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Updated: Jun 27, 2025

Analysis of Retinoic Acid-induced Neural Differentiation of Mouse Embryonic Stem Cells in Two and Three-dimensional Embryoid Bodies
Published on: April 22, 2017
Retinoic acid mitigates the NSC319726-induced spermatogenesis dysfunction through cuproptosis-independent mechanisms
Haisheng Yi1, Tong Chen2, Guitian He2
1Department of Andrology, The First Hospital of Jilin University, Jilin University, Changchun, 130012, China.
Abstract:
Copper ionophore NSC319726 has attracted researchers' attention in treating diseases, particularly cancers. However, its potential effects on male reproduction during medication are unclear. This study aimed to determine whether NSC319726 exposure affected the male reproductive system. The reproductive toxicity of NSC319726 was evaluated in male mice following a continuous exposure period of 5 weeks. The result showed that NSC319726 exposure caused testis index reduction, spermatogenesis dysfunction, and architectural damage in the testis and epididymis. The exposure interfered with spermatogonia proliferation, meiosis initiation, sperm count, and sperm morphology. The exposure also disturbed androgen synthesis and blood testis barrier integrity. NSC319726 treatment could elevate the copper ions in the testis to induce cuproptosis in the testis. Copper chelator rescued the elevated copper ions in the testis and partly restored the spermatogenesis dysfunction caused by NSC319726. NSC319726 treatment also decreased the level of retinol dehydrogenase 10 (RDH10), thereby inhibiting the conversion of retinol to retinoic acid, causing the inability to initiate meiosis. Retinoic acid treatment could rescue the meiotic initiation and spermatogenesis while not affecting the intracellular copper ion levels. The study provided an insight into the bio-safety of NSC319726. Retinoic acid could be a potential therapy for spermatogenesis impairment in patients undergoing treatment with NSC319726.
Insights
Copper ionophore NSC319726 causes male reproductive toxicity by disrupting spermatogenesis and androgen synthesis. However, retinoic acid may offer a potential therapy for related spermatogenesis impairment.
Area of Science:
- Reproductive toxicology
- Cancer therapy side effects
- Cellular mechanisms of toxicity
Background:
- Copper ionophore NSC319726 shows promise in cancer treatment.
- Potential adverse effects of NSC319726 on male fertility are unknown.
Purpose of the Study:
- To investigate the effects of NSC319726 on the male reproductive system.
- To elucidate the mechanisms underlying NSC319726-induced reproductive toxicity.
Main Methods:
- Male mice were exposed to NSC319726 for 5 weeks.
- Evaluated testis index, spermatogenesis, sperm parameters, hormone levels, and testicular histology.
- Investigated the role of copper ions, cuproptosis, and retinoic acid signaling.
Main Results:
- NSC319726 exposure reduced testis index, impaired spermatogenesis, and damaged testicular architecture.
- It disrupted sperm production, androgen synthesis, and blood-testis barrier integrity.
- Elevated testicular copper induced cuproptosis; copper chelation offered partial recovery.
- Decreased retinol dehydrogenase 10 (RDH10) inhibited retinoic acid production, impairing meiosis initiation.
Conclusions:
- NSC319726 exhibits significant male reproductive toxicity, potentially via copper-induced cuproptosis and impaired retinoic acid signaling.
- Copper chelation and retinoic acid administration show potential for mitigating NSC319726-induced reproductive damage.
- Retinoic acid may be a therapeutic strategy for male infertility in patients treated with NSC319726.
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