Nifuroxazide repurposing for protection from diabetes‐induced retinal injury in rats: Implication of oxidative stress and JAK/STAT3 axis

Author:

Elsherbiny Nehal M.12ORCID,Altemani Reem3,Althagfi Waad3,Albalawi Maha3,Mohammedsaleh Zuhair M.4ORCID,El‐Sherbiny Mohamed5,Abo El‐Magd Nada F.2ORCID

Affiliation:

1. Department of Pharmaceutical Chemistry, Faculty of Pharmacy University of Tabuk Tabuk Saudi Arabia

2. Biochemistry Department, Faculty of Pharmacy Mansoura University Mansoura Egypt

3. PharmD Program, Faculty of Pharmacy University of Tabuk Tabuk Saudi Arabia

4. Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences University of Tabuk Tabuk Saudi Arabia

5. Department of Basic Medical Sciences, College of Medicine AlMaarefa University Riyadh Saudi Arabia

Abstract

AbstractThe prevalence of diabetes mellitus (DM) is alarmingly increasing worldwide. Diabetic retinopathy (DR) is a prevailing DM microvascular complication, representing the major cause of blindness in working‐age population. Inflammation is a crucial player in DR pathogenesis. JAK/STAT3 axis is a pleotropic cascade that modulates diverse inflammatory events. Nifuroxazide (Nifu) is a commonly used oral antibiotic with reported JAK/STAT3 inhibition activity. The present study investigated the potential protective effect of Nifu against diabetes‐induced retinal injury. Effect of Nifu on oxidative stress, JAK/STAT3 axis and downstream inflammatory mediators has been also studied. Diabetes was induced in Sprague Dawley rats by single intraperitoneal injection of streptozotocin (50 mg/kg). Animals were assigned into four groups: normal, Nifu control, DM, and DM + Nifu. Nifu was orally administrated at 25 mg/kg/day for 8 weeks. The effects of Nifu on oxidative stress, JAK/STAT3 axis proteins, inflammatory factors, tight junction proteins, histological, and ultrastructural alterations were evaluated using spectrophotometry, gene and protein analyses, and histological studies. Nifu administration to diabetic rats attenuated histopathological and signs of retinal injury. Additionally, Nifu attenuated retinal oxidative stress, inhibited JAK and STAT3 phosphorylation, augmented the expression of STAT3 signaling inhibitor SOCS3, dampened the expression of transcription factor of inflammation NF‐κB, and inflammatory cytokine TNF‐α. Collectively, the current study indicated that Nifu alleviated DR progression in diabetic rats, suggesting beneficial retino‐protective effect. This can be attributed to blocking JAK/STAT3 axis in retinal tissues with subsequent amelioration of oxidative stress and inflammation.

Publisher

Wiley

Subject

Clinical Biochemistry,Molecular Medicine,General Medicine,Biochemistry

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