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Kun Yu, Yi Zhang, Bao-Lu Zhang, Han-Yu Wu, Wu-Qi Jiang, Su-Tian Wang, De-Ping Han, Yi-Xun Liu, Zheng-Xing Lian, Shou-Long Deng, In-vitro differentiation of early pig spermatogenic cells to haploid germ cells, Molecular Human Reproduction, Volume 25, Issue 9, September 2019, Pages 507–518, https://doi.org/10.1093/molehr/gaz043
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Abstract
Spermatogonial stem cells (SSCs) self-renew and contribute genetic information to the next generation. Pig is wildly used as a model animal for understanding reproduction mechanisms of human being. Inducing directional differentiation of porcine SSCs may be an important strategy in exploring the mechanisms of spermatogenesis and developing better treatment methods for male infertility. Here, we established an in-vitro culture model for porcine small seminiferous tubule segments, to induce SSCs to differentiate into single-tail haploid spermatozoa. The culture model subsequently enabled spermatozoa to express the sperm-specific protein acrosin and oocytes to develop to blastocyst stage after round spermatid injection. The addition of retinoic acid (RA) to the differentiation media promoted the efficiency of haploid differentiation. RT-PCR analysis indicated that RA stimulated the expression of Stra8 but reduced the expression of NANOS2 in spermatogonia. Genes involved in post-meiotic development, transition protein 1 (Tnp1) and protamine 1 (Prm1) were upregulated in the presence of RA. The addition of an RA receptor (RAR) inhibitor, BMS439, showed that RA enhanced the expression of cAMP responsive-element binding protein through RAR and promoted the formation of round spermatids. We established an efficient culture system for in-vitro differentiation of pig SSCs. Our study represents a model for human testis disease and toxicology screening. Molecular regulators of SSC differentiation revealed in this study might provide a therapeutic strategy for male infertility.
- embryo stage 3
- carrier proteins
- cyclic amp-responsive dna-binding protein
- genes
- germ cells
- haploidy
- male infertility
- oocytes
- protamines
- reproductive physiological process
- reverse transcriptase polymerase chain reaction
- seminiferous tubule
- spermatids
- spermatogenesis
- spermatogonia
- sperm cell
- suidae
- toxicology
- tretinoin
- cyclic amp
- genetics
- testis
- acrosin
- spermatogenic cell