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April 8, 2026Journal of Toxicology0 citationsOpen Access

Protective Effects of Luffa cylindrica Leaf Infusion Against Cisplatin and CCl 4 ‐Induced Hepatorenal Toxicity in Rats: Biochemical, Histopathological, and Molecular Docking Analysis

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THTakoua Ben HlelAFAnouar FerianiNKNadia Khelifi

Key Points

  • The aim is to assess the protective effects of Luffa cylindrica leaf infusion against oxidative damage induced by cisplatin and carbon tetrachloride in rats.
  • Administered Luffa cylindrica leaf infusion to Wistar rats via gavage
  • Conducted phytochemical analysis for bioactive compounds
  • Measured serum biochemical markers for liver and kidney functions
  • Performed histopathological evaluations of organ tissues
  • Executed molecular docking studies to assess compound binding affinities.
  • LLI improved kidney and liver functions at 40 mg/kg dosage
  • Restored SOD and CAT activity while reducing MDA levels
  • Histopathological analysis showed reduced structural damage in liver and kidney
  • Molecular docking indicated strong binding of naringenin, PCA, and CA to SOD.

Abstract

This study demonstrated the antioxidant potential of Luffa cylindrica leaf infusion (LLI) in alleviating oxidative damage induced by cisplatin and carbon tetrachloride (CCl 4 ) in Wistar rats. Phytochemical analysis confirmed the presence of bioactive compounds, such as protocatechuic acid (PCA; 5.83 mg/g DW), naringenin (5.54 mg/g DW), chlorogenic acid (CA; 4.90 mg/g DW), and ascorbic acid (4.87 mg/g DW). In vivo results showed that LLI administration by gavage significantly improved kidney and liver functions, particularly at a dose of 40 mg/kg, as evidenced by serum biochemical markers for both organs. Furthermore, LLI pretreatment restored superoxide dismutase (SOD) and CAT activity while reducing MDA levels, indicating a protective effect against oxidative stress. Histopathological analysis revealed that LLI treatment reduced structural damage in liver and kidney tissues, confirming its protective capacity. Molecular docking studies revealed that naringenin, PCA, and CA exhibit strong binding affinities to SOD, potentially enhancing its activity synergistically. These findings suggest that LLI, rich in natural antioxidants, may serve as a promising therapeutic candidate for mitigating oxidative stress–induced organ damage, warranting further investigation in clinical settings.

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Cite This Study

Hlel et al. (2026) studied this question.

synapsesocial.com/papers/69d5f0d774eaea4b11a7a386https://doi.org/10.1155/jt/8845909
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