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22 results on '"Di Persio, Sara"'

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1. The conserved genetic program of male germ cells uncovers ancient regulators of human spermatogenesis.

2. Inherited defects of piRNA biogenesis cause transposon de-repression, impaired spermatogenesis, and human male infertility.

3. Genome-wide DNA methylation changes in human spermatogenesis.

4. Identification of two hidden clinical subgroups among men with idiopathic cryptozoospermia.

5. Scrutinizing the human TEX genes in the context of human male infertility.

6. Effect of Mitotane on Male Gonadal Function.

7. Interplay of spermatogonial subpopulations during initial stages of spermatogenesis in adult primates.

8. WWC2 expression in the testis: Implications for spermatogenesis and male fertility.

9. DDX3Y is likely the key spermatogenic factor in the AZFa region that contributes to human non-obstructive azoospermia.

10. Human spermatogonial stem cells and their niche in male (in)fertility: novel concepts from single-cell RNA-sequencing.

11. Transcriptome analyses in infertile men reveal germ cell-specific expression and splicing patterns.

12. Single-cell RNA-seq unravels alterations of the human spermatogonial stem cell compartment in patients with impaired spermatogenesis.

13. Whole-genome methylation analysis of testicular germ cells from cryptozoospermic men points to recurrent and functionally relevant DNA methylation changes.

14. TRIM71 Deficiency Causes Germ Cell Loss During Mouse Embryogenesis and Is Associated With Human Male Infertility.

15. TNF-α inhibits GDNF levels in Sertoli cells, through a NF-κB-dependent, HES1-dependent mechanism.

16. Age-related changes in human Leydig cell status.

17. The sperm epigenome does not display recurrent epimutations in patients with severely impaired spermatogenesis.

18. Regulation of Gdnf expression by retinoic acid in Sertoli cells.

19. High-resolution analysis of germ cells from men with sex chromosomal aneuploidies reveals normal transcriptome but impaired imprinting.

20. Spermatogonial kinetics in humans.

21. An Orchestrated Intron Retention Program in Meiosis Controls Timely Usage of Transcripts during Germ Cell Differentiation.

22. Spermatogonial cells: mouse, monkey and man comparison.

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