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Published on: June 3, 2018
Hemichannel-mediated volume regulation contributes to IPC-induced cardiomyocyte protection
Wenying Wang1, Dedong Zheng1, Huiya Li1
1Department of Cardiology, Fujian Medical University Union Hospital, Fujian Institute of Coronary Heart Disease, Fuzhou, Fujian 350001, P.R. China.
Insights
Ischemic preconditioning protects the heart by blocking connexin 43 (Cx43) hemichannels, which helps regulate cardiomyocyte volume and reduce cell death during simulated ischemia.
Area of Science:
- Cardiovascular Research
- Cell Biology
- Molecular Medicine
Background:
- Connexin 43 (Cx43) is implicated in ischemic preconditioning (IPC), but its hemichannel role in cardioprotection is unclear.
- Understanding Cx43 hemichannel involvement is crucial for developing novel cardioprotective strategies.
Purpose of the Study:
- To investigate the role of Cx43 hemichannels in cardiomyocyte volume regulation during simulated ischemic reperfusion (SIR) and systemic ischemic preconditioning (SIP).
- To elucidate the mechanisms underlying IPC-induced cardioprotection mediated by Cx43 hemichannels.
Main Methods:
- Isolated mouse cardiomyocytes were treated with Cx43 hemichannel blockers (octanol, 18a-GA) or Cx43-silenced lentivirus.
- Cells were subjected to simulated ischemic reperfusion (hypotonic solution) and systemic ischemic preconditioning.
- Cardiomyocyte morphology, volumetric changes, and mortality were assessed.
Main Results:
- Hypotonic solution induced significant cell edema, which was alleviated by hemichannel blockers and Cx43 silencing.
- Systemic ischemic preconditioning (SIP) and hemichannel blockade significantly reduced cardiomyocyte mortality compared to SIR.
- Cx43 hemichannel blockers and Cx43 silencing demonstrated cardioprotective effects by mitigating cell swelling and death.
Conclusions:
- Cx43 hemichannels play a critical role in regulating cardiomyocyte volume during ischemic events.
- Blocking Cx43 hemichannels mediates cardioprotection during ischemic preconditioning.
- Targeting Cx43 hemichannels represents a promising therapeutic approach for preventing cardiac injury.
Abstract:
Cx43 has been documented to be involved in ischemic preconditioning (IPC). However, the participation of Cx43-formed hemichannels in IPC and the potential underlying mechanisms remain unclear. The present study focused on cardiomyocytes' volume regulation during IPC to investigate the role of hemichannels in the IPC-induced cardioprotection. In the study, mice cardiomyocytes were respectively treated with a hemichannel blocker, octanol or 18a-Glycyrrhizic acid (18a-GA), and a Cx43-silenced lentivirus. They were subsequently cultured in hypotonic solution to simulate ischemic reperfusion (SIR) and systemic ischemic preconditioning (SIP). Cell morphology and volumetric (area) change were detected by inverted microscopy at 30 min following the addition of hypotonic solution. Cardiomyocyte mortality was assessed by trypan blue stain assay. The analyses revealed that regardless of the treatments, hypotonic solution aggravated cell edema: Compared with the initial condition (the moment before the solution addition, 0 min), the volumetric area increased significantly 30 min later (for hypotonic+DMSO, 5,050±1,511 vs. 3,464±723 µm2; for hypotonic+scramble lentiviral vector, 5,517±1,128 vs. 2,331±536 µm2; P<0.05, respectively). Either treatment alleviated the edematous condition when a comparison was made between 30 min after the hypotonic addition and 0 min (for hypotonic+octanol, 2,990±765 vs. 2,821±773 µm2; for hypotonic+18a-GA, 4,817±1,306 vs. 4,762±1,271 µm2; for hypotonic+Cx43-silenced, 3,627±688 vs. 3,419±814 µm2; P>0.05 for all). Notably, results indicated that the SIP group had lower mortality rates compared with its SIR counterpart; the hypotonic+octanol, hypotonic+18a-GA, and hypotonic+Cx43-silenced group showed markedly-declined mortality when compared with their respective control groups (respectively, 35.70±1.02, 30.76±2.20 vs. 53.58±2.14%; 30.89±2.37 vs. 54.12±2.55%; P<0.05 for all). The results suggest that ischemic preconditioning may provide cardioprotection by blocking the opening of the hemichannels and further mediating the volume regulation of cardiomyocytes.
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