Nanopropolis mitigates cisplatin-induced submandibular gland injury by modulating oxidative stress and apoptosis

Cisplatin is a widely deployed chemotherapeutic agent whose clinical utility is constrained by dose-limiting toxicities, including injury to the submandibular salivary gland mediated primarily by oxidative stress-driven apoptosis and progressive fibrotic remodeling. This study investigated the protective potential of Nanopropolis against cisplatin-induced structural, molecular, and ultrastructural alterations in the rat submandibular gland. Thirty adult male albino rats were allocated into three groups (n = 10): control, cisplatin-treated (single intraperitoneal injection, 8 mg/kg), and cisplatin + Nanopropolis (10 mg/kg/day orally for 14 days). Glandular injury was evaluated by hematoxylin and eosin histology, Masson’s trichrome histochemistry, BAX immunohistochemistry, transmission electron microscopy, and quantitative real-time PCR for SOD1 mRNA. Cisplatin induced marked glandular pathology characterized by acinar degeneration, cytoplasmic vacuolation, ductal disruption, vascular congestion, and extensive collagen accumulation (29.66% of tissue area). These changes were accompanied by strong BAX upregulation and profound SOD1 mRNA suppression (0.223-fold vs. control), reflecting heightened apoptotic activity and oxidative stress. Nanopropolis treatment substantially reversed these findings, preserving glandular architecture, reducing collagen deposition to 5.72%, downregulating BAX expression, and restoring SOD1 expression to near-control levels (1.042-fold). TEM confirmed recovery of mitochondrial cristae integrity, secretory granule content, and ductal basal infoldings. Nanopropolis confers robust cytoprotection against cisplatin-induced submandibular gland toxicity by simultaneously attenuating oxidative stress, suppressing apoptotic signaling, and limiting fibrotic remodeling. These findings support Nanopropolis as a promising adjunctive strategy for preserving salivary gland integrity during cisplatin-based chemotherapy.

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Publication Details

Journal
Scientific Reports
Published
2026-09-12
DOI
https://doi.org/10.1038/s41598-026-71350-3
Primary Topic
Salivary Gland Disorders and Functions
Type
article
Field-Weighted Citation Impact
0.00

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article

Nanopropolis mitigates cisplatin-induced submandibular gland injury by modulating oxidative stress and apoptosis

S. A. Al‐Ghamdi, Helal G. Alanazi, FAHAD ALSHAHRANI, Mubarak Alaklobie et al.
Scientific Reports
Salivary Gland Disorders and Functions
article

Nanopropolis mitigates cisplatin-induced submandibular gland injury by modulating oxidative stress and apoptosis

S. A. Al‐Ghamdi, Helal G. Alanazi, FAHAD ALSHAHRANI, Mubarak Alaklobie, Abeer Ezat Wahba, Adel M. Alqarni, Faisal S. Alhedyan, Mohammed M. Alruwaili, Fatema F. Elturki, Ghada A. Gehani, Karima A. Ahmed
article en

Abstract

Cisplatin is a widely deployed chemotherapeutic agent whose clinical utility is constrained by dose-limiting toxicities, including injury to the submandibular salivary gland mediated primarily by oxidative stress-driven apoptosis and progressive fibrotic remodeling. This study investigated the protective potential of Nanopropolis against cisplatin-induced structural, molecular, and ultrastructural alterations in the rat submandibular gland. Thirty adult male albino rats were allocated into three groups (n = 10): control, cisplatin-treated (single intraperitoneal injection, 8 mg/kg), and cisplatin + Nanopropolis (10 mg/kg/day orally for 14 days). Glandular injury was evaluated by hematoxylin and eosin histology, Masson’s trichrome histochemistry, BAX immunohistochemistry, transmission electron microscopy, and quantitative real-time PCR for SOD1 mRNA. Cisplatin induced marked glandular pathology characterized by acinar degeneration, cytoplasmic vacuolation, ductal disruption, vascular congestion, and extensive collagen accumulation (29.66% of tissue area). These changes were accompanied by strong BAX upregulation and profound SOD1 mRNA suppression (0.223-fold vs. control), reflecting heightened apoptotic activity and oxidative stress. Nanopropolis treatment substantially reversed these findings, preserving glandular architecture, reducing collagen deposition to 5.72%, downregulating BAX expression, and restoring SOD1 expression to near-control levels (1.042-fold). TEM confirmed recovery of mitochondrial cristae integrity, secretory granule content, and ductal basal infoldings. Nanopropolis confers robust cytoprotection against cisplatin-induced submandibular gland toxicity by simultaneously attenuating oxidative stress, suppressing apoptotic signaling, and limiting fibrotic remodeling. These findings support Nanopropolis as a promising adjunctive strategy for preserving salivary gland integrity during cisplatin-based chemotherapy.

Scientific Reports
Northern Border University (SA), Prince Sattam Bin Abdulaziz University (SA), Al-Azhar University (EG), University of Benghazi (LY), Al-Azhar University (ID), University of Bisha (SA), Al Baha University (SA), Sirte University (LY)
Prince Sattam bin Abdulaziz University
Good health and well-being
Openalex Percentile: Top 11%
Salivary Gland Disorders and Functions
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