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Modeling Intracerebral Hemorrhage in Mice: Injection of Autologous Blood or Bacterial Collagenase
Published on: September 22, 2012
Cerebral venous congestion exacerbates cerebral microhemorrhages in mice
Adam Nyul-Toth1,2,3, Gabor A Fulop4,5,6, Stefano Tarantini4,7
1Vascular Cognitive Impairment and Neurodegeneration Program, Oklahoma Center for Geroscience and Healthy Brain Aging, Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, 975 NE 10thStreet, BRC 1313, Oklahoma City, OK, 73104, USA. adam-nyultoth@ouhsc.edu.
Abstract:
Cerebral microhemorrhages (CMHs; microbleeds), which are small focal intracerebral hemorrhages, importantly contribute to the pathogenesis of cognitive decline and dementia in older adults. Although recently it has been increasingly recognized that the venous side of the cerebral circulation likely plays a fundamental role in the pathogenesis of a wide spectrum of cerebrovascular and brain disorders, its role in the pathogenesis of CMHs has never been studied. The present study was designed to experimentally test the hypothesis that venous congestion can exacerbate the genesis of CMHs. Increased cerebral venous pressure was induced by internal and external jugular vein ligation (JVL) in C57BL/6 mice in which systemic hypertension was induced by treatment with angiotensin II plus L-NAME. Histological analysis (diaminobenzidine staining) showed that mice with JVL developed multiple CMHs. CMHs in mice with JVL were often localized adjacent to veins and venules and their morphology was consistent with venous origin of the bleeds. In brains of mice with JVL, a higher total count of CMHs was observed compared to control mice. CMHs were distributed widely in the brain of mice with JVL, including the cortical gray matter, brain stem, the basal ganglia, subcortical white matter, cerebellum, and the hippocampi. In mice with JVL, there were more CMHs predominantly in cerebral cortex, brain stem, and cerebellum than in control mice. CMH burden, defined as total CMH volume, also significantly increased in mice with JVL. Thus, cerebral venous congestion can exacerbate CMHs. These observations have relevance to the pathogenesis of cognitive impairment associated with right heart failure as well as elevated cerebral venous pressure due to jugular venous reflux in older adults.
Insights
Cerebral venous congestion exacerbates cerebral microhemorrhages (CMHs), small brain bleeds linked to cognitive decline. This study demonstrates that increased venous pressure in mice leads to more CMHs, highlighting a potential new pathway for brain disorders.
Area of Science:
- Neuroscience
- Vascular Biology
- Pathology
Background:
- Cerebral microhemorrhages (CMHs) are associated with cognitive decline and dementia.
- The role of cerebral venous circulation in CMH pathogenesis is largely unstudied.
Purpose of the Study:
- To investigate if increased cerebral venous pressure exacerbates CMH formation.
- To test the hypothesis that venous congestion contributes to CMH genesis.
Main Methods:
- Systemic hypertension was induced in mice using angiotensin II and L-NAME.
- Cerebral venous pressure was increased via internal and external jugular vein ligation (JVL).
- Histological analysis (diaminobenzidine staining) was used to identify and quantify CMHs.
Main Results:
- Mice with JVL developed significantly more CMHs than control mice.
- CMHs were frequently observed adjacent to veins and venules, suggesting a venous origin.
- Increased CMH burden and widespread distribution were noted in the JVL group, particularly in the cortex, brain stem, and cerebellum.
Conclusions:
- Cerebral venous congestion can exacerbate the development of cerebral microhemorrhages.
- Findings suggest a link between venous pressure, CMHs, and cognitive impairment, relevant to conditions like heart failure and jugular venous reflux.
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