Are Alzheimer’s disease, hypertension, and cerebrocapillary damage related?
Alzheimer’s disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the interaction between vascular factors and the development of dementia. The association of decreased cerebral blood flow (CBF) or hypertension wit...
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| Published in: | Neurobiology of aging Vol. 21; no. 2; pp. 235 - 243 |
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| Main Authors: | , , , |
| Format: | Journal Article |
| Language: | English |
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London
Elsevier Inc
01.03.2000
Elsevier Science |
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| ISSN: | 0197-4580, 1558-1497 |
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| Abstract | Alzheimer’s disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the interaction between vascular factors and the development of dementia. The association of decreased cerebral blood flow (CBF) or hypertension with AD has been a target of growing interest. Parallel with physiological changes, the cerebral capillaries in AD are also prone to degenerative processes. The microvascular abnormalities that are the result of such degeneration may be the morphological correlates of the vascular pathophysiology pointing to a compromised nutrient transport through the capillaries. Animal models have been developed to study the consequences of hypertension and reduced CBF. Spontaneously hypertensive rats are widely used in hypertension research whereas ligation of the carotid arteries has become a method to produce cerebral hypoperfusion. Based on these models, we propose a relationship between hypertension, cerebral hypoperfusion, cerebral capillary malformation and cognitive decline as it occurs in AD. We suggest that the above conditions are functionally related and can contribute to the progression of AD. |
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| AbstractList | Alzheimer's disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the interaction between vascular factors and the development of dementia. The association of decreased cerebral blood flow (CBF) or hypertension with AD has been a target of growing interest. Parallel with physiological changes, the cerebral capillaries in AD are also prone to degenerative processes. The microvascular abnormalities that are the result of such degeneration may be the morphological correlates of the vascular pathophysiology pointing to a compromised nutrient transport through the capillaries. Animal models have been developed to study the consequences of hypertension and reduced CBF. Spontaneously hypertensive rats are widely used in hypertension research whereas ligation of the carotid arteries has become a method to produce cerebral hypoperfusion. Based on these models, we propose a relationship between hypertension, cerebral hypoperfusion, cerebral capillary malformation and cognitive decline as it occurs in AD. We suggest that the above conditions are functionally related and can contribute to the progression of AD. Alzheimer's disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the interaction between vascular factors and the development of dementia. The association of decreased cerebral blood flow (CBF) or hypertension with AD has been a target of growing interest. Parallel with physiological changes, the cerebral capillaries in AD are also prone to degenerative processes. The microvascular abnormalities that are the result of such degeneration may be the morphological correlates of the vascular pathophysiology pointing to a compromised nutrient transport through the capillaries. Animal models have been developed to study the consequences of hypertension and reduced CBF. Spontaneously hypertensive rats are widely used in hypertension research whereas ligation of the carotid arteries has become a method to produce cerebral hypoperfusion. Based on these models, we propose a relationship between hypertension, cerebral hypoperfusion, cerebral capillary malformation and cognitive decline as it occurs in AD. We suggest that the above conditions are functionally related and can contribute to the progression of AD.Alzheimer's disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the interaction between vascular factors and the development of dementia. The association of decreased cerebral blood flow (CBF) or hypertension with AD has been a target of growing interest. Parallel with physiological changes, the cerebral capillaries in AD are also prone to degenerative processes. The microvascular abnormalities that are the result of such degeneration may be the morphological correlates of the vascular pathophysiology pointing to a compromised nutrient transport through the capillaries. Animal models have been developed to study the consequences of hypertension and reduced CBF. Spontaneously hypertensive rats are widely used in hypertension research whereas ligation of the carotid arteries has become a method to produce cerebral hypoperfusion. Based on these models, we propose a relationship between hypertension, cerebral hypoperfusion, cerebral capillary malformation and cognitive decline as it occurs in AD. We suggest that the above conditions are functionally related and can contribute to the progression of AD. |
| Author | De Vos, Rob A.I. Luiten, Paul G.M. Farkas, Eszter Steur, Ernst N.H.Jansen |
| Author_xml | – sequence: 1 givenname: Eszter surname: Farkas fullname: Farkas, Eszter email: E.FARKAS@biol.rug.nl organization: Department of Animal Physiology, Graduate School of Behavioral and Cognitive Neurosciences, University of Groningen, Groningen, The Netherlands – sequence: 2 givenname: Rob A.I. surname: De Vos fullname: De Vos, Rob A.I. organization: The East-Netherlands Laboratorium of Pathology, Medisch Spectrum Twente, Enschede, The Netherlands – sequence: 3 givenname: Ernst N.H.Jansen surname: Steur fullname: Steur, Ernst N.H.Jansen organization: Department of Neurology, Medisch Spectrum Twente, Enschede, The Netherlands – sequence: 4 givenname: Paul G.M. surname: Luiten fullname: Luiten, Paul G.M. organization: Department of Animal Physiology, Graduate School of Behavioral and Cognitive Neurosciences, University of Groningen, Groningen, The Netherlands |
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| Keywords | Cerebral hypoperfusion Alzheimer’s disease Carotid occlusion Chronic hypertension Cerebral capillaries Human Hypertension Vascular disease Regional blood flow Microcirculation Nervous system diseases Alzheimer disease Central nervous system disease Cardiovascular disease Degenerative disease Hemodynamics Cerebral disorder |
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| Snippet | Alzheimer’s disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the... Alzheimer's disease (AD) patients are often subject to vascular dysfunction besides their specific CNS pathology, which warrants further examination of the... |
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| SubjectTerms | Aged Alzheimer Disease - etiology Alzheimer Disease - pathology Alzheimer Disease - physiopathology Alzheimer’s disease Animals Biological and medical sciences Capillaries - pathology Carotid occlusion Cerebral capillaries Cerebral hypoperfusion Cerebrovascular Circulation - physiology Chronic hypertension Degenerative and inherited degenerative diseases of the nervous system. Leukodystrophies. Prion diseases Humans Hypertension - etiology Hypertension - pathology Hypertension - physiopathology Medical sciences Middle Aged Neurology Rats |
| Title | Are Alzheimer’s disease, hypertension, and cerebrocapillary damage related? |
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