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High Salt Diet Impairs Male Fertility in Mice via Modulating the Skeletal Homeostasis
Shrabani Saugandhika1, Leena Sapra2, Kiran Kumari2
1Department of Biotechnology, All India Institute of Medical Sciences, New Delhi, 110029, India. shravani.satya@gmail.com.
Abstract:
Male reproductive functions and bone health are both adversely affected by the high salt diet (HSD). Nevertheless, the underlying mechanism via which it alters the sperm function remains largely unknown. This study examines the mechanism by which HSD affects male fertility by impairing bone health. For investigating the same, male BALB/c mice were categorized into three groups-HSD group (fed with 4% NaCl), a low salt diet (LSD) group (fed with 0.4% NaCl), and a control group (fed with a normal diet) for 6 weeks and thereafter assessed for various sperm parameters, bone turnover markers, and testosterone levels. Furthermore, the quantitative assessment of testosterone biosynthesis enzymes was performed. Interestingly, we observed that mice fed with HSD showed significant alterations in sperm parameters-motility, count, and vitality, including morphological changes compared to both the LSD and the control groups. In addition, serum analysis showed an increase in bone resorption markers and a decrease in bone formation markers in the HSD group (p < 0.05). Further, HSD caused a decrease in the testosterone level and mRNA expression of testosterone biosynthesis enzymes. Importantly, a significant decrease in bone formation marker osteocalcin (OC) was observed to coincide with the dip in testosterone level in the HSD group. Given that OC plays a key role in maintaining male fertility, the above findings suggest that a decrease in OC levels may affect the testosterone biosynthesis pathway, reducing testosterone hormone secretion and thereby resulting in decreased spermatogenesis. The study for the first time delineates and bridges the mechanism of HSD-mediated bone loss (results in a deficiency of OC) with decreased testosterone biosynthesis and thus impaired male fertility.
Insights
High salt diets impair male fertility by negatively impacting bone health. This study reveals that reduced bone formation marker osteocalcin (OC) due to high salt intake lowers testosterone, affecting sperm production.
Area of Science:
- Endocrinology
- Reproductive Biology
- Bone Metabolism
Background:
- High salt diet (HSD) negatively impacts male reproductive functions and bone health.
- The precise mechanism linking HSD-induced male infertility to bone health alterations is not well understood.
Purpose of the Study:
- To investigate the mechanism by which HSD affects male fertility through the impairment of bone health.
- To explore the relationship between HSD, bone turnover markers, testosterone levels, and sperm parameters.
Main Methods:
- Male BALB/c mice were divided into three groups: HSD (4% NaCl), low salt diet (LSD, 0.4% NaCl), and control (normal diet) for 6 weeks.
- Assessment of sperm parameters (motility, count, vitality, morphology), bone turnover markers, and serum testosterone levels.
- Quantitative analysis of testosterone biosynthesis enzymes and osteocalcin (OC) levels.
Main Results:
- HSD group exhibited significantly altered sperm parameters compared to LSD and control groups.
- Increased bone resorption markers and decreased bone formation markers were observed in the HSD group.
- HSD led to reduced testosterone levels, decreased expression of testosterone biosynthesis enzymes, and a significant drop in osteocalcin (OC).
Conclusions:
- HSD impairs male fertility by negatively affecting sperm parameters and bone health.
- Reduced osteocalcin (OC) levels, a consequence of HSD-induced bone loss, are linked to decreased testosterone biosynthesis and impaired spermatogenesis.
- This study elucidates the mechanism connecting HSD-induced bone loss to reduced testosterone and male infertility.
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