An in vitro model of aneurysmal subarachnoid hemorrhage: oxidation of unconjugated bilirubin by cytochrome oxidase
Модель аневризматического субарахноидального кровоизлияния in vitro: окисление неконъюгированного билирубина цитохромоксидазой
2007-05-01
SCID: 54.1/k3a23x8k
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aneurysmal subarachnoid hemorrhagebilirubin oxidation productscerebral vasospasmcytochrome oxidasein vitro hemorrhage model
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Abstract (AI)
Aneurysmal subarachnoid hemorrhage is a stroke subtype with high rates of mortality and morbidity. Cerebral vasospasm can lead to ischemic injury or death and is a common complication of aneurysmal subarachnoid hemorrhage, usually occurring 3-9 days afterwards. The cause of vasospasm is not known. Recently, there has been strong evidence that vasoactive oxidation products of bilirubin may be involved. Currently, the factors that lead to bilirubin oxidation are poorly characterized. In this study, we have designed an in vitro model of hemorrhagic stroke in order to investigate conditions that promote the oxidation of bilirubin to form vasoactive compounds. Using our model, we created a basic hematoma system of blood, CSF, and hemeoxygenase-1. We manipulated this system in various ways, incubated it and determined the concentration of vasoactive bilirubin oxidation products that resulted. Conditions where cytochrome oxidase was stimulated caused an increase bilirubin oxidation products (292.6 +/- 39.9 micromol/L respectively, vs. 79.3 +/- 1.3 micromol/L for the basic reaction, p < 0.05), which was attenuated by cyanide. Our data suggest that bilirubin oxidation products may be produced by oxidation(s) requiring an oxygen-utilizing enzyme like cytochrome oxidase.
Key Findings
1
Cyanide attenuated the increase in bilirubin oxidation products caused by cytochrome oxidase stimulation.
2
Stimulating cytochrome oxidase increased vasoactive bilirubin oxidation products to 292.6 ± 39.9 micromol/L versus 79.3 ± 1.3 micromol/L in the basic reaction (p < 0.05).
3
The factors driving bilirubin oxidation in aneurysmal subarachnoid hemorrhage remain incompletely characterized, and this model enables their investigation.
4
The findings suggest bilirubin oxidation products may arise through oxygen-dependent oxidation requiring an enzyme such as cytochrome oxidase, potentially contributing to vasospasm after aneurysmal subarachnoid hemorrhage.
5
The study developed an in vitro hemorrhagic-stroke model combining blood, cerebrospinal fluid, and hemeoxygenase-1 to investigate bilirubin oxidation.
Research Object
An in vitro aneurysmal subarachnoid hemorrhage hematoma system consisting of blood, cerebrospinal fluid, and hemeoxygenase-1
Research Subject
Conditions promoting the cytochrome oxidase-dependent oxidation of unconjugated bilirubin into vasoactive bilirubin oxidation products
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2007-05-01
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