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Improved Rodent Model of Myocardial Ischemia and Reperfusion Injury
Published on: March 7, 2022
Taxol, a microtubule stabilizer, prevents ischemic ventricular arrhythmias in rats
Junjie Xiao1, Huaming Cao, Dandan Liang
1Key Laboratory of Arrhythmias, Ministry of Education, East Hospital, Tongji University School of Medicine, Shanghai, China.
Abstract:
Microtubule integrity is important in cardio-protection, and microtubule disruption has been implicated in the response to ischemia in cardiac myocytes. However, the effects of Taxol, a common microtubule stabilizer, are still unknown in ischemic ventricular arrhythmias. The arrhythmia model was established in isolated rat hearts by regional ischemia, and myocardial infarction model by ischemia/reperfusion. Microtubule structure was immunohistochemically measured. The potential mechanisms were studied by measuring reactive oxygen species (ROS), activities of oxidative enzymes, intracellular calcium concentration ([Ca(2+) ](i) ) and Ca(2+) transients by using fluorometric determination, spectrophotometric assays and Fura-2-AM and Fluo-3-AM, respectively. The expression and activity of sarcoplasmic reticulum Ca(2+)-ATPase (SERCA2a) was also examined using real-time polymerase chain reaction, Western blot and pyruvate/Nicotinamide adenine dinucleotide-coupled reaction. Our data showed that Taxol (0.1, 0.3 and 1 μM) effectively reduced the number of ventricular premature beats and the incidence and duration of ventricular tachycardia. The infarct size was also significantly reduced by Taxol (1 μM). At the same time, Taxol preserved the microtubule structure, increased the activity of mitochondrial electron transport chain complexes I and III, reduced ROS levels, decreased the rise in [Ca(2+)](i) and preserved the amplitude and decay times of Ca(2+) transients during ischemia. In addition, SERCA2a activity was preserved by Taxol during ischemia. In summary, Taxol prevents ischemic ventricular arrhythmias likely through ameliorating abnormal calcium homeostasis and decreasing the level of ROS. This study presents evidence that Taxol may be a potential novel therapy for ischemic ventricular arrhythmias.
Insights
Taxol, a microtubule stabilizer, significantly reduces ischemic ventricular arrhythmias and infarct size in rat hearts. It achieves this by preserving microtubule structure, improving calcium handling, and lowering reactive oxygen species (ROS).
Area of Science:
- Cardiovascular Research
- Cell Biology
- Pharmacology
Background:
- Microtubule integrity is crucial for cardio-protection.
- Microtubule disruption is linked to cardiac ischemia.
- The role of microtubule stabilizers like Taxol in ischemic ventricular arrhythmias remains unclear.
Purpose of the Study:
- To investigate the effects of Taxol on experimentally induced ischemic ventricular arrhythmias in isolated rat hearts.
- To explore the underlying mechanisms, including calcium homeostasis and reactive oxygen species (ROS) production.
Main Methods:
- Established arrhythmia and myocardial infarction models in isolated rat hearts using regional ischemia and ischemia/reperfusion.
- Assessed microtubule structure via immunohistochemistry.
- Quantified ROS, oxidative enzyme activity, intracellular calcium ([Ca(2+)](i)), and Ca(2+) transients using fluorometric and spectrophotometric methods.
- Examined sarcoplasmic reticulum Ca(2+)-ATPase (SERCA2a) expression and activity using molecular and enzymatic assays.
Main Results:
- Taxol (0.1-1 μM) dose-dependently reduced ventricular premature beats, ventricular tachycardia incidence, and duration.
- Taxol (1 μM) significantly decreased infarct size.
- Taxol preserved microtubule structure, enhanced mitochondrial complex I and III activity, and reduced ROS levels.
- Taxol mitigated the rise in [Ca(2+)](i) and preserved Ca(2+) transient properties during ischemia.
- Taxol maintained SERCA2a activity during ischemic conditions.
Conclusions:
- Taxol demonstrates a protective effect against ischemic ventricular arrhythmias and myocardial infarction.
- The cardioprotective mechanisms involve ameliorating abnormal calcium homeostasis and reducing ROS generation.
- Taxol represents a potential novel therapeutic agent for managing ischemic ventricular arrhythmias.
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