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Published on: March 22, 2016
Gradual hypertension induction in middle-aged Cyp1a1-Ren2 transgenic rats produces significant impairments in spatial
Mari N Willeman1,2,3, Monica K Chawla1,3, Marc A Zempare1,3
1Evelyn F. McKnight Brain Institute, University of Arizona, Tucson, Arizona.
Insights
Hypertension significantly impacts brain function, impairing spatial memory and learning in aging rats. This study highlights the critical link between high blood pressure and cognitive decline, affecting cardiovascular and neurological health.
Area of Science:
- Neuroscience
- Cardiovascular Science
- Aging Research
Background:
- Hypertension is a prevalent health issue, particularly in aging populations.
- While its effects on renal and cardiovascular systems are known, its impact on cognitive brain regions is less understood.
Purpose of the Study:
- To investigate the effects of induced hypertension on cognitive function in an aging rat model.
- To utilize a xenobiotic-inducible transgenic rat model to mimic human-like hypertension onset and progression.
Main Methods:
- Male, 15-month-old Cyp1a1-Ren2 transgenic rats were fed indole-3-carbinol (I3C) chow for 6 weeks to induce hypertension.
- Systolic blood pressure, cardiac, aortic, renal hypertrophy, and collagen deposition were measured.
- Cognitive function was assessed using the hippocampus-dependent Morris swim task; motor and sensory functions were also evaluated.
Main Results:
- I3C-treated rats developed significant hypertension (up to 200 mmHg), unlike control rats (145 mmHg).
- Hypertension was linked to cardiac, aortic, and renal hypertrophy, with increased collagen in the left ventricle and kidney.
- Cognitive deficits, specifically reduced savings in spatial memory, were observed in hypertensive rats, while motor and sensory functions remained unaffected.
Conclusions:
- Induced hypertension profoundly affects not only the cardiovascular-renal axis but also brain systems vital for learning and memory.
- This rat model offers a valuable tool for studying the influence of aging on cardiovascular, renal, and neurological health.
Abstract:
Hypertension is a major health concern in the developed world, and its prevalence increases with advancing age. The impact of hypertension on the function of the renal and cardiovascular systems is well studied; however, its influence on the brain regions important for cognition has garnered less attention. We utilized the Cyp1a1-Ren2 xenobiotic-inducible transgenic rat model to mimic both the age of onset and rate of induction of hypertension observed in humans. Male, 15-month-old transgenic rats were fed 0.15% indole-3-carbinol (I3C) chow to slowly induce renin-dependent hypertension over a 6-week period. Systolic blood pressure significantly increased, eventually reaching 200 mmHg by the end of the study period. In contrast, transgenic rats fed a control diet without I3C did not show significant changes in blood pressure (145 mmHg at the end of study). Hypertension was associated with cardiac, aortic, and renal hypertrophy as well as increased collagen deposition in the left ventricle and kidney of the I3C-treated rats. Additionally, rats with hypertension showed reduced savings from prior spatial memory training when tested on the hippocampus-dependent Morris swim task. Motor and sensory functions were found to be unaffected by induction of hypertension. Taken together, these data indicate a profound effect of hypertension not only on the cardiovascular-renal axis but also on brain systems critically important for learning and memory. Future use of this model and approach may empower a more accurate investigation of the influence of aging on the systems responsible for cardiovascular, renal, and neurological health.
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