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Published on: May 26, 2010
Pacing Postconditioning: Recent Insights of Mechanism of Action and Probable Future Clinical Application
1Department of Physiology, Faculty of Medicine, Health Sciences Center, Kuwait University, Kuwait City, Kuwait.
Insights
Pacing postconditioning (PPC) offers significant heart protection against ischemia-reperfusion injury. This method, involving brief electrical pacing, shows promise comparable to established preconditioning and postconditioning techniques.
Area of Science:
- Cardiology
- Cardiovascular Research
- Biomedical Engineering
Background:
- Ischemic heart disease is a leading global cause of death, resulting from heart muscle cell death due to oxygen deprivation.
- Reperfusion, while essential for salvage, can paradoxically cause further injury (ischemia-reperfusion injury).
- Existing protective methods like preconditioning and postconditioning have limitations in clinical application.
Purpose of the Study:
- To investigate the efficacy of pacing postconditioning (PPC) as a novel strategy against ischemia-reperfusion injury.
- To compare the protective effects of PPC with traditional preconditioning and postconditioning methods.
- To explore the potential of PPC for clinical translation in managing ischemic heart disease.
Main Methods:
- Development and application of intermittent dyssynchrony, pacing postconditioning (PPC) in cardiac models.
- Induction of cardiac ischemia-reperfusion (I/R) injury.
- Evaluation of cardiac protection afforded by PPC.
- Comparison of PPC efficacy against established preconditioning and postconditioning protocols.
Main Results:
- Pacing postconditioning (PPC) demonstrated significant protection against ischemia-reperfusion (I/R) injury.
- The protective effect of PPC was comparable to that achieved by preconditioning and postconditioning.
- PPC involves brief episodes of electrical cardiac pacing to mitigate I/R damage.
Conclusions:
- Pacing postconditioning (PPC) is a promising method for protecting the heart against ischemia-reperfusion injury.
- PPC offers a potential therapeutic strategy with clinical applicability, similar to other conditioning techniques.
- Further research into PPC signaling cascades may enhance its translation to clinical practice for ischemic heart disease.
Abstract:
Ischemic heart disease, also known as coronary heart disease or coronary artery disease, accounts for >50% of cardiovascular events and is a leading cause worldwide of morbidity and mortality. Hypoperfusion of the heart is the major cause of injury in ischemic heart disease, as it results in the death of cardiomyoctes due to a lack of oxygen and energy. This injury ultimately leads to a dead area in the heart called infarcted area or myocardial infarction. The formation of myocardial infarction leads to a lengthy process of remodeling which causes many changes in the architecture and the electrophysiology of the heart. These changes may eventually lead to death due to arrhythmia or heart failure. Tremendous efforts have been made over the last decades to decrease the burden of ischemic reperfusion (I/R) injury. The first salvage to the ischemic heart is reperfusion; however, this procedure is associated with a subsequent reperfusion injury. In the 1980s, a method known as preconditioning was introduced and showed great potential in combating ischemic heart disease, but this technique is limited by the difficulty of its translation to the clinic as it requires the anticipation of an occurrence of ischemic heart disease. Not long after, a new method, postconditioning, was introduced. This method showed great success, and several studies were performed to investigate its signaling cascades and the possibility of its translation to the clinic. Thereafter, several trials were made, and many methods of postconditioning were developed. One of these is intermittent dyssynchrony, pacing postconditioning (PPC), of the heart, which involves brief episodes of electrical pacing. PPC afforded a pronounced protection to the heart against I/R injury, similar to that afforded by pre- and postconditioning.
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