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Open access Aug 2026

Investigation of the Antioxidant Signalling Mechanisms of Rosmarinus officinalis L. in an Aniline-induced Splenic Toxicity Rat Model

Background: Aniline is an industrial chemical whose reactive metabolites induce oxidative stress and structural damage in splenic tissue, making aniline-induced splenic toxicity in rats a well-established experimental model for evaluating protective interventions. Rosmarinus officinalis L. (rosemary) possesses potent antioxidant and anti-inflammatory phytochemicals that may mitigate chemically induced tissue injury. Aim: To investigate the antioxidant-mediated splenoprotective effects of Ethanolic Rosemary Extract (ERE) against aniline-induced splenic toxicity in male Wistar rats. Methods: Male Wistar rats (200-250 g) were randomly divided into five groups (n = 6) and treated for 30 days. Splenic toxicity was induced by oral administration of aniline hydrochloride (50 mg/kg/day). Protective treatment groups received ERE at doses of 100 or 200 mg/kg/day orally, while citric acid (100 mg/kg/day, p.o.) served as the reference standard. Physiological parameters, oxidative stress biomarkers, antioxidant enzyme activities (GSH and CAT), ATPase activity, serum biochemical indices, histopathological changes, and hemosiderin deposition were assessed. Statistical analysis was performed using one-way ANOVA, with p<0.05 considered statistically significant. Results: Aniline administration produced splenomegaly, excessive iron accumulation, elevated lipid peroxidation, impaired antioxidant defences, reduced ATPase activity, and pronounced histopathological alterations including fibrosis and disruption of normal splenic architecture. Treatment with ERE significantly ameliorated these toxic effects in a dose-dependent manner. Rosemary extract restored antioxidant enzyme levels, reduced lipid peroxidation and nitric oxide production, improved ATPase activity, decreased hemosiderin deposition, normalised haematological and biochemical parameters, and preserved splenic histoarchitecture. The higher dose (200 mg/kg) demonstrated the greatest protective efficacy. Conclusion: ERE effectively protects against aniline-induced splenic toxicity by attenuating oxidative stress, restoring antioxidant defences, reducing iron accumulation, and preserving tissue architecture, suggesting its potential as a natural splenoprotective agent. Major Findings: ERE significantly ameliorated oxidative stress, restored antioxidant enzyme activity, improved haematological indices, reduced splenic iron overload, and preserved splenic histoarchitecture, with the 200 mg/kg dose producing the greatest protective effect.

C. Patil, Durgesh Pagar, Kajal Pansare et al. · 0 citations
Review Jul 2026

From Fields to Bodies: The Human Cost of Pesticide and Fertilizer use

Fertilizers and pesticides have played a vital role in boosting agricultural output, but their extensive use has raised major concerns regarding human health. Exposure to these agrochemicals can occur through various routes, including direct contact in the workplace, consumption of contaminated food and water, and environmental pollution. This review examines the different types and chemical makeup of these substances, along with how they can harm the body through mechanisms such as hormonal disruption, oxidative damage, nervous system toxicity, and potential links to cancer. Documented health effects include both immediate poisoning and long-term conditions like cancer, fertility problems, and neurological illnesses. Studies from around the world, including clinical and occupational research, underline the rising health burden tied to these chemicals. Although global safety standards exist, enforcement is often lacking, particularly in developing regions. This article highlights the pressing need for safer farming practices like integrated pest management, the use of organic inputs, greater awareness, and improved policy measures to protect public health while maintaining food security.

Vitthal B. Kundgir, C. Patil, Kajal Pansare et al. · 0 citations

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