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Updated: Jul 28, 2025

A Doxorubicin-Induced Murine Model of Dilated Cardiomyopathy In Vivo
Published on: May 16, 2020
AKR1B1 inhibition using NARI-29-an Epalrestat analogue-alleviates Doxorubicin-induced cardiotoxicity via modulating
N P Syamprasad1, Siddhi Jain1, Bishal Rajdev1
1Department of Pharmacology & Toxicology, National Institute of Pharmaceutical Education and Research Guwahati, Sila Village, Changsari, Assam, 781101, India.
Abstract:
The clinical use of doxorubicin (Dox) is narrowed due to its carbonyl reduction to doxorubicinol (Doxol) implicating resistance and cardiotoxicity. Hence, in the present study we have evaluated the cardioprotective effect of AKR1B1 (or aldose reductase, AR) inhibitor NARI-29 (epalrestat (EPS) analogue) and its effect in the Dox-modulated calcium/CaMKII/MuRF1 axis. Initially, the breast cancer patient survival associated with AKR1B1 expression was calculated using Kaplan Meier-plotter (KM-plotter). Further, breast cancer, cardiomyoblast (H9c2), and macrophage (RAW 264.7) cell lines were used to establish the in vitro combination effect of NARI-29 and Dox. To develop the cardiotoxicity model, mice were given Dox 2.5 mg/kg (i.p.), biweekly. The effect of AKR1B1 inhibition using NARI-29 on molecular and cardiac functional changes was measured using echocardiography, fluorescence-imaging, ELISA, immunoblotting, flowcytometry, High-Performance Liquid Chromatography with Fluorescence Detection (HPLC-FD) and cytokine-bead array methods. The bioinformatics data suggested that a high expression of AKR1B1 is associated with significantly low survival of breast cancer patients undergoing chemotherapy; hence, it could be a target for chemo-sensitization and chemo-prevention. Further, in vitro studies showed that AKR1B1 inhibition with NARI-29 has increased the accumulation and sensitized Dox to breast cancer cell lines. However, treatment with NARI-29 has alleviated the Dox-induced toxicity to cardiomyocytes and decreased the secretion of inflammatory cytokines from RAW 264.7 cells. In vivo studies revealed that the NARI-29 (25 and 50 mg/kg) has prevented the functional, histological, biochemical, and molecular alterations induced by Dox treatment. Moreover, we have shown that NARI-29 has prevented the carbonyl reduction of Dox to Doxol in the mouse heart, which reduced the calcium overload, prevented phosphorylation of CaMKII, and reduced the expression of MuRF1 to protect from cardiac injury and apoptosis. Hence in conclusion, AKR1B1 inhibitor NARI-29 could be used as an adjuvant therapeutic agent with Dox to prevent cardiotoxicity and synergize anti-breast cancer activity.
Insights
This study shows that NARI-29, an AKR1B1 inhibitor, can prevent doxorubicin-induced cardiotoxicity in mice. NARI-29 also enhances doxorubicin
Area of Science:
- Oncology
- Cardiology
- Pharmacology
Background:
- Doxorubicin (Dox) therapy is limited by cardiotoxicity and resistance, partly due to its reduction to doxorubicinol (Doxol).
- AKR1B1 (aldose reductase) plays a role in this reduction, making it a potential therapeutic target.
Purpose of the Study:
- To evaluate the cardioprotective effect of the AKR1B1 inhibitor NARI-29 (an epalrestat analogue).
- To investigate NARI-29's impact on the Dox-modulated calcium/CaMKII/MuRF1 pathway.
- To assess NARI-29's potential to enhance Dox efficacy against breast cancer.
Main Methods:
- Bioinformatic analysis of AKR1B1 expression in breast cancer patients.
- In vitro studies using breast cancer, cardiomyoblast (H9c2), and macrophage (RAW 264.7) cell lines.
- In vivo cardiotoxicity model in mice treated with Dox and NARI-29.
- Assessment of cardiac function, molecular changes, and inflammatory markers using echocardiography, ELISA, immunoblotting, HPLC-FD, and flow cytometry.
Main Results:
- High AKR1B1 expression correlated with lower survival in breast cancer patients.
- NARI-29 increased Dox accumulation and sensitization in cancer cells.
- NARI-29 protected cardiomyocytes from Dox-induced toxicity and reduced inflammatory cytokine secretion.
- In vivo, NARI-29 prevented Dox-induced cardiac damage by inhibiting Dox to Doxol conversion, reducing calcium overload, CaMKII phosphorylation, and MuRF1 expression.
Conclusions:
- NARI-29 demonstrates significant cardioprotective effects against Dox toxicity.
- NARI-29 acts as an adjuvant to Dox, potentially improving breast cancer treatment outcomes.
- AKR1B1 inhibition is a promising strategy for mitigating Dox-related cardiotoxicity and enhancing anti-cancer activity.
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