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Detection of complement factor B in the cerebrospinal fluid of patients with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy disease using two-dimensional gel electrophoresis and mass spectrometry.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a hereditary condition with onset in mid-adulthood and is associated with mutations in the Notch-3 gene. (Joutel, A., Corepechot, C., Ducros, A., Vahedi, K., Chabriat, H., Mouton, P., Alamowitch, S., Domenda, V., Cecilion, M., Marechal, J., Vayssiere, C., Cruaud, C., Cabanis, E.A., Ruchoux, M.M. , Weissenvach, J., Bach, J.F., Bousser, M.G. and Tournier-Lasserve, E., Notch3 mutations in CADASIL, a hereditary adult-onset condition causing stroke and dementia. Nature, 383 (1996) 707-710) Ultrastructural examination of the pathology of the cerebral infarcts reveals deposits in the vascular smooth muscle cells of the small arteries of the brain, but there is no obvious indication how the Notch-3 mutations give rise the observed pathology, nor is there any information on the exact nature of the deposits. We have investigated cerebrospinal fluid (CSF) from three CADASIL cases with known mutations in Notch-3 using two-dimensional gel electrophoresis. CSF from these patients was compared to that of six controls. We detected a single spot in the protein maps of patients which was absent from all the controls. In-gel tryptic digestion of this protein followed by mass spectrometric analysis of the tryptic fragments and a database search identified the spot as human complement factor B. These preliminary findings suggest that the alternative complement pathway may play a role in the pathogenesis of CADASIL.

Adult↗

Pathogenic mutations associated with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy differently affect Jagged1 binding and Notch3 activity via the RBP/JK signaling Pathway.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an inherited vascular dementia characterized by the degeneration of smooth-muscle cells in small cerebral arteries. CADASIL is caused by mutations in NOTCH3, one of the four mammalian homologs to the Drosophila melanogaster NOTCH gene. Disease-associated mutations are distributed throughout the 34 epidermal growth factor-like repeats (EGFRs) that compose the extracellular domain of the Notch3 receptor and result in a loss or a gain of a cysteine residue in one of these EGFRs. In human adults, Notch3 expression is highly restricted to vascular smooth-muscle cells. In patients with CADASIL, there is an abnormal accumulation of Notch3 in the vessel. Molecular pathways linking NOTCH3 mutations to degeneration of vascular smooth-muscle cells are as yet poorly understood. In this study, we investigated the effect of CADASIL mutations on Notch3 activity. We studied five naturally occurring mutations: R90C and C212S, located in the previously identified mutational hotspot EGFR2-5; C428S, shown in this study to be located in the ligand-binding domain EGFR10-11; and C542Y and R1006C, located in EGFR13 and EGFR26, respectively. All five mutant proteins were correctly processed. The C428S and C542Y mutant receptors exhibited a significant reduction in Jagged1-induced transcriptional activity of a RBP/JK responsive luciferase reporter, relative to wild-type Notch3. Impaired signaling activity of these two mutants arose through different mechanisms; the C428S mutant lost its Jagged1-binding ability, whereas C542Y retained it but exhibited an impaired presentation to the cell surface. In contrast, the R90C, C212S, and R1006C mutants retained the ability to bind Jagged1 and were associated with apparently normal levels of signaling activity. We conclude that mutations in Notch3 differently affect Jagged1 binding and Notch3 signaling via the RBP/JK pathway.

Calcium-Binding Proteins↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy: a clinicopathological and genetic study of a Swiss family.

This paper reports a Swiss family affected by a cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) linked to chromosome 19q12. In three generations several members of this family had recurrent stroke-like episodes and, some developed subcortical dementia, migraine-like headaches, and depression. The clinically affected family members had multiple subcortical infarcts and diffuse leukoencephalopathy on MRI. Necropsy of one patient showed a distinctive non-amyloid and non-atherosclerotic angiopathy of small cerebral and leptomeningeal arteries with concentric depositions of a basophilic granular material replacing the smooth muscle cells of the media. Linkage analysis with five chromosome 19 markers spanning the estimated CADASIL interval showed the absence of any recombinant and positive Lod scores, highly suggestive of linkage of this condition to the CADASIL locus. CADASIL might be an underestimated cause of familial stroke and should be considered in the differential diagnosis of hereditary stroke.

Adult↗

New phenotype of the cerebral autosomal dominant arteriopathy mapped to chromosome 19: migraine as the prominent clinical feature.

A survey was carried out on a large family presenting the symptoms of familial arteriopathy (CADASIL) recently mapped to chromosome 19. This is characterised clinically by recurrent subcortical infarcts developing into pseudobulbar palsy and subcortical dementia, and radiologically by early MRI abnormalities. To characterise this familial condition, 43 members older than 20 years and spreading over four generations were studied clinically (31 living, 12 deceased), genetically, and radiologically by MRI (n = 31). Twenty out of 43 were found to be clinically symptomatic and of these 13 out of 31 had MRI abnormalities. Genetic studies mapped this condition to the locus of CADASIL (lod score > 3). The natural history suggests a chronological clinicoradiological staging of this phenotype of CADASIL: stage I between 20 and 40 years with frequent migraine-like episodes and well delineated lesions of the white matter; stage II between 40 and 60 years with stroke-like episodes, bipolar or monopolar-like psychotic disorders, coalescent lesions of the white matter, and well delineated lesions of the basal ganglia; and stage III over 60 years with subcortical dementia, pseudobulbar palsy, diffuse leukoencephalopathy, and multiple well delineated lesions of the basal ganglia. This phenotype differs from the other two previously described by high frequency of migraine, frequency of psychotic disorders, and early neurological manifestations. The new acronym "cerebral autosomal dominant arteriopathy with subcortical infarcts, leukoencephalopathy, and migraine" (CADASILM) is proposed to better describe this particular subvariety of CADASIL.

Adult↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy: MR imaging findings at different ages--3rd-6th decades.

PURPOSE: To depict various brain lesions that have been described in patients who have cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) with prospective standardized magnetic resonance (MR) imaging in patients of different age groups. MATERIALS AND METHODS: Forty patients with CADASIL in different age groups (20-30 years, n = 5; 31-40 years, n = 4; 41-50 years, n = 16; 51-60 years, n = 15) underwent transverse MR imaging with T1-weighted dual fast spin-echo, fluid-attenuated inversion-recovery, and T2*-weighted gradient-echo sequences. Images were analyzed by one neuroradiologist for the presence of areas of hyperintensity, lacunar infarcts, microbleeds, and subcortical lacunar lesions (SLLs) in different anatomic locations. Descriptive statistics were obtained for the presence of MR imaging abnormalities in various brain areas and for distribution according to age. RESULTS: The mean age of the 40 mutation carriers (21 women, 19 men) was 45 years +/- 10 (SD). In patients with CADASIL who were 20-30 years old, characteristic hyperintense lesions in the anterior temporal lobe (100% [five of five]) and SLLs (20% [one of five]) were the only abnormalities seen on MR images. In patients who were 30-40 years old, lacunar infarcts were found in 75% (three of four) of cases. More areas of hyperintensity were noted, and they frequently involved the external capsule, basal ganglia, and brainstem. In patients 41-50 years old, microbleeds were observed in 19% (three of 16). In patients older than 50 years, areas of hyperintensity (100% [15 of 15]), SLLs (73% [11 of 15]), lacunar infarcts (93% [14 of 15]), and microbleeds (47% [seven of 15]) were frequently observed. CONCLUSION: The four types of brain lesions that are observed in patients with CADASIL were seen in patients of different age groups.

Adult↗

[Clinical characteristics of hereditary cerebrovascular disease in a large family from Colombia].

INTRODUCTION: The cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is caused by mutations of the Notch3 gene in the chromosome 19p13.1. and is characterized by small-vessel disease of the cerebral. The clinical feature consists of migraine, recurrent strokes, mood changes and dementia. OBJECTIVE: To describe the clinical phenotype of a Colombian family with hereditary cerebrovascular disease. PATIENTS AND METHODS: We performed one pedigree with 268 individuals, neurologic examination to 57 members and magnetic resonance imaging (MRI) to 25 of them. RESULTS: Clinical analysis strongly support the diagnosis of CADASIL because 12 individuals had suffered recurrent stroke, five of them later developed subcortical dementia. Two patients developed dementia without preceding stroke. All affected individuals by stroke or dementia whom were tested with MRI had white matter hyperintensities and subcortical infarcts (nine cases). Others seven individuals have MRI signal abnormalities like CADASIL, four of them are asymptomatic, one had suffered ischemic transient attacks and two had suffered migraine. Other 22 individuals had only migraine. We outstand the high frequency of MRI signal abnormalities in corpus callosum that we found in five individuals with stroke or dementia, the patient with ischemic transient attack and one asymptomatic patient, either the presence of hearing loss in seven individuals with stroke or dementia. CONCLUSIONS: We describe one large family with hereditary cerebrovascular disease characterized by recurrent strokes, subcortical dementia, hearing loss, migraine, and MRI signal abnormalities typed leukoencephalopathy, subcortical infarcts and alterations in corpus callosum. Clinical analysis strongly support the diagnosis of CADASIL.

Adult↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy: decrease in regional cerebral blood volume in hyperintense subcortical lesions inversely correlates with disability and cognitive performance.

BACKGROUND AND PURPOSE: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an arteriopathic syndrome related to a genetic defect on chromosome 19. Characteristic changes in CADASIL can be observed onT2-weighted MR images in the subcortical white matter. The purpose of this study was to measure changes of regional cerebral blood volume (rCBV) with dynamic contrast-enhanced MR imaging and to correlate the changes to disability and cognitive performance. METHODS: We obtained rCBV measurements of 24 individuals with proven CADASIL on a 1.5-T MR imaging unit. A susceptibility-weighted MR imaging sequence was used for bolus tracking. Principles of the indicator dilution theory were applied to estimate values of absolute rCBV (mL/100 g). Disability was determined by using the Rankin scale, and overall cognitive performance was assessed by using the Mini-Mental State Examination. RESULTS: The mean rCBV in the subcortical white matter that was hyperintense on the T2-weighted images (2.7 +/- 0.8 mL/100 g) was significantly lower than the rCBV in the white matter that appeared normal on the T2-weighted images (4.4 +/- 1.3 mL/100 g) (P <.05). The mean rCBV in the gray matter was within the normal range (8.3 +/- 1.7 mL/100 g). Both cognitive impairment and disability negatively correlated with rCBV in the subcortical white matter that was hyperintense (P <.05) but not with rCBV in the normal appearing white matter. rCBV did not correlate with age. CONCLUSION: rCBV measured in the hyperintense subcortical white matter in individuals with CADASIL was decreased and inversely correlated with disability and cognitive impairment.

Adult↗

[NOTCH3 gene mutations in four Chinese families with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy].

OBJECTIVES: To search for mutations in NOTCH3 gene in four Chinese families with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). METHODS: Four probands from four unrelated families with typical manifestations of CADASIL were studied. The 1 approximately 12 coding exons and their flanking intron sequences of NOTCH3 gene were amplified by PCR and sequenced. Some family members in the pedigree 2 and 4 were also examined for the NOTCH3 gene mutations. RESULTS: Four heterozygous missense mutations were identified in the four families: the proband 1 carrying a 268C-->T mutation in exon 3, the proband 2 a 322 C-->T mutation in exon 3, the proband 3 a 328 C-->T mutation inexon 3, and the proband 4 a 1819 C-->T mutation in exon 11, which resulted in the amino acid substitutions of R90C, C108R, R110C, and R607C respectively. Among them the C108R is a novel mutation not reported previously. Additionally, some members in the pedigree 2 and 4 also harbored the same mutations with the probands. CONCLUSION: Four heterozygous missense mutations in NOTCH3 gene have been found in four Chinese families with CADASIL. Different point mutations in NOTCH3 lead to similar phenotype of the disease. To search for mutations in NOTCH3 in related patients will help further understand and accurately diagnose the disease and perform prenatal diagnosis in CADASIL families.

Adult↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy, genetic homogeneity, and mapping of the locus within a 2-cM interval.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a recently identified autosomal dominant cerebral arteriopathy characterized by the recurrence of subcortical infarcts leading to dementia. A genetic linkage analysis conducted in two large families recently allowed us to map the affected gene on chromosome 19 in a 12-cM interval bracketed by D19S221 and D19S215. In the present study, these first 2 families and 13 additional ones, including a total of 199 potentially informative meiosis, have been genotyped with eight polymorphic markers located between D19S221 and D19S215. All families were linked to chromosome 19. The highest combined lod score (Zmax = 37.24 at theta = .01) was obtained with marker D19S841, a new CAn microsatellite marker that we isolated from chromosome 19 cosmids. The recombinant events observed within these families were used to refine the genetic mapping of CADASIL within a 2-cM interval that is now bracketed by D19S226 and D19S199 on 19p13.1. These data strongly suggest the genetic homogeneity of this recently identified condition and establish the value of its clinical and neuroimaging diagnostic criteria. Besides their importance for the ongoing positional cloning of the CADASIL gene, these data help to refine the genetic mapping of CADASIL relative to familial hemiplegic migraine and hereditary paroxysmal cerebellar ataxia, conditions that we both mapped within the same chromosome 19 region.

Cerebral Arterial Diseases↗

A novel mutation (C271F) in the Notch3 gene in a Chinese man with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy.

BACKGROUND: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an adult-onset hereditary condition caused by mutations in the Notch3 gene. A Chinese man was studied. METHOD: Electronic microscopy examination of skin biopsy. The Notch3 gene was screened for mutations by polymerase chain reaction and direct DNA sequencing. RESULTS: Electronic microscopy showed the presence of deposits of granular osmiophilic material in dermal capillaries in the index patient. A novel heterozygous C271F in exon 6 was detected in the index patient. This heterozygous C271F mutation was also detected in the asymptomatic elder son but was not detected in the asymptomatic wife of the patient. Allele specific amplification showed that C271F was not detected in 100 normal subjects. CONCLUSION: We established the molecular basis of CADASIL in a Chinese man. Mutation detection assay provides a reliable method for confirming the diagnosis of CADASIL.

Asian People↗

Overexpression of semicarbazide sensitive amine oxidase in the cerebral blood vessels in patients with Alzheimer's disease and cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy.

Semicarbazide sensitive amine oxidase (SSAO) metabolizes oxidative deamination of primary aromatic and aliphatic amines, and, in the brain, it is selectively expressed in blood vessels. SSAO expression is examined, by immunohistochemistry with a purified polyclonal antibody to SSAO from bovine lung, in the brains of subjects with Alzheimer disease (AD; n=10), cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL; n=2), and age-matched controls (n=8). SSAO immunoreactivity is restricted to meningeal and parenchymal blood vessels in control and diseased brains. Yet, a marked and selective increase in SSAO immunoreactivity occurs in association with betaA4 vascular amyloid deposits in patients with AD, and in the vicinity of the typical granular deposits in the blood vessels of gray and white matter in patients with CADASIL. Oxidative deamination of primary aromatic and aliphatic amines by SSAO produces ammonia, hydrogen peroxide and the corresponding aldehyde. Moreover, increased SSAO immunoreactivity is associated with increased Cu/Zn superoxide dismutase 1 expression restricted to abnormal blood vessels in diseased brains. Therefore, it is suggested that increased SSAO expression is a source of oxidative stress in the blood vessel wall in AD and CADASIL.

Aged↗

A gene for familial hemiplegic migraine maps to chromosome 19.

Familial hemiplegic migraine is an autosomal dominant disorder of unknown pathogenesis in which the migrainous attacks are marked by the occurrence of a transient hemiplegia during the aura. While investigating CADASIL, mapped previously to chromosome 19, we observed that some patients had recurrent attacks of migraine with aura. Although the clinical and neuroimaging features of familial hemiplegic migraine differ markedly from CADASIL, we hypothesized that the same gene could be involved in the pathogenesis of both conditions. We chose two large pedigrees for linkage analysis of familial hemiplegic migraine. A maximum lod score > 8 was found with two markers that are also strongly linked to CADASIL. Multilocus linkage analysis suggested that the loci responsible for the two diseases reside within an interval of about 30 cM on chromosome 19.

Adolescent↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy: an imaging mimic of multiple sclerosis. A report of two cases.

OBJECTIVE AND IMPORTANCE: To describe the imaging findings of two cases of cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) mimicking multiple sclerosis. CLINICAL PRESENTATION AND INTERVENTION: Two cases presenting with neurological signs and symptoms were referred for magnetic resonance imaging (MRI) evaluation of the brain. Case 1 was a 36-year-old female patient presenting with recurrent headaches and recent onset numbness in the fingers of the right hand. Neurological examination showed a mild sensory deficit in the right hand. Case 2 was a 31-year-old female patient presenting with attacks of right-sided numbness of the face and body. The neurological examination revealed a sensory loss in the face and brisk deep tendon reflexes. Routine MRI sequences showed two types of lesions in both cases: 'punctate' hyperintense lesions on T(2)-weighted images (T(2)WI)/fluid-attenuated inversion recovery (FLAIR) images, hypointense on T(1)-weighted images (T(1)WI) and 'diffuse' white matter lesions, hyperintense on T(2)WI/FLAIR sequences and isointense to hypointense on T(1)WI. All lesions showed no contrast enhancement. Both cases were previously clinically and radiologically diagnosed as multiple sclerosis. There was a strong family history consistent with recurrent infarctions in other family members of both patients. Both cases were later diagnosed as CADASIL by skin biopsy/genetic linkage studies and follow-up. CONCLUSION: The cases showed that CADASIL causes stroke-like episodes in adults and can mimic multiple sclerosis on imaging. Clinical evaluation and MRI findings allow a differentiation of the two entities.

Adult↗

Unusual clinical features and early brain MRI lesions in a family with cerebral autosomal dominant arteriopathy.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a recently described inherited disorder. The pathologic gene maps on chromosome 19. The clinical spectrum of the disease consists of recurrent strokes, migraine, transient ischemic attacks, mood changes, and dementia. We report a genetically assessed CADASIL family with atypical clinical presentations of epileptic seizures. In two asymptomatic family members there were early brain abnormalities on MRI. Our report expands the clinical spectrum of CADASIL and suggests that it is possibly an undiagnosed disorder.

Adult↗

Non-CAA angiopathies and their possible interactions with cerebral amyloid angiopathy.

Cerebral amyloid angiopathy (CAA) is one of the two most common cerebral arteriopathies seen in the brains of elderly patients. The other is arteriosclerosis (AS), historically considered a consequence of chronic hypertension and also described as lipohyalinosis (LH), a clinicopathologic association that is increasingly questioned. These and other less frequently encountered degeneralions of the cerebral microvasculature (CADASIL, Binswanger subcortical leukoencephalopathy) share the common feature of degeneration of the medial smooth muscle layer within arteriolar walls. This can be dramatic in CAA, in the course of which complete replacement of medial smooth muscle by fibrillar amyloid may occur. It is a less prominent feature of CADASIL and BSLE: in the latter condition, medial smooth muscle hyperplasia, possibly a response to some kind of injury, is a more dramatic finding. In some of these "angiomyopathies", fibrinoid necrosis of the arterial wall and microaneurvsm formation may lead to stroke, manifest as cerebral hemorrhage. With CADASIL and BSLE, ischemic brain injury is more common. In the case of CAA, upregulation of the Abeta-amyloid precursor protein occurs when arteriolar smooth muscle cells in culture are exposed to prolonged hypoxia, especially with reoxygenation. Injury to arteriolar smooth muscle cells may be one mechanism by which angiomyopathies progress and become symptomatic.

Aged↗

[Clinical progress in headache].

In Western communities, 15 to 20% of the general population experiences migraine headaches. In Japan, 3 to 9% of the population experience migraine headaches. Quality of life in headache patients is impaired. The International Headache Society (IHS) published the new headache classification in 1988. Chronic daily headache (CDH) is a common problem in headache clinics. Recently, the problems in classifying CDH have been discussed. CDH is not easily classified within the IHS criteria. For migraine attacks, triptans are effective. The genetic analysis in migraine is progressing. Point mutations in the P/Q-type Ca2+ channel alpha 1 subunit gene in familial hemiplegic migraine and in Notch 3 gene in cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL), have been identified. Although CADASIL patients in Europe often show migraine headache, migraine attacks are less common in Japanese CADASIL patients.

Calcium Channels↗

[Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy--report of an autopsied Japanese case].

We report a 75-year old Japanese man with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). His family had no consanguinous marriage and his grandfather had migraine attacks. His father showed uncontrollable emotion at the age of 59 followed by gait disturbance, disorientation, pseudobulbar palsy and died at the age of 63. The patient had migraine attacks with aura since 10 year-old and showed uncontrolableness of his emotion and gait disturbance at the age of 63 followed by disorientation, urinary incontinence and pseudobulbar palsy, and died from aspiration pneumonia at the age of 75. The postmortem examination revealed an arteriopathy in the cerebral white matter and meningeal vessels and multiple infarctions in the cerebral white matter corpus callosum, basal ganglia, middle cerebellar peduncle and pontine tegmentum. The affected arterial walls showed eosinophilic and periodic acid Schiff (PAS)-positive granules in the media, which were composed of numerous electron dense small granules in varying sizes on electron microscopic examinations. These granules showed complements (Clq, C3, C4)-like immunoreactivity but did not have IgG-, IgM-, IgA-, kappa and lambda chain-, or beta-amyloid-like immunoreactivities. The clinicopathological features in this patient were compatible with those reported as CADASIL in the European countries and this is the first case report of CADASIL in Japanese race.

Aged↗

Autosomal dominant cerebral arteriopathy: neuropsychiatric syndrome in a family.

Though familial vascular leukoencephalopathy was described two decades ago, recent studies focus on a disorder termed Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy (CADASIL), a dominantly inherited disorder causing recurrent strokes and eventual dementia. The phenotypic boundaries of CADASIL remain indistinct and novel clinical features continue to arise in the literature. However, the associated histopathology is fairly consistent, typically demonstrating granular thickening of cerebral arterioles. The authors evaluated a 38-year-old man who suffered from progressive change in personality and intellect. His father, paternal aunt, and older sister had succumbed to a similar disorder. The authors examined relatives from three generations, including another sister with transient focal symptoms followed by persisting psychiatric disorder, and reviewed the radiographic studies from the propositus and his siblings. All the siblings showed diffuse white matter signal change on magnetic resonance imaging. Brain biopsy from the propositus revealed normal cortex and white matter but granular sclerosis of leptomeningeal arterioles. While the family's illness likely represents another instance of CADASIL, their presentation is unique because neuropsychiatric disorders predominate over focal ischemic symptoms.

Adult↗