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Evaluation of Bioenergetic Function in Cerebral Vascular Endothelial Cells
Published on: November 19, 2016
Sustained mitochondrial functioning in cerebral arteries after transient ischemic stress in the rat: a potential
Ibolya Rutkai1, Prasad V G Katakam2, Somhrita Dutta2
1Department of Pharmacology, Tulane University School of Medicine, New Orleans, Louisiana irutkai@tulane.edu.
Abstract:
The objective of the present study was to determine whether mitochondrial function in the cerebral vasculature is maintained after transient middle cerebral artery (MCA) occlusion (tMCAO) in rats. Sprague-Dawley rats were exposed to 90 min of tMCAO followed by 4 or 48 h of reperfusion. MCAs from ischemic (ipsilateral) and nonischemic (contralateral) sides were compared with control MCAs from sham-operated rats. We determined 1) vasoreactivity to diazoxide (DZ; a mitochondrial ATP-activated K(+) channel opener), ACh, bradykinin (BK), serotonin, and sodium nitroprusside; 2) levels of mitochondrial and nonmitochondrial proteins and mitochondrial DNA; and 3) vascular levels of tetramethylrhodamine ethyl ester (an indicator of mitochondrial membrane potential). All dilator responses, including those with DZ, were intact 4 h post-tMCAO. Dilator responses to ACh, BK, and sodium nitroprusside were reduced in ipsilateral MCAs at 48 h compared with contralateral MCAs, but DZ responses were comparable with control MCAs. Surprisingly, contralateral responses to ACh, BK, and serotonin were reduced compared with control MCAs at 48 h. Ipsilateral vasodilation to DZ at 48 h was eliminated by endothelial denudation and endothelial nitric oxide synthase (eNOS) inhibition but was only reduced in control MCAs. Mitochondrial proteins, phosphorylated eNOS, mitochondrial DNA, and mitochondrial membrane potential were higher in ipsilateral compared with contralateral MCAs. In conclusion, contrary to conventional wisdom, mitochondria remain functional for at least 48 h after severe ischemic stress in MCAs, and DZ-induced dilation is preserved due to maintained mitochondrial mass, probably in the endothelium, and eNOS signaling. Our findings support the concept that functioning vascular mitochondria are an unexpected target for novel stroke therapies.
Insights
Mitochondria in rat cerebral arteries remain functional for at least 48 hours after stroke, preserving vasodilation via diazoxide. This suggests vascular mitochondria are a promising target for stroke therapies.
Area of Science:
- Neuroscience
- Cardiovascular Biology
- Mitochondrial Biology
Background:
- Transient middle cerebral artery occlusion (tMCAO) models ischemic stroke.
- Vascular mitochondrial function is critical for cerebral blood flow regulation.
- The impact of ischemic stress on vascular mitochondria remains incompletely understood.
Purpose of the Study:
- To investigate mitochondrial function in cerebral arteries post-ischemic stroke.
- To determine if vasoreactivity is maintained after transient middle cerebral artery occlusion (tMCAO).
- To explore the role of vascular mitochondria in stroke recovery and potential therapeutic targets.
Main Methods:
- Rats underwent 90-minute tMCAO followed by 4 or 48 hours of reperfusion.
- Cerebral arteries (MCAs) were assessed for vasoreactivity to various agents, including diazoxide (DZ).
- Mitochondrial protein levels, mitochondrial DNA, and mitochondrial membrane potential were quantified.
Main Results:
- Diazoxide-induced vasodilation was preserved in ipsilateral MCAs at both 4 and 48 hours post-tMCAO.
- Responses to other vasodilators (ACh, BK, SNP) were reduced at 48 hours in ipsilateral MCAs.
- Mitochondrial markers (proteins, DNA, membrane potential) were elevated in ipsilateral MCAs compared to contralateral ones at 48 hours.
Conclusions:
- Vascular mitochondria maintain functional capacity for at least 48 hours after severe ischemic insult.
- Diazoxide-mediated vasodilation is preserved due to sustained mitochondrial mass and eNOS signaling.
- Functioning vascular mitochondria represent a potential therapeutic target for stroke treatment.
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