Short-Term Pharmacological Induction of Arterial Stiffness and Hypertension with Angiotensin II Does Not Affect Learning and Memory and Cerebral Amyloid Load in Two Murine Models of Alzheimer's Disease.
Jhana O HendrickxElke CalusPeter Paul de DeynDebby Van DamGuido R Y De MeyerPublished in: International journal of molecular sciences (2022)
Given the unprecedented rise in the world's population, the prevalence of prominent age-related disorders, like cardiovascular disease and dementia, will further increase. Recent experimental and epidemiological evidence suggests a mechanistic overlap between cardiovascular disease and dementia with a specific focus on the linkage between arterial stiffness, a strong independent predictor of cardiovascular disease, and/or hypertension with Alzheimer's disease. In the present study, we investigated whether pharmacological induction of arterial stiffness and hypertension with angiotensin II (1 µg·kg -1 ·min -1 for 28 days via an osmotic minipump) impairs the progression of Alzheimer's disease in two mouse models (hAPP23 +/- and hAPPswe/PSEN1dE9 mice). Our results show increased arterial stiffness in vivo and hypertension in addition to cardiac hypertrophy after angiotensin II treatment. However, visuospatial learning and memory and pathological cerebral amyloid load in both Alzheimer's disease mouse models were not further impaired. It is likely that the 28-day treatment period with angiotensin II was too short to observe additional effects on cognition and cerebral pathology.
Keyphrases
- angiotensin ii
- blood pressure
- cardiovascular disease
- angiotensin converting enzyme
- vascular smooth muscle cells
- cognitive decline
- mild cognitive impairment
- mouse model
- type diabetes
- subarachnoid hemorrhage
- risk factors
- cognitive impairment
- metabolic syndrome
- working memory
- multiple sclerosis
- skeletal muscle
- mass spectrometry
- adipose tissue
- single molecule
- high resolution
- blood brain barrier
- brain injury
- arterial hypertension
- smoking cessation
- hiv infected
- combination therapy
- wild type
- atomic force microscopy