Skip to content
Research Article Open access CC BY 4.0

Histological and Biochemical Studies of Germ Cell Toxicity in Male Rats Exposed to Sodium Benzoate

Jewo, Peter Imoni, Oyeniran, David Anuoluwapo, Ojekale, Anthony Babajide, Oguntola, Jamiu Akanni

Journal of Advances in Medical and Pharmaceutical Sciences · pp. 51–69 · Published 7 Jul 2020

10.9734/jamps/2020/v22i530174

Abstract

Background: One of the consequences of increasing urbanization is that many people eat processed foods that contain various chemical substances applied as additives. Some of them may have the ability to suppress male fertility. Aims: To determine the effects of sodium benzoate (NaB) on the histology of the testis, and biochemical and semen parameters in rats. The potential of Vitamin E to protect the testis was also studied. Methodology: Six groups of 8 rats each were treated with these substances: Group A (Control) had olive oil. Groups B and C had 200 mg/kg of NaB with Vitamin E added to group C. Groups D and E had 400 mg/kg of NaB with Vitamin E added to group E. Groups F and G were given NaB only at 200 mgkg and 400 mg/kg respectively but were left for an extra 4 weeks after the last treatment dose. All groups were treated daily for 8weeks. Outcome measures were testosterone assays and cell counts and morphometry in the testis. We also examined biochemical parameters such as catalase, glutathione and malondialdehyde levels. Results: This study showed that NaB impaired reproduction. Total sperm count in some treated groups were reduced to half (50%) of the count in control animals. There was reduction in anti-oxidant levels and elevation in markers of lipid peroxidation suggesting oxidative stress. There was histologic evidence of impaired spermatogenesis and considerable testicular damage with micrographs showing widespread germ cell loss and sloughing of germinal epithelium in many places. Vitamin E offered significant protection from testicular damage in the groups given the vitamin. Conclusion: We conclude that NaB has the potential to impair fertility in rats and more studies are needed to determine its safety level in the male reproductive system.

Sodium benzoate testis fertility histomorphometry

Cited by 8

Safety assessment of three common food additives: the reproductive, oxidative and enzymatic perspective

Okunola Adenrele Alabi, Onaolapo Mike Afelumo, Flora Omoshalewa Oladipupo · Discover Toxicology · 2024

Influence of sodium benzoate in lipopolysaccharide-induced testicular toxicity in Wistar rats

Olalekan Bukunmi Ogunro, Folake Olubukola Asejeje, Zainab Olamide Hamzat · Kuwait Journal of Science · 2024

Detection of benzene in commercial mango juices containing preservatives: An overlooked food safety concern

Afzal Sheikh, Mustafizur Rahman Naim, Mashiur Rahman · Next Research · 2025

Sodium benzoate induces reproductive toxicity via hormonal disruption, ovarian damage and altering kisspeptin/RFRP-3 expression

Safdar Khan, Mohammad Attaullah, Muhammad Zubair · Regulatory Toxicology and Pharmacology · 2026

Sodium benzoate exposure from juvenile to peripubertal period disrupts HPG-axis in both male and female rats

Safdar Khan, Mohammad Attaullah, Sarwat Jahan · Toxicological Research · 2025

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

8

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.