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Biomedical subjects

J Haan

Publications and source records attributed to J Haan.

At least 73 records · Page 4Linked to original sources

Dutch hereditary cerebral amyloid angiopathy: structural lesions and apolipoprotein E genotype.

Hereditary cerebral hemorrhage with amyloidosis-Dutch type is caused by a mutation at codon 693 of the beta amyloid precursor protein gene. The disease is clinically characterized by strokes and dementia. In addition to cerebral plaques, cerebral amyloid angiopathy is the pathological hallmark. We investigated the correlation between radiological (white matter hyperintensities and focal lesions on magnetic resonance images) and pathological lesions (cerebrovascular amyloid angiopathy and plaques) and the apolipoprotein E genotype in patients with the disease. Twenty-five patients were studied using magnetic resonance imaging, and brain tissue from 8 patients was studied histopathologically. Neither the white matter hyperintensity scores nor the number of focal lesions on magnetic resonance images were associated with the presence of an epsilon4 allele. Nor was a correlation found between the number and type of plaques and the apolipoprotein E genotype. All patients had severe amyloid angiopathy in all cortical areas investigated. This study showed that the apolipoprotein E genotype does not modulate amyloid-related structural lesions in hereditary cerebral hemorrhage with amyloidosis of the Dutch type.

Adult↗

Presenilin-1 polymorphism and hereditary cerebral hemorrhage with amyloidosis, Dutch type.

Hereditary cerebral hemorrhage with amyloidosis, Dutch type, caused by a mutation at codon 693 of the amyloid beta precursor protein gene, is characterized by amyloid beta deposition resulting in recurrent strokes and dementia. Recent data suggest that presenilin-1 may be biologically linked to cerebral amyloid beta deposition. The intronic presenilin-1 polymorphism published by Wragg and colleagues (1996) was analyzed in 65 carriers of the hereditary cerebral hemorrhage with amyloidosis, Dutch type, mutation. We found that the presenilin-1 genotype was not correlated with age at first stroke, number of recurrences, dementia, and age at death or with white matter hyperintensities and focal lesions on magnetic resonance images. From our data we conclude that amyloid beta deposition in this disease is most likely not influenced by presenilin-1.

Adult↗

Genetics of migraine.

Although family studies and twin studies are not sufficiently reliable to establish this theory with certainty, migraine likely is influenced by hereditary susceptibility. The association of migraine with a large number of hereditary diseases opens the possibility to choose candidate chromosomes for linkage studies. A rare subtype of migraine, familial hemiplegic migraine, is linked to chromosome 19p and at least one other locus. The chromosome 19p also seems to be involved in "normal" migraine, although conflicting results have been reported.

Humans↗

The factor V Leiden mutation (R506Q) is not a major risk factor for migrainous cerebral infarction.

The etiology of migrainous cerebral infarction is unknown, but may involve prothrombotic coagulation abnormalities. Therefore, we studied resistance to activated protein C and the presence of the Arg506Gln factor V Leiden mutation in 20 patients with migrainous cerebral infarction. Only one heterozygous carrier of the mutation was found, whereas other patients did not carry the mutation. This indicates that the factor V Leiden mutation is not a major risk factor for migrainous cerebral infarction.

Adolescent↗

Mortality from hereditary cerebral haemorrhage with amyloidosis--Dutch type. The impact of sex, parental transmission and year of birth.

Hereditary cerebral haemorrhage with amyloidosis--Dutch type (HCHWA-D) is an autosomal dominant disorder, caused by a single base mutation in the amyloid beta precursor protein (beta PP) gene located on chromosome 21, resulting in recurrent haemorrhagic strokes and dementia. Though HCHWA-D is caused by a dominant mutation, the phenotypic expression varies widely, suggesting modulation of the phenotypic expression by additional factors. In this study we investigated the influence of sex, parental transmission and year of birth on mortality from HCHWA-D. Since the early sixties, clinical and genealogical data of patients with HCHWA-D have been collected. The standardized mortality rate (relative to the general population) was calculated to compare the mortality within the pedigrees with the mortality in the Dutch population. The influence of sex, parental transmission and year of birth on survival were studied using Cox's proportional hazard model. By December 1, 1995, a total of 187 cases were identified belonging to four large families. Mortality rate in affected individuals was fourfold increased compared with the Dutch population (relative mortality 4.0; 95% confidence interval 3.4-4.7) and higher in females than in males (relative mortality risk 8.0 and 2.6, respectively). Mortality rate was lower when HCHWA-D was maternally transmitted (mortality relative to paternal transmission 0.7; 95% confidence interval 0.5-1.0). Year of birth had no effect on the mortality of the affected individuals. Survival of HCHWA-D has not yet increased, in spite of higher standards of general medicine, i.e. the mortality rate did not decline over the years. Female sex was a major factor increasing mortality rate in HCHWA-D. Paternal transmission had a just significant effect on mortality rate in HCHWA-D. The possible mechanisms behind these phenomena remain unexplained by this clinical study.

Amyloid beta-Protein Precursor↗

Association of vascular amyloid beta and cells of the mononuclear phagocyte system in hereditary cerebral hemorrhage with amyloidosis (Dutch) and Alzheimer disease.

Arterial and arteriolar amyloid-beta (A beta) deposition in hereditary cerebral hemorrhage with amyloidosis (Dutch) (HCHWA-D) and Alzheimer disease (AD) cerebral amyloid angiopathy (CAA) were studied as to morphology, extent, and association with mononuclear phagocyte system (MPS) cells using A beta, a-smooth muscle actin, and monocyte/macrophage marker (HLA-DR, CD68, CD11c, CD45) immunohistochemistry. The HCHWA-D/AD arterial/arteriolar media showed compact A beta deposits, first appearing at the media/adventitia junction, and concomitant smooth muscle loss. Only HCHWA-D CAA featured (a) severe involvement of larger arteries and (b) arterioles showing a single or double ring of radial A beta surrounding compact A beta. Radial A beta appeared to develop at the media/adventitia junction. Monocyte/macrophage marker-positive foci/cells co-localized with HCHWA-D arterial A beta. Focal HLA-DR/CD11c positivity was observed at the media/adventitia junction of AD/HCHWA-D arteries in the absence of local A beta, but not in controls. Monocyte/macrophage marker positivity co-localizing with radial A beta appeared continuous with perivascular cells and microglia clustering perivascularly. These results suggest that (a) MPS cells are topographically associated with HCHWA-D arterial A beta and radial arteriolar A beta, and (b) HLA-DR/CD11c immunoreactivity may appear at the media/adventitia junction prior to A beta. The latter finding and the assumed formation of radial A beta at the media/adventitia junction may relate to involvement of the abluminal basement membrane in CAA pathogenesis. The role of MPS cells in this process remains to be established.

Adult↗

The quest for migraine genes.

Research into the genetics of migraine remains difficult because of the involvement of polygenetic and environmental factors. The discovery of the gene for familial hemiplegic migraine on chromosome 19p 13 is an important step forward. This brain specific P/Q-type calcium channel alpha 1-subunit gene opens new avenues for studying the genetics of migraine, the pathophysiology of the onset of migraine attacks and the development of novel specific prophylactic drugs.

Family Health↗

Partial cosegregation of familial hemiplegic migraine and a benign familial infantile epileptic syndrome.

PURPOSE: We studied a large Dutch-Canadian family, in which two very rare hereditary paroxysmal neurologic disorders, familial hemiplegic migraine (FHM) and a "benign familial infantile epileptic syndrome" concur and partially cosegregate. FHM is a dominantly inherited subtype of migraine with attacks of hemiparesis, linked to chromosome 19p13 in 50% of the families tested. Recently mutations in a brain-specific P/Q-type Ca2+ channel alpha1 subunit gene (CACNL1A4) were identified in families with chromosome 19-linked FHM. The infantile epileptic syndrome resembles to two other dominantly inherited benign epilepsies occurring in the first year of life, benign familial neonatal convulsions (BFNC), assigned to chromosomes 20q13.2 and 8q, and benign infantile familial convulsions (BIFC), as yet unlinked. METHODS: Linkage analysis was performed for the known locations of FHM and BFNC. The question whether the two conditions in this family can be caused by a single gene defect was addressed by additional linkage analysis. RESULTS: We excluded linkage of the infantile convulsions to markers on chromosome 20q13.2, 8q, or 19p13. This indicates the existence of a third locus for benign familial convulsions in the first year of life. Linkage of FHM to these markers was not formally excluded but seems very unlikely. Statistical analysis of whether, in this family, both conditions are caused by a single gene defect was inconclusive. CONCLUSIONS: We describe a "benign familial infantile epileptic syndrome" with attacks of FHM at a later age. Further genetic studies in this family may help to unravel the genetic basis of epilepsy or migraine or both.

Age of Onset↗

[Gait impairment in the oldest old].

To evaluate senile gait patterns in octogenarians and nonagenarians, we provided a standardized questionnaire on gait disabilities to 153 elderly subjects over 88 years of age. Subjects represented a relatively healthy subgroup of non-institutionalized residents who participated in a gerontological survey of all inhabitants of the city of Leiden who were 85 years or older. Of the 142 subjects who responded to this questionnaire, 87 persons (61%) claimed distinct diseases as a cause of gait impairment. Of the remaining 55 persons, 42 received a standardized gait assessment. Gait was classified as completely normal in 25 persons (18% of all responders), whereas in three other persons gait could not reliably be classified as either normal or abnormal. A wide spectrum of clear gait abnormalities-mainly with ataxic features-was encountered in the remaining 14 persons (10%). It is concluded that some elderly subjects have a mainly ataxic gait disturbance which seems unrelated to the presence of distinct diseases. Although additional investigations might still reveal underlying pathology in these subjects, their gait impairment may represent the "idiopathic senile gait disorder'. In addition, a relatively high number of very old community residents have a completely normal gait.

Aged↗

Familial hemiplegic migraine and episodic ataxia type-2 are caused by mutations in the Ca2+ channel gene CACNL1A4.

Genes for familial hemiplegic migraine (FHM) and episodic ataxia type-2 (EA-2) have been mapped to chromosome 19p13. We characterized a brain-specific P/Q-type Ca2+ channel alpha1-subunit gene, CACNL1A4, covering 300 kb with 47 exons. Sequencing of all exons and their surroundings revealed polymorphic variations, including a (CA)n-repeat (D19S1150), a (CAG)n-repeat in the 3'-UTR, and different types of deleterious mutations in FHM and EA-2. In FHM, we found four different missense mutations in conserved functional domains. One mutation has occurred on two different haplotypes in unrelated FHM families. In EA-2, we found two mutations disrupting the reading frame. Thus, FHM and EA-2 can be considered as allelic channelopathies. A similar etiology may be involved in common types of migraine.

Base Sequence↗

White matter lesions and cognitive deterioration in presymptomatic carriers of the amyloid precursor protein gene codon 693 mutation.

OBJECTIVE: To determine early manifestations of hereditary cerebral hemorrhage with amyloidosis (Dutch). DESIGN: Survey. SETTING: Neurologic outpatient department of the University Hospital Leiden in the Netherlands. PARTICIPANTS: Ten presymptomatic carriers of the amyloid precursor protein gene codon 693 mutation. MAIN OUTCOME MEASUREMENTS: Extensive neuropsychological examination and cerebral magnetic resonance imaging. RESULTS: Six subjects older than 40 years showed white matter hyperintensities on magnetic resonance imaging. Three of these six individuals had signs of cognitive deterioration. The four younger subjects (age, < 31 years) showed no abnormalities on magnetic resonance imaging or on neuropsychological examination. CONCLUSIONS: We suggest that white matter hyperintensities in hereditary cerebral hemorrhage with amyloidosis (Dutch) are probably caused by chronic ischemia due to stenosis of the meningocortical arterioles, which becomes visible on magnetic resonance imaging scans in individuals who are between the ages of 30 and 40 years. The finding of cognitive deterioration in three of 10 presymptomatic mutation carriers supports the finding that in hereditary cerebral hemorrhage with amyloidosis (Dutch), deterioration can occur without stroke. A direct relation between cognitive deterioration and white matter hyperintensities is unlikely, because only half of the individuals with white matter hyperintensities showed signs of deterioration.

Adult↗

Bilateral brachial plexus neuritis following parvovirus B19 and cytomegalovirus infection.

A man, 23 years of age, had a typical erythema infectiosum, complicated by a severe bilateral brachial plexus neuritis. Motor function recovered slowly and only partially after 6 months. An infection by human parvovirus B19 was demonstrated, with strongly positive and gradually declining IgM antibodies and viral DNA detectable in serum for more than 3 months. There was also clear evidence of a recent infection by cytomegalovirus. The interaction between these two viruses could be responsible for this rare and severe complication of common infections in this patient.

Adult↗

Familial hemiplegic migraine: a clinical comparison of families linked and unlinked to chromosome 19.DMG RG.

We compared the clinical characteristics of 46 patients from three unrelated families with familial hemiplegic migraine (FHM) linked to chromosome 19, with those of 20 patients from two families with FHM not linked to chromosome 19. We found no significant differences for age at onset, frequency and duration of attacks, duration of the paresis, and occurrence of basilar migraine symptoms. In the linked families, significantly more patients reported unconsciousness during attacks (39% vs 15%; p < 0.05) and provocation of attacks by mild head trauma (70% vs 40%; p < 0.05). In one linked family patients also displayed chronic progressive cerebellar ataxia, whereas in one unlinked family benign infantile convulsions occurred in addition to FHM. Interestingly, so far an association with cerebellar ataxia was only described in chromosome 19-linked families. FHM linked to chromosome 19 and FHM unlinked to chromosome 19 do not differ with respect to clinical features.

Adolescent↗

Hereditary cerebral hemorrhage with amyloidosis-Dutch type: better correlation of cognitive deterioration with advancing age than with number of focal lesions or white matter hyperintensities.

The relationship between cognitive deterioration and abnormalities detected by magnetic resonance imaging (MRI) was investigated to determine the radiological correlates of cognitive deterioration in hereditary cerebral hemorrhage with amyloidosis-Dutch type (HCHWA-D). Twenty HCHWA-D subjects (12 patients who had suffered one or more strokes and eight who had not suffered a stroke) were studied with MRI and underwent extensive neuropsychological examination. On MRI the number of focal lesions was counted, and white matter hyperintensities (WMHs) were scored semiquantitatively. A significant correlation between cognitive deterioration and WMH score and number of focal lesions was found. However, cognitive deterioration, WMH score, and the number of focal lesions all increase with age, and therefore their mutual correlation can be explained as an age effect. This study shows that cognitive deterioration in HCHWA-D is not correlated with abnormalities detected by MRI (number of focal lesions and subcortical WMHs) independently of age. Although a contribution of white matter changes and/or focal lesions, possibly in combination with age, to cognitive deterioration cannot be excluded. Cognitive deterioration in these HCHWA-D patients is probably primarily the result of chronic damage of amyloid angiopathy to the brain, to which may be superimposed cognitive impairment from focal cerebral hemorrhage or infarction.

Adult↗

Potential for imaging cerebral amyloid deposits using 123I-labelled serum amyloid P component and SPET.

The systemic and cerebral accumulation of 123I-labelled serum amyloid P component (123I-SAP) was studied in patients with hereditary cerebral amyloid angiopathy-Dutch type (HCHWA-D) to determine the usefulness of 123I-SAP imaging in cerebral amyloidosis. Whole-body and SPET scintigraphic imaging was performed in two patients with HCHWA-D and four controls after the intraveous injection of 123I-SAP. Venous 123I-SAP clearance was also determined. Accumulation of the tracer was observed in the cerebral cortex of both patients, whereas no accumulation was seen in the controls. Blood clearance of radioactivity was similar in the patients and controls, suggesting that the amount of uptake of 123I-SAP in the cerebral amyloid deposits is relatively small. We believe this to be the first demonstration of cerebral amyloid deposits in vivo. Our findings indicate that 123I-SAP scintigraphy has possibilities for the diagnosis of patients with cerebral amyloid diseases, in addition to its use in patients with systemic amyloid deposition.

Brain↗

Hereditary cerebral hemorrhage with amyloidosis-Dutch type (HCHWA-D): I--A review of clinical, radiologic and genetic aspects.

Hereditary cerebral hemorrhage with amyloidosis-Dutch type (HCHWA-D) is an autosomal dominant disease caused by deposition of beta-amyloid in the leptomeningeal arteries and cortical arterioles, in addition to preamyloid deposits and amyloid plaques in the brain parenchyma. The disease is due to a point mutation at codon 693 of the amyloid precursor protein (beta PP) gene at chromosome 21. Since this point mutation is diagnostic for HCHWA-D, presymptomatic testing is feasible and offered, together with genetic counselling and psychological support, to subjects at risk. HCHWA-D is clinically characterized by recurrent strokes, in addition to dementia, which can occur after the first stroke but also preceding it. Radiological studies revealed focal lesions (hemorrhages, hemorrhagic and non-hemorrhagic infarctions) and diffuse white matter damage. Diffuse white matter hyperintensities on MRI are an early symptom of HCHWA-D since they have been found on MRI scans of subjects who had not suffered a stroke. The presence of the diagnostic point mutation makes HCHWA-D a useful model to study the effects of cerebral amyloid angiopathy in vivo. The characteristic pathological abnormalities and its implications for Alzheimer's disease will be discussed in Part II of this article.

Amyloid beta-Protein Precursor↗

Hereditary cerebral hemorrhage with amyloidosis-Dutch type (HCHWA-D): II--A review of histopathological aspects.

Cerebral amyloid-beta (A beta) angiopathy is the histopathological hallmark of hereditary cerebral hemorrhage with amyloidosis (Dutch) (HCHWA-D). A beta deposits are found mainly in the cerebral and cerebellar meningocortical blood vessels and as plaques throughout the cerebrocortical gray matter. A beta deposition in arteries and arterioles starts at the junction of media and adventitia and proceeds to involve the media causing degeneration of the vascular smooth muscle cells. Cerebrocortical arterioles often show one or two layers of radial A beta around a layer of homogenous A beta that replaces the media. Degenerating neurites, reactive astrocytes and microglial cells may surround cerebrocortical angiopathic arterioles and capillaries, probably in reaction to invasion of the perivascular neuropil by A beta fibrils. Furthermore, clusters of coarse extracellular matrix deposits may be found near A beta-laden cerebrocortical arterioles. The amyloid-associated proteins, cystatin C, and beta PP colocalize diffusely with Dutch vascular A beta, whereas HLA-DR immunoreactivity is found only in the periphery of the diseased vessel wall. The latter phenomenon may be related to the presence of perivascular cells. Angiopathic blood vessels frequently show structural changes. The relation of the described pathology to the development of hemorrhage, infarction and leukoencephalopathy needs further elucidation.

Amyloid beta-Peptides↗

A 3-Mb region for the familial hemiplegic migraine locus on 19p13.1-p13.2: exclusion of PRKCSH as a candidate gene. Dutch Migraine Genetic Research Group.

Familial hemiplegic migraine (FHM) is an autosomal domianant subtype of migraine with attacks, associated with transient episodes of hemiparesis. One of the genes for FHM has been assigned to chromosome 19p13. Detailed analysis of critical recombinants from two different chromosome 19-linked FHM families, using new markers indicated a 6-cM candidate region on 19p13.1-p13.2 flanked by loci D19S394 and D19S226. Another paroxysmal neurological disorder, episodic ataxia type 2 (EA-2), has also been linked to the same chromosomal region. Most of the interval was completely covered by YAC and cosmid contigs; the physical map yielded approximately 3 Mb encompassing several genes including the protein kinase substrate 80K-H (PRKCSH) gene. Since PRKCSH is involved in neuronal signal transduction, it was considered to be an FHM candidate gene. The genomic structure of this gene was established and mutation analysis for all exon and flanking intron sequences was performed in FHM- and EA-2-affected individuals. Five polymorphisms were identified, including a trinucleotide repeat length variation in the coding sequence. However, no potential disease causing mutation was found and therefore the PRKCSH gene can be excluded for both FHM and EA-2.

Base Sequence↗