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open access eISSN 2093-3673

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Original Article

Anat Cell Biol 2024; 57(2): 256-270

Published online June 30, 2024

https://doi.org/10.5115/acb.23.247

Copyright © Korean Association of ANATOMISTS.

Sage (Salvia officinalis) alleviates trazadone induced rat cardiotoxicity mediated via modulation of autophagy and oxidative stress

Marwa Abdel-Samad Al-Gholam1 , Heba Moustafa Rasheed Hathout2 , Marwa Mohamed Safwat3 , Asmaa Saeed Essawy1

1Department of Human Anatomy and Embryology, Faculty of Medicine, Menoufia University, Menoufia, 2Department of Natural Resources, Faculty of African Postgraduate Studies, Cairo University, Giza, 3Department of Human Anatomy and Embryology, Faculty of Medicine, Ain Shams University, Cairo, Egypt

Correspondence to:Asmaa Saeed Essawy
Department of Human Anatomy and Embryology, Faculty of Medicine, Menoufia University, Menoufia 32951, Egypt
E-mail: doc_asmaa@hotmail.com

Received: September 19, 2023; Revised: December 11, 2023; Accepted: February 13, 2024

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract

The antidepressant drug trazodone (TRZ) is commonly used for treating depression, anxiety, and insomnia, however, it causes cardiotoxicity, which is one of its limitations. The objective of this work was to investigate the impact of sage (Salvia officinalis) in rats against cardiotoxicity induced by TRZ and to investigate the mechanisms involved in its cardio-protective properties through autophagy and oxidative stress. Fifty male albino rats were split randomly into five experimental groups: control group, sage oil group (100 mg/kg), TRZ group (20 mg/kg), protective group, and curative group. Cardiac function biomarkers (aspartate aminotransferase [AST], creatine kinase-MB [CK-MB], and cardiac troponin T [cTnI]) were assessed in serum. Oxidative stress and inflammatory biomarkers in cardiac tissue (total antioxidant capacity, malondialdehyde, and tumor necrosis factor-α) were evaluated. Heart tissues were subjected to histological, immunohistochemical, and ultrastructural evaluations. DNA damage also evaluated. Significant rise in the levels of AST, CK-MB, and cTnI were observed with enhanced autophagy along with marked histopathological changes in the form of interrupted muscle fibers with wide interstitial spaces with areas of hemorrhage and extravasated blood and interstitial mononuclear cellular infiltration in TRZ group. DNA damage was also significantly increased in TRZ group. However, administration of sage in both protective and curative groups show marked improvement of the cardiac alterations. In conclusion, sage ameliorated the alterations in the heart induced by trazadone through modulation of autophagy and oxidative stress.

Keywords: Heart, Trazodone, Salvia officinalis, Autophagy, Oxidative stress

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