Pericyte contraction induced by oxidative-nitrative stress impairs capillary reflow despite successful opening of an occluded cerebral artery.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 19718040.
- Also identified by DOI 10.1038/nm.2022.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Here we show that ischemia induces sustained contraction of pericytes on microvessels in the intact mouse brain. Pericytes remain contracted despite successful reopening of the middle cerebral artery after 2 h of ischemia. Pericyte contraction causes capillary constriction and obstructs erythrocyte flow. Suppression of oxidative-nitrative stress relieves pericyte contraction, reduces erythrocyte entrapment and restores microvascular patency; hence, tissue survival improves. In contrast, peroxynitrite application causes pericyte contraction. We also show that the microvessel wall is the major source of oxygen and nitrogen radicals causing ischemia and reperfusion-induced microvascular dysfunction. These findings point to a major but previously not recognized pathophysiological mechanism; ischemia and reperfusion-induced injury to pericytes may impair microcirculatory reflow and negatively affect survival by limiting substrate and drug delivery to tissue already under metabolic stress, despite recanalization of an occluded artery. Agents that can restore pericyte dysfunction and microvascular patency may increase the success of thrombolytic and neuroprotective treatments.
Medical subject headings
- Animals
- Brain Ischemia
- Brain Ischemia/pathology
- Brain Ischemia/physiopathology
- Capillaries
- Capillaries/physiopathology
- Cell Size
- Enzyme Inhibitors
- Enzyme Inhibitors/pharmacology
- Mice
- Mice, Knockout
- Microscopy, Fluorescence
- Microscopy, Interference
- Middle Cerebral Artery
- Middle Cerebral Artery/pathology
- Middle Cerebral Artery/physiopathology
- Nitric Oxide Synthase Type I
- Nitric Oxide Synthase Type I/deficiency
- Nitric Oxide Synthase Type I/genetics
- Nitric Oxide Synthase Type III
- Nitric Oxide Synthase Type III/antagonists & inhibitors
- Ornithine
- Ornithine/analogs & derivatives
- Ornithine/pharmacology
- Oxidative Stress
- Pericytes
- Pericytes/pathology
- Pericytes/physiology
- Reactive Nitrogen Species
- Reactive Nitrogen Species/metabolism
- Reactive Oxygen Species
- Reactive Oxygen Species/metabolism
- Reperfusion Injury
- Reperfusion Injury/pathology
- Reperfusion Injury/physiopathology