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Updated: Aug 8, 2026

Isolation and Cannulation of Cerebral Parenchymal Arterioles
Published on: May 23, 2016
CADASIL: hereditary arteriopathy leading to multiple brain infarcts and dementia
1Division of Geriatric Medicine, Karolinska Institutet, Huddinge Hospital, Sweden.
Insights
Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a genetic condition causing strokes and cognitive decline. Early diagnosis is possible through MRI and skin biopsy, but no specific therapy currently exists.
Area of Science:
- Neurology
- Genetics
- Vascular Biology
Background:
- Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a hereditary condition.
- It typically manifests with migraine with aura and recurrent strokes in middle age.
- Pathologically, it involves thickening and fibrosis of cerebral arteries, leading to impaired blood flow.
Purpose of the Study:
- To describe the clinical, pathological, and genetic features of CADASIL.
- To highlight diagnostic methods, including advanced imaging and skin biopsy.
- To discuss the current lack of specific therapies and ongoing research into pathogenesis.
Main Methods:
- Review of clinical case studies and pathological findings.
- Analysis of neuroimaging (PET, MRI) to identify characteristic white-matter changes.
- Genetic analysis to identify mutations in the Notch3 gene.
Main Results:
- CADASIL presents with progressive neurological deficits, including cognitive decline and dementia.
- Characteristic MRI findings and arteriopathy in dermal biopsies aid diagnosis.
- Notch3 gene mutations are the underlying cause, affecting cysteine residues and protein function.
Conclusions:
- Early diagnosis of CADASIL is feasible before clinical stroke onset.
- Understanding Notch3 gene mutations is crucial for pathogenesis.
- Further research is needed to develop targeted therapies for CADASIL.
Abstract:
Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) often begins with migraine with aura. Recurrent strokes usually appear between 30 and 50 years of age. The arteriopathy develops slowly, resulting in destruction of smooth muscle cells and thickening and fibrosis of the walls of small and medium-sized penetrating arteries with consequent narrowing of the lumen. This impairs cerebral blood flow, visible in PET, and produces characteristic white-matter hyperintensities in T2-weighted MRI on the basis of which CADASIL may be diagnosed well before the first stroke. Multiple lacunar infarcts, mainly in the frontal white matter and basal ganglia, lead to progressive permanent brain damage manifested as cognitive decline and finally as dementia. At present, no specific therapy is available. Infarcts result from thickening and fibrosis of the walls of small and medium-sized penetrating arteries with consequent obliteration and/or thrombosis. Although the symptoms are almost exclusively neurological, the arteriopathy is generalized and diagnosis can be made on the basis of accumulation of pathognomonic basophilic, PAS-positive and in electron microscopy osmiophilic material between degenerating smooth muscle cells in dermal arteries. CADASIL is caused by missense point mutations in the Notch3 gene, which encodes a transmembrane receptor protein with an important signaling function during development. The gene defects lead to either a gain or loss of a cysteine residue in the extracellular N-terminal part of the molecule, most probably causing a conformational and functional alteration. The function of Notch3 in adults and the definite pathogenesis of CADASIL are still unknown, but interestingly its intramembranous proteolytic cleavage may be regulated or implemented by presenilin similarly as cleavage of amyloid precursor protein in Alzheimer's disease.
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