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1. Disruption in CYLC1 leads to acrosome detachment, sperm head deformity, and male in/subfertility in humans and mice

2. Identification of CFAP52 as a novel diagnostic target of male infertility with defects of sperm head-tail connection and flagella development

3. CFAP70 is a solid and valuable target for the genetic diagnosis of oligo-astheno-teratozoospermia in infertile menResearch in context

4. The perinuclear theca protein Calicin helps shape the sperm head and maintain the nuclear structure in mice

5. CRISPR/Cas9-mediated genome editing induces gene knockdown by altering the pre-mRNA splicing in mice

7. Loss of perinuclear theca ACTRT1 causes acrosome detachment and severe male subfertility in mice

9. Molecular genetics of infertility: loss-of-function mutations in humans and corresponding knockout/mutated mice

10. The perinuclear theca protein Calicin helps shape the sperm head and maintain the nuclear structure in mice

11. The mutation c.346-1G A in SOHLH1 impairs sperm production in the homozygous but not in the heterozygous condition

12. Recent advances in the regulation of testicular germ cell tumors by microRNAs

13. The heterozygous mutation of c.346-1G>A in SOHLH1 gene is irrelevant to nonobstructive azoospermia

15. Mechanisms of Long Non-Coding RNAs in Cancers and Their Dynamic Regulations

16. CRISPR/Cas9-mediated genome editing induces gene knockdown by altering the pre-mRNA splicing in mice

17. A miR-125b/CSF1-CX3CL1/tumor-associated macrophage recruitment axis controls testicular germ cell tumor growth

18. Cyclin B2 can compensate for Cyclin B1 in oocyte meiosis I

19. Melatonin promotes sheep Leydig cell testosterone secretion in a co-culture with Sertoli cells

20. Melatonin up-regulates the expression of the GATA-4 transcription factor and increases testosterone secretion from Leydig cells through RORα signaling in an in vitro goat spermatogonial stem cell differentiation culture system

21. In vitro production of functional haploid sperm cells from male germ cells of Saanen dairy goat

22. Biologic response of sperm and seminal plasma to transient testicular heating

23. Distinct Metabolic Features of Seminoma and Embryonal Carcinoma Revealed by Combined Transcriptome and Metabolome Analyses

24. Proteasome Subunit α4s is Essential for Meiotic DNA Repair, Meiosis and Fertility in Male

25. An exploration of the role of Sertoli cells on fetal testis development using cell ablation strategy

26. Melatonin promotes development of haploid germ cells from early developing spermatogenic cells of Suffolk sheep under in vitro condition

27. CD83, a Novel MAPK Signaling Pathway Interactor, Determines Ovarian Cancer Cell Fate

28. Testicular germ cell tumor: a comprehensive review

29. GATA4 is a negative regulator of contractility in testicular peritubular myoid cells

30. Selective deletion of WLS in peritubular myoid cells does not affect spermatogenesis or fertility in mice

33. Regulation of spermatogonial stem cell self-renewal and spermatocyte meiosis by Sertoli cell signaling

34. Regulation of blood–testis barrier assembly in vivo by germ cells

35. Role of WNT signaling in epididymal sperm maturation

36. Merotelic kinetochore attachment in oocyte meiosis II causes sister chromatids segregation errors in aged mice

37. EZH2 deletion promotes spermatogonial differentiation and apoptosis

38. Wt1 deficiency causes undifferentiated spermatogonia accumulation and meiotic progression disruption in neonatal mice

39. Elevated intracellular pH appears in aged oocytes and causes oocyte aneuploidy associated with the loss of cohesion in mice

40. Myh11-Cre is not limited to peritubular myoid cells and interaction between Sertoli and peritubular myoid cells needs investigation

41. Selective deletion of Smad4 in postnatal germ cells does not affect spermatogenesis or fertility in mice

42. Testis Cord Maintenance in Mouse Embryos: Genes and Signaling1

43. Testis Cord Maintenance in Mouse Embryos: Genes and Signaling

44. Requirement for CCNB1 in mouse spermatogenesis

46. The Heat-Induced Reversible Change in the Blood-Testis Barrier (BTB) Is Regulated by the Androgen Receptor (AR) via the Partitioning-Defective Protein (Par) Polarity Complex in the Mouse1

47. The Heat-Induced Reversible Change in the Blood-Testis Barrier (BTB) Is Regulated by the Androgen Receptor (AR) via the Partitioning-Defective Protein (Par) Polarity Complex in the Mouse

48. The Wilms Tumor Gene, Wt1, Maintains Testicular Cord Integrity by Regulating the Expression of Col4a1 and Col4a21

49. The Wilms tumor gene, Wt1, maintains testicular cord integrity by regulating the expression of Col4a1 and Col4a2

50. GATA4 is a negative regulator of contractility in mouse testicular peritubular myoid cells.

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