the epididymosome-treated group than in the other groups (***Pâ<â0.001). Compared to the 3D and negative control groups, the 3Dâ+âepididymosomes and 3Dâ+âGDNF groups showed an increase in spermatogenic cells. Immunohistochemical results confirmed the growth and differentiation of spermatogonial cells into spermatids in the treatment groups. CONCLUSION: The DTM hydrogel containing 20 µg/mL epididymosomes or 10 ng/mL GDNF is a novel and safe culture system that can support SSC proliferation in vitro to obtain adequate SSCs for transplantation success. It could be a novel therapeutic agent that could recover deregulated SSCs in azoospermic patients.
The effect of epididymosomes on the development of frozen-thawed mouse spermatogonial stem cells after culture in a decellularized testicular scaffold and transplantation into azoospermic mice.
附睾小体对冻融小鼠精原干细胞在脱细胞睾丸支架中培养并移植到无精子症小鼠体内发育的影响
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作者:Rahbar Maryam, Asadpour Reza, Mazaheri Zohreh
| 期刊: | Journal of Assisted Reproduction and Genetics | 影响因子: | 2.700 |
| 时间: | 2024 | 起止号: | 2024 Aug;41(8):2079-2098 |
| doi: | 10.1007/s10815-024-03157-y | 种属: | Mouse |
| 研究方向: | 发育与干细胞、细胞生物学 | 信号通路: | 炎性小体 |
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