Dose-Dependent Histopathological Alterations in the Small and Large Intestinal Mucosa of Syrian Golden Hamsters (Mesocricetus auratus) Following Cyclophosphamide Administration

Authors

  • Rima A. Benomran Histology Department, Faculty of Medicine, University of Benghazi, Benghazi
  • Maysoon F. Elrashdy Histology Department, Faculty of Medicine, University of Benghazi, Benghazi
  • Ali H. Masoud Pathology Department, Faculty of Medicine, University of Benghazi, Benghazi
  • Tareq Elhadi Lehmidi Pathology Department, Faculty of Medicine, University of Benghazi, Benghazi
  • Asmaa Abdel Fattah Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi
  • Aya I. El-Sherif Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi
  • Heba I. Adam Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi
  • Safaa A. Mohamed Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi
  • Abeer Amer Histology Department, School of medical and Health sciences, Hesepredes University

DOI:

https://doi.org/10.51984/zvm3nh71

Keywords:

Cyclophosphamide, small intestine, large intestine, histopathology, golden hamster

Abstract

Background: Cyclophosphamide (CP) is a potent chemotherapeutic agent with well‑documented systemic toxicities. The gastrointestinal tract is particularly vulnerable, yet comparative effects on the small and large intestines remain underexplored. Aim: To evaluate dose‑dependent histopathological changes in the small and large intestines of female Syrian golden hamsters following CP administration. Methods: Twenty‑seven hamsters were divided into three groups: control (saline), therapeutic dose (100 mg/kg), and toxic dose (200 mg/kg). CP was administered intraperitoneally on days 1, 3, and 5. On day 7, intestinal tissues were harvested, fixed, and processed for histology. Sections were stained with Hematoxylin & Eosin (H&E) to assess epithelial and structural integrity, and Periodic Acid–Schiff (PAS) to evaluate goblet cell distribution and mucin content. Comparative analysis was performed between small intestinal villi and large intestinal crypts to determine site‑specific susceptibility. Results: At 100 mg/kg, the small intestine showed mild villous blunting and inflammatory infiltrates, whereas the large intestine remained largely intact. At 200 mg/kg, the small intestine exhibited severe villous fusion, epithelial denudation, and goblet cell depletion, while the large intestine demonstrated crypt distortion and marked mucin loss. Conclusion: CP induces dose‑dependent intestinal injury, with the small intestine displaying greater sensitivity than the large intestine. These findings highlight the importance of comparative gastrointestinal monitoring and the development of protective interventions during CP therapy.

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Author Biographies

  • Rima A. Benomran, Histology Department, Faculty of Medicine, University of Benghazi, Benghazi

    .

  • Maysoon F. Elrashdy, Histology Department, Faculty of Medicine, University of Benghazi, Benghazi

    .

  • Ali H. Masoud, Pathology Department, Faculty of Medicine, University of Benghazi, Benghazi

    .

  • Tareq Elhadi Lehmidi, Pathology Department, Faculty of Medicine, University of Benghazi, Benghazi

    .

  • Asmaa Abdel Fattah, Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi

    .

  • Aya I. El-Sherif, Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi

    .

  • Heba I. Adam, Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi

    .

  • Safaa A. Mohamed, Cytotechnology Department, Faculty of Biomedical Sciences, University of Benghazi

    .

  • Abeer Amer, Histology Department, School of medical and Health sciences, Hesepredes University

    .

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Published

2026-06-30

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How to Cite

Dose-Dependent Histopathological Alterations in the Small and Large Intestinal Mucosa of Syrian Golden Hamsters (Mesocricetus auratus) Following Cyclophosphamide Administration. (2026). Journal of Medical Sciences, 21(1), 29-34. https://doi.org/10.51984/zvm3nh71

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