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Mitochondria-Targeted Antioxidants Prevent Tachypacing-Induced Contractile Dysfunction in In Vitro Cardiomyocyte and
Alexia van Rinsum1, Liangyu Hu1, Xi Qi1
1Human and Animal Physiology, Wageningen University and Research, 6708 WD Wageningen, The Netherlands.
Abstract:
Atrial fibrillation (AF) is a growing cardiovascular epidemic lacking effective treatment. Reactive oxygen species are believed to contribute to AF pathophysiology, yet general antioxidants have limited effectiveness. Since mitochondria are abundant in the heart and a major ROS producer, mitochondrial oxidative stress (MitoOxS) could be a therapeutic target. To determine this, rat inducible immortalized atrial myocytes (iAMs) were tachypaced to mimic AF, followed by assessment of calcium transients, contractility, mitochondrial respiration and morphology, and ROS damage. Cells were pretreated with MitoTEMPO or Sul-238 to assess their protective effects. In Drosophila, heart wall contractions were analyzed to assess arrhythmogenesis after mitochondrial antioxidant pretreatment. Using the GAL4-UAS system, mitochondrial ROS levels and the effect of SOD1 or SOD2 knockdown or overexpression on arrhythmogenesis were evaluated. Tachypacing induced contractile dysfunction and arrhythmogenesis, mitochondrial impairment, and ROS damage in iAMs and increased mitochondrial ROS and arrhythmogenesis in Drosophila. Both MitoTEMPO and Sul-238 treatments prevented mitochondrial dysfunction and arrhythmogenesis in iAMs and rescued arrhythmia in Drosophila. Underscoring the potential to target MitoOxS specifically, SOD2 knockdown promoted arrhythmogenesis in iAMs and Drosophila, whereas SOD2 overexpression rescued tachypacing-induced arrhythmia. MitoOxS is thus a key driver of tachypacing-induced contractile dysfunction and arrhythmia. Mitochondria-targeted antioxidants, such as MitoTEMPO or Sul-238, represent promising therapeutic strategies for AF.
Insights
Mitochondrial oxidative stress drives atrial fibrillation (AF) pathophysiology. Targeted antioxidants like MitoTEMPO and Sul-238 show promise in preventing AF-related dysfunction and arrhythmias.
Area of Science:
- Cardiovascular Research
- Mitochondrial Biology
- Oxidative Stress
Background:
- Atrial fibrillation (AF) is a prevalent cardiovascular condition with limited effective treatments.
- Reactive oxygen species (ROS) contribute to AF, but general antioxidants are often ineffective.
- Mitochondria, abundant in cardiac cells and major ROS producers, represent a potential therapeutic target for AF.
Purpose of the Study:
- To investigate the role of mitochondrial oxidative stress (MitoOxS) in AF.
- To evaluate the therapeutic potential of mitochondria-targeted antioxidants against AF-induced dysfunction and arrhythmia.
Main Methods:
- Rat inducible immortalized atrial myocytes (iAMs) and *Drosophila* models were used to mimic AF conditions via tachypacing.
- Assessed cellular function, mitochondrial respiration, morphology, and ROS damage.
- Evaluated the effects of MitoTEMPO, Sul-238, and SOD1/SOD2 manipulation on arrhythmogenesis.
Main Results:
- Tachypacing induced contractile dysfunction, arrhythmogenesis, mitochondrial impairment, and ROS damage in iAMs and *Drosophila*.
- MitoTEMPO and Sul-238 treatments protected against mitochondrial dysfunction and rescued arrhythmias in both models.
- SOD2 knockdown exacerbated, while SOD2 overexpression rescued, tachypacing-induced arrhythmias, highlighting the specific role of mitochondrial SOD2.
Conclusions:
- Mitochondrial oxidative stress is a critical factor in tachypacing-induced cardiac dysfunction and arrhythmia.
- Mitochondria-targeted antioxidants (MitoTEMPO, Sul-238) are promising therapeutic strategies for managing AF.
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