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Attenuation of spermatogonial stem cell activity in cryptorchid testes

机译:隐睾睾中精原干细胞活性的减弱

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Purpose: To elucidate the mechanism of infertility caused by cryptorchidism we focused on early stage spermatogenesis and spermatogonial stem cell activity in undifferentiated spermatogonia in cryptorchid testes. Materials and Methods: Histological findings and expression patterns of the stem cell marker undifferentiated embryonic cell transcription factor 1 were examined in a unilateral cryptorchid rat model. We removed unilateral descended testis and contralateral descended testis from cryptorchid and normal rats (control), respectively, 18 days postcoitum to 144 days postpartum. Results: In descended testes gonocyte differentiation into early A spermatogonia occurred at 9 days postpartum. However, this transformation was altered in undescended testes. Furthermore, the undifferentiated embryonic cell transcription factor 1 negative early A spermatogonia-to-positive early A spermatogonia ratio was significantly higher in the undescended testis group (mean ± SD 0.69 ± 0.04) than in the control (0.46 ± 0.10, p = 0.037) and descended testis (0.44 ± 0.05, p = 0.022) groups, indicating decreased early A spermatogonia with spermatogonial stem cell activity in cryptorchid testes. Conclusions: In cryptorchid testes the differentiation from gonocytes into early A spermatogonia and the stem cell activity of early A spermatogonia were altered during the early stage of spermatogenesis, suggesting that the loss of spermatogonial stem cell activity in cryptorchid rats resulted in altered spermatogenesis, thus interfering with fertility.
机译:目的:为了阐明隐睾症引起的不孕机制,我们重点研究了隐睾睾未分化精原细胞的早期精子发生和精原干细胞活性。材料和方法:在单侧隐睾大鼠模型中检查干细胞标记未分化胚胎细胞转录因子 1 的组织学发现和表达模式。我们分别在后 18 天至产后 144 天从隐睾和正常大鼠(对照组)中取出单侧下降睾丸和对侧下降睾丸。结果:在下降睾丸中,淋巴细胞分化为早期A精原细胞发生在产后9 d。然而,这种转变在未降睾丸中发生了变化。此外,未降睾丸组(平均± SD 0.69 ± 0.04)的未分化胚胎细胞转录因子 1 阴性早期 A 精原细胞与阳性早期 A 精原细胞比值显著高于对照组(0.46 ± 0.10,p = 0.037)和降睾丸组(0.44 ± 0.05,p = 0.022),表明早期 A 精原细胞减少,隐睾睾中精原干细胞活性降低。结论:隐睾睾丸在精子发生早期阶段,从淋细胞分化为早期A精原细胞和早期A精原细胞的干细胞活性发生,提示隐睾大鼠精原细胞活性的丧失导致精子发生改变,从而干扰生育能力。

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