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Correlation of cognitive status, MRI- and SPECT-imaging in CADASIL patients.

Although there is evidence for correlations between disability and magnetic resonance imaging (MRI) total lesion volume in autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL), the significance of structural MRI abnormalities for cognitive dysfunction remains controversial. We performed detailed neuropsychological testing, high resolution MRI, and Tc-99m-ethyl cysteinate-dimer SPECT in three CADASIL patients. MR-images were rated independently by two investigators for the presence of white matter lesions, lacunar infarcts, microbleeds, and ventricular enlargement. Cortical atrophy was quantified by the use of automatic morphometric assessment of the cortical thickness. In addition, laboratory and patients' history data were collected in order to assess the individual vascular risk factor profile. The differences in cognitive performance between the three patients are neither explained by structural-, or functional neuroimaging, nor by the patient-specific vascular risk factor profiles. The neuroradiologically least affected patient met criteria for dementia, whereas the most severely affected patient was in the best clinical and cognitive state. Conventional structural and functional neuroimaging is important for the diagnosis of CADASIL, but it is no sufficient surrogate marker for the associated cognitive decline. Detailed neuropsychological assessment seems to be more useful, particularly with respect to the implementation of reliable outcome parameters in possible therapeutic trials.

Adult↗

A new de novo Notch3 mutation causing CADASIL.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy (CADASIL) is one of the most common hereditary forms of stroke, and migraine with aura, mood disorders, or dementia, are also frequently found in these patients. Missense mutations in the Notch3 gene that create or destroy cysteine residues, have been found in most cases with a family history of the disease, although a few sporadic cases harbouring Notch3 mutations have also been described. Here, we describe a 44-year-old patient with clinical features of CADASIL who was a carrier of a new Notch3 mutation: cys128-->gly. Both parents were alive and healthy, and negative for the mutation. This case illustrates the interest of analysing the Notch3 gene in cases with clinical features of CADASIL, even in the absence of a family history of the disease.

Adult↗

The spectrum of Notch3 mutations in 28 Italian CADASIL families.

BACKGROUND: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy (CADASIL) is a cause of hereditary cerebrovascular disease. It results from mutations in the Notch3 gene, a large gene with 33 exons. A cluster of mutations around exons 3 and 4 was originally reported and limited scanning of these exons was suggested for the diagnosis in most cases. OBJECTIVE: To report Notch3 mutation analysis in 28 unrelated Italian CADASIL families from central and south Italy. RESULTS: The highest rate of mutations was found in exon 11 (21%) and only 18% of mutations were in exon 4. This may be related to the peculiar distribution of Notch3 mutations in the regions of origin of the families. CONCLUSIONS: The results suggest that limited scanning of exons 3 and 4 is inadvisable in CADASIL cases of Italian origin.

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Diffusion magnetic resonance histograms as a surrogate marker and predictor of disease progression in CADASIL: a two-year follow-up study.

BACKGROUND AND PURPOSE: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a cerebral small vessel disease caused by mutations in the NOTCH3 gene. MRI is sensitive in detecting preclinical involvement and changes over time. However, little is known about correlations between MRI metrics and clinical measures on a longitudinal scale. In this study, we assessed the role of quantitative MRI (T2-lesion volume and diffusion tensor imaging [DTI]-derived metrics) in monitoring and predicting disease progression. METHODS: Sixty-two CADASIL subjects were followed prospectively over a period of 26.3+/-1.2 months. Dual-echo scans, DTI scans, and clinical scales were obtained at baseline and at follow-up. T2-lesion volumes were determined quantitatively, and histograms of mean diffusivity (MD) were produced. RESULTS: At follow-up, T2-lesion volumes and MD histogram metrics had changed significantly (all P<0.01). Lesion volumes and average MD correlated with clinical scores at baseline. Changes of average MD correlated with changes of the Rankin score, the National Institutes of Health Stroke Scale score, and the structured interview for the diagnosis of Alzheimer dementia and multiinfarct dementia score (all P<0.01). On multivariate analysis, average MD and systolic blood pressure at baseline were predictors of changes of average MD during follow-up. Moreover, average MD was the main predictor of clinical progression. Sample size estimates showed that the number of individuals required to detect a treatment effect in an interventional trial may be reduced when using MD histograms as an end point. CONCLUSIONS: This study establishes correlations between changes of DTI histogram metrics and clinical measures over time. DTI histograms may be used as an adjunct outcome measure in future therapeutic trials. Moreover, DTI histogram metrics predict disease progression in CADASIL.

Adult↗

Heritability of MRI lesion volume in CADASIL: evidence for genetic modifiers.

BACKGROUND AND PURPOSE: The phenotypic expressivity shows striking variability among individuals with CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy), a small vessel disease caused by mutations in NOTCH3. However, little is known about the factors that underlie this variability. We sought to quantify the contribution of modifying genetic effects to individual differences in the volume of cerebral ischemic lesions. METHODS: One hundred and fifty-one affected individuals (mean age+/-SD=45.7+/-10.4) from 95 unrelated families with CADASIL underwent MRI. The volume of lesions visible on T2-weighted images and the intracranial volume (ICV) were quantified and vascular risk factors were assessed. Because of a skewed distribution, lesion volume measures were square-root transformed. Variance component methods were used to estimate the heritability of lesion volumes (ie, the proportion of variation caused by additive genetic factors) after adjusting for covariates. RESULTS: In multivariate analyses, higher age, a larger ICV, and a higher diastolic blood pressure were independently associated with a larger volume of T2-visible lesions (all P<0.05). After adjustment for age the point estimate for the heritability of the square-root-transformed measure of T2 lesion volume was 0.634 (SE=+/-0.286). Adjustment for age, sex, ICV, and diastolic blood pressure increased the estimated heritability to 0.738 (SE+/-0.255). CONCLUSIONS: Heritability estimates in CADASIL suggest a strong modifying influence of genetic factors distinct from the causative NOTCH3 mutation on the amount of ischemic brain lesions. These findings justify a systematic search for genetic variants that modify disease progression.

Adult↗

Cortical neuronal apoptosis in CADASIL.

BACKGROUND AND PURPOSE: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is caused by mutations of the NOTCH3 gene and is a model of pure vascular dementia. Cortical atrophy has been reported to be associated with cognitive decline in the disease, although the underlying mechanism is unknown. We postulated that apoptosis may be involved in this process. METHODS: We report the clinical history, magnetic resonance imaging findings, and pathologic examinations of 4 patients (2 of whom were demented) who died from complications of the disease. Apoptosis was evaluated in brain tissue using antibodies against activated caspase3 and in situ end labeling assays for DNA fragmentation. RESULTS: Widespread neuronal apoptosis in the cerebral cortex (predominantly in layers 3 and 5) was observed in all patients. This was not seen in 3 non-CADASIL controls. Semiquantitative analysis suggested that apoptosis was more extensive in the presence of larger load of subcortical ischemic lesions and smaller brain volumes. CONCLUSIONS: Neuronal apoptosis may be involved in cortical atrophy in CADASIL and appears related to the burden of subcortical ischemic lesions. These findings may have important implications in other small vessel diseases and may provide a potential target for future therapeutic interventions.

Adult↗

A novel Notch3 gene mutation not involving a cysteine residue in an Italian family with CADASIL.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a hereditary cerebrovascular disease leading to accumulating neurologic deficits and dementia. CADASIL has been linked to nucleotide substitutions and deletions in the Notch3 gene. All the mutations described until now lead to unpaired cysteine residue in the epidermal growth factor-like repeats. The authors report a family with CADASIL carrying a deletion in the Notch3 gene that did not involve a cysteine residue.

Adult↗

Intracerebral hemorrhages in CADASIL.

Intracerebral hemorrhage (ICH) has been described only sporadically for patients with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). However, cerebral microbleeds (CMBs) were found in 31% to 69% of the patients with CADASIL, and this predicted an increased risk of ICH. In this study, the authors found that 25% of the symptomatic patients with CADASIL had ICHs, and their development was closely related to the number of CMBs.

Aged↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy (CADASIL): a case report with review of literature.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy (CADASIL) is an inherited arterial disease, commonly overlooked or misdiagnosed. We report a case of CADASIL in a 51 years old woman who presented with progressive subcortical dementia, recurrent ischemic events and seizures in the absence of known vascular risk factors of five years' duration. Her mother had a history of similar illness. Magnetic resonance imaging (MRI) of brain revealed subcortical and deep white matter hyperintense lesions within the cerebral white matter on T2-weighted images. DNA mutation of Notch 3 gene confirmed the diagnosis of CADASIL.

Brain↗

[Clinical features in 4 Chinese families with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL)].

OBJECTIVE: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy (CADASIL) is an inherited cerebral arteriolar disease in adulthood, which is caused by NOTCH3 gene mutation. The main symptoms were migraine, cerebral stroke, later with mood disorders and dementia in Caucasian patients. Recently, the disease was also recognized in Asian patients, in whom the migraine is rarely reported. In order to give the clinical features of Chinese patients, we described the clinical symptoms in 4 CADASIL families. METHODS: CADASIL was diagnosed by the investigation of ultra-structure changes of arteriole in sural nerve and NOTCH3 gene mutation in the 4 index cases. Detailed clinical and routine laboratory examinations were performed in these 4 patients, including electrocardiography, nerve conduction velocity, serum glycogen, and serum homocysteine. Additionally, we also collected the clinical data of the other 83 family members through interviews and the available medical records. RESULTS: Of the 83 persons, 29 were classified as clinical suspected patients, who presented one or more of the disease-related neurological symptoms, such as cerebral ischemic events and the cognitive impairment. All of them showed no common risk factors for stroke, such as diabetic mellitus, hypertension, and heart disease. The clinical suspected patients distributed in every consecutive generations and involved both sexes, which was according to the autosomal dominant inherited pattern. The onset age of the disease ranged from 28 to 70-year-old and mainly between the 4th and the 5th decades. The main symptoms were recurrent episodic vertigo, with or without hemiplegia. At the same time or a little bit later, the cognitive impairment was developed in some patients. Compared with the typical presentations of the disease in European patients, none of our 29 patients showed migraine,one index case showed mild sensory disturbance in extremities. Elevated serum homocysteine level and abnormal of nerve conduction study in two index cases (3 and 4) were noticed. CONCLUSION: The onset age of the disease of our patients is similar to that of Caucasian patients. The main symptoms were stroke and dementia. Involvement of post circulation system was the main clinical feature for ischemic events in our patients. Dementia could be found in the early stage of disease. Migraine should not be regarded as a common clinical feature in our patients. The involvement of the peripheral nerves expanded the disease expression outside the central nervous system.

Adult↗

[A case of early stage CADASIL showing only dizziness and vertigo with a novel mutation of Notch 3 gene].

We report a 39-year-old woman who presented with only dizziness and vertigo for 2 months. Neurological examination revealed no abnormalities except for hypereflexia on the left side extremities. Neurootological examination revealed no abnormalities. MRI of the brain demonstrated patchy hyperintensity areas on FLAIR images in the periventricular white matter and external capsule. Her grandmother had cerebral infarction and her father is suffering from multi-infarct dementia. Her second older sister who similarly had dizziness and vertigo demonstrated similar MRI findings characterized by patchy hyperintensity areas in the white matter and external capsule even though she had no risk factors for atherosclerosis. Her third older sister also had dizziness and vertigo and had patchy hyperintensity areas in the white matter in her brain MRI even though she had no risk factors for atherosclerosis. Based on this family history, we suspected that she had cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). Mutational analysis of Notch3 gene disclosed a novel missense mutation substituting arginine for cysteine at codon 206 (C206R) in exon 4 of the Notch3 gene, confirming the diagnosis of CADASIL. Interestingly, similar dizziness and vertigo were present not only in the patient, but also in the other two sisters who had the same gene mutation as the patient. This report supports the idea that the external capsule lesion is one of the signs suggestive of CADASIL as a diagnosis.

Brain↗

[A study of subcortical infarcts and leukoencephalopathy (CADASIL) in a family with autosomal cerebral dominant arteriopathy].

OBJECTIVE: To investigate the clinical features, hereditary pattern, neuroimaging characteristics and diagnostic method of cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). METHODS: A systematic study on the clinical manifestations, neuroimaging characteristics, pathology and molecular genetics was performed. An investigation on the onset and hereditary pattern of the family tree of the proband was also done. RESULTS: The main clinical features of the proband including history of recurrent ischemic stroke, poor memory/cognition or dementia were noted. Fifteen cases pertaining to 4 generations of the proband with clinical or subclinical onset and confirmed classical family history of autosomal dominant hereditary were studied. Neuroimaging examination showed subcortical multiinfarct lesions and leukoencephalopathy. Electron microscope examination of the skin. Biopsy indicated thickening of basement membrane and presence of granular osmiophilic material (GOM) in the arterioles. A mutation on the fourth exon of notch 3 gene was revealed. Migraine, hypertension, diabetes and risk factors of arteriosclerosis were not found. All the features mentioned above in this family are in conformity with the diagnostic standard of CADASIL. CONCLUSIONS: It is possible to define CADASIL clinically by way of studying the clinical features, hereditary pattern, neuroimaging characteristics, skin biopsy and sequencing of gene without resorting to brain biopsy.

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Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL).

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an adult-onset hereditary syndrome characterized by recurrent TIAs and strokes, cognitive decline and dementia, migraine with aura (+/-40% of patients), and psychiatric disturbances (+/-30% of patients). Affected individuals have prominent signal abnormalities on brain MRI. Symmetrical white matter abnormalities are invariably seen and often small subcortical infarcts are also present. The extent of the MRI lesions increases with age, from subtle white matter abnormalities in the anterior temporal poles in the early 20 years to confluent white matter lesions with subcortical infarcts and microbleeds in the 6(th) decade. A typical arteriopathy with electron dense granular depositions in the media of small cerebral arteries underlies this disorder. These arterial lesions can be found, to a lesser extent, in extra-cerebral arteries such as skin arterioles. In 1996, the defective gene in CADASIL was discovered to be NOTCH3. NOTCH3 encodes a 300-kd transmembrane protein with a receptor and cell signal transduction function. Mutations are almost always missense mutations causing the loss or gain of a cysteine residue and are detected in over 90% of patients. How alterations in NOTCH3 lead to the CADASIL phenotype has yet to be elucidated.

Adult↗

[CADASIL versus multiple sclerosis].

This case history reports on the second family in Denmark to be diagnosed with CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leucoencephalopathy). Due to symptoms, signs and paraclinical findings, an initial diagnosis of multiple sclerosis was made. However, MRI findings of leucoencephalopathy in the external capsule and anterior temporal lobes together with negative CSF findings and family history raised suspicions of CADASIL. Skin biopsy with granular osmiophilic material (GOM) and genetic testing showing the NOTCH 3 mutation proved the diagnosis. There is considerable variability in the symptoms of CADASIL; however, most often a family history of migraine, cerebrovascular events and dementia in early life is found.

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CADASIL: a short review of the literature and a description of the first family from Greece.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an inherited disease clinically characterized by migraine, subcortical ischemic events, dementia and mood disorders. We present a short review of the literature on the clinical presentation of patients with CADASIL and provide recommendations for the detection and diagnosis of similar cases. We also describe the clinical, radiological and genetic findings of two Greek patients with CADASIL, members of the same family.

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Mouse Notch 3 expression in the pre- and postnatal brain: relationship to the stroke and dementia syndrome CADASIL.

Mutations in the human Notch 3 gene cause the vascular stroke and dementia syndrome CADASIL (Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy) characterized by degeneration of vascular smooth muscle cells and multiple small infarcts in the white and deep gray matter of the brain. Here we have analyzed the expression pattern of the Notch 3 gene in the pre- and postnatal mouse brain. Prenatal Notch 3 expression is restricted to a scattered population of cells within the vessel wall of all major blood vessels in the developing embryo, including those that form the perineural vascular plexus. Expression in the postnatal brain is confined to a scattered cell population within the vessel wall of small to medium-sized penetrating arteries, which are the vessel type primarily affected in CADASIL patients. In contrast, no expression was observed in capillaries and veins. Notch 3 is most likely expressed in a subset of vascular smooth muscle cells, and the expression pattern of one of the Notch ligands, Serrate 1, was very similar to that observed for Notch 3. The Notch 3 expressing pattern was not significantly altered in platelet-derived growth factor B- (PDGF-B) deficient mouse embryos, demonstrating that Notch 3 expression is not under direct control of PDGF-B. These data show that Notch 3 expression is conserved between mouse and human and suggest that the mouse is a valid system for analysis of CADASIL.

Animals↗

A novel mitochondrial DNA mutation and a mutation in the Notch3 gene in a patient with myopathy and CADASIL.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is characterized by cerebral symptoms, but peripheral nerve or muscle involvement has not been reported. We describe a patient who had a stereotypic clinical presentation of CADASIL and, in addition, myopathy with ragged-red fibers, suggesting a mitochondrial disorder. Therefore we determined the nucleotide sequence in the entire coding region of the patient's mtDNA by conformation-sensitive gel electrophoresis and sequencing. Sequence of the exon 4 in the Notch3 gene was determined in a similar fashion. We found that the patient had myopathy with ragged-red fibers, and ultrastructural examination revealed mitochondrial aberrations. CADASIL was due to an R133C mutation in Notch3; in addition, we found a novel mutation 5650G>A in the tRNAAla gene in mtDNA. The mutation was heteroplasmic, with the proportions of the mutant genome being 99% in muscle, 96% in the buccal epithelium, 95% in the skin, and 65% in the blood. The absence of the mutation in a maternal cousin four times removed indicated that it was new in the pedigree. We suggest that the mtDNA mutation is pathogenic, as it was associated with a relevant clinical phenotype, it was not found among controls, and it altered a structurally important segment in the amino acid acceptor stem in the tRNAAla. Furthermore, its absence in nine patients from five families with R133C suggests that its relationship with the Notch3 mutation is coincidental.

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Evaluation of diagnostic NOTCH3 immunostaining in CADASIL.

CADASIL is caused by mutations in the NOTCH3 gene. Although increasingly recognized as a disease entity, the diagnostic confirmation can be lengthy or inconclusive. Recently, NOTCH3 immunostaining of skin biopsy specimens has been introduced as a new diagnostic test. The aim of this study was to independently assess the diagnostic value of NOTCH3 immunostaining, and determine whether the degree of immunostaining correlates with other disease parameters. We determined NOTCH3 mutation carrier status in 62 symptomatic and asymptomatic individuals from 15 CADASIL families. Skin biopsy specimens of these individuals, as well as of a disease control group, were immunostained with NOTCH3 antibody and blindly analyzed by two independent observers to determine sensitivity and specificity. A semiquantitative NOTCH3 immunostaining score was correlated with clinical, genetic and MRI parameters. The sensitivity was 90.2% and 85.4%, respectively, for the two observers, the specificity 95.2% and 100%; both lower than previously reported. Certain NOTCH3 mutations may underlie false-negative results. False-positive results were found in a non-mutated control, and also in one disease control. There was no difference in immunostaining between symptomatic and asymptomatic NOTCH3 mutated individuals. Furthermore, the NOTCH3 immunostaining score did not correlate with clinical or MRI parameters. NOTCH3 immunostaining is a supportive, but not definitive, CADASIL diagnostic test, and should be interpreted in the context of clinical and radiological data. Confirmation by DNA analysis is requisite for positive results, and when there exists high clinical suspicion, also for negative results.

Adult↗