Archive/Cardiovascular Protection with Sulfasalazine During Doxorubicin Challenge: Evidence from Oxidative and Histologic Endpoints
Cardiovascular Protection with Sulfasalazine During Doxorubicin Challenge: Evidence from Oxidative and Histologic Endpoints
Onural Ozhan, Enes Kaya, Mehmet Hakan Tasolar et al.
July 24, 2026
en

Abstract

Anthracycline cardiotoxicity involves early oxidative–inflammatory injury to the myocardium and vasculature. Repurposing anti-inflammatory agents may offer pragmatic cardioprotection. The purpose of this study is to evaluate whether sulfasalazine (SSZ) mitigates doxorubicin (DOX)-induced myocardial and aortic injury in rats. Twenty-eight male Wistar albino rats were randomized to: Control (vehicle, n = 8), DOX (20 mg/kg i.p., single dose; n = 10), and SSZ + DOX (SSZ 300 mg/kg i.p. once daily for 3 days, then DOX 20 mg/kg i.p.; n = 10). At 24 h post-DOX, ECG and invasive blood pressure (BP) were recorded. The heart and thoracic aorta were harvested for histopathology and oxidative stress assays (MDA, SOD, GSH, CAT; composite indices where applicable). Compared with SSZ + DOX, the DOX group exhibited higher BP and greater arrhythmic burden. In the aorta, DOX elevated MDA and reduced SOD, GSH, and CAT versus the control, whereas SSZ + DOX shifted these toward control values. In the myocardium, DOX decreased SOD and increased oxidative index; SSZ + DOX attenuated histological injury (edema, hemorrhage, cardiomyocyte degeneration) and restored aortic intima–media thickness toward control. Heart rate was lower in SSZ + DOX than other groups. Short-course SSZ pretreatment alleviated early DOX-induced oxidative stress and structural damage in myocardial and aortic tissues, with concurrent improvement in hemodynamic and ECG profiles. These data support further dose–timing optimization and longer-term functional studies to define SSZ’s translational potential as an adjunct cardioprotective strategy during anthracycline exposure.

IPC Classification

G06C07B60

Keywords

cardiovascularprotectionsulfasalazineduringdoxorubicinchallengeevidenceoxidativehistologicendpointsbiomoleculesanthracyclinecardiotoxicityinvolvesearlyinflammatoryinjurymyocardiumvasculaturerepurposinganti-inflammatoryagentsofferpragmatic
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