Arsenic trioxide impairs spermatogenesis via reducing gene expression levels in testosterone synthesis pathway

Tzeon-Jye Chiou1, Sin-Tak Chu, Woan-Fang Tzeng

  • 1Division of Transfusion Medicine, Department of Medicine, Taipei Veterans General Hospital, National Yang-Ming University School of Medicine, Taipei, Taiwan. tjchiou@vghtpe.gov.tw

Insights

Arsenic trioxide (As2O3) treatment in mice impaired sperm quality and disrupted spermatogenesis. This reproductive toxicity was linked to reduced gene expression of key enzymes in testosterone synthesis.

Area of Science:

  • Reproductive Toxicology
  • Endocrinology
  • Hematology

Background:

  • Arsenic trioxide (As2O3) is a recognized treatment for acute promyelocytic leukemia (APL).
  • Potential toxicity of As2O3 on male reproductive health requires thorough investigation.

Purpose of the Study:

  • To evaluate the effects of As2O3 on male reproductive parameters in a mouse model.
  • To investigate the impact of As2O3 on spermatogenesis, sperm quality, and hormone levels.

Main Methods:

  • Male mice were administered varying doses of As2O3 subcutaneously for 3 weeks.
  • Spermatogenesis was assessed via histological examination of seminiferous tubules.
  • Sperm motility and viability were analyzed using computer-assisted sperm analysis (CASA) and staining assays.
  • Hormone levels (LH, FSH, testosterone) and gene expression of testosterone synthesis enzymes were measured using ELISA and RT-PCR.

Main Results:

  • As2O3 treatment did not cause mortality or significant changes in body, liver, or testis weight.
  • Histological analysis revealed inhibited spermatogenesis, with decreased mature seminiferous tubules (stages VII and VIII).
  • Sperm motility and viability were significantly reduced.
  • Plasma testosterone levels decreased across all doses, and gene expression of P450scc, 3beta-HSD, and Cyp17 was significantly reduced.

Conclusions:

  • As2O3 treatment negatively impacts sperm quality and spermatogenesis in male mice.
  • The observed reproductive toxicity is associated with reduced expression of genes critical for testosterone synthesis.

Related Concept Videos

Spermatogenesis01:41

Spermatogenesis

Spermatogenesis is the process by which haploid sperm cells are produced in the male testes. It starts with stem cells located close to the outer rim of seminiferous tubules. These spermatogonial stem cells divide asymmetrically to give rise to additional stem cells (meaning that these structures “self-renew”), as well as sperm progenitors, called spermatocytes. Importantly, this method of asymmetric mitotic division maintains a population of spermatogonial stem cells in the male reproductive...
Spermatogenesis01:22

Spermatogenesis

Spermatogenesis is a complex process that involves the development of sperm cells from undifferentiated stem cells in the seminiferous tubules of the testes. The process is essential for the production of mature and functional sperm cells that are capable of fertilizing an egg.
The process of spermatogenesis can be divided into mitosis, meiosis, and spermiogenesis. During mitosis, the spermatogonia or stem cells divide to produce two identical daughter cells, type A and B spermatogonia. Type-A...
Infertility in Males01:23

Infertility in Males

Male infertility affects millions of couples worldwide, arising from various factors that impact different stages of the reproductive process. An endocrine imbalance resulting from conditions like hypogonadism, Klinefelter syndrome, or pituitary disorders can disrupt hormone levels and reduce sperm production. Testicular defects, such as tumors, cryptorchidism, atrophic testes, abnormal sperm morphology, and low sperm count or motility, may arise due to genetic factors, structural...
Testosterone: Functions and Regulation01:26

Testosterone: Functions and Regulation

The intricate hormonal interplay essential for male reproductive health begins with the release of gonadotropin-releasing hormone (GnRH) by the hypothalamus. This hormone prompts the pituitary gland to secrete follicle-stimulating hormone (FSH) and luteinizing hormone (LH). LH targets the Leydig cells in the testes, stimulating them to produce and release testosterone. In concert with testosterone, FSH acts on the Sertoli cells within the seminiferous tubules to facilitate the release of...
Teratogenicity01:07

Teratogenicity

The ability of a drug to produce structural deformations and functional abnormalities in the developing embryo or the fetus is called teratogenicity, and the drug producing this effect is known as a teratogen. Teratogenic effects include stillbirth, miscarriage, intrauterine growth restriction, and neurocognitive delay. A teratogen may affect the embryo at different stages of development, which is important in determining the type and extent of the damage. During blastocyst formation, the early...
Oogenesis02:07

Oogenesis

In human women, oogenesis produces one mature egg cell or ovum for every precursor cell that enters meiosis. This process differs in two unique ways from the equivalent procedure of spermatogenesis in males. First, meiotic divisions during oogenesis are asymmetric, meaning that a large oocyte (containing most of the cytoplasm) and minor polar body are produced as a result of meiosis I, and again following meiosis II. Since only oocytes will go on to form embryos if fertilized, this unequal...