Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “NEUROFIBROMATOSIS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,261 records · Page 70Linked to original sources

Germ-line mutations in the neurofibromatosis 2 gene: correlations with disease severity and retinal abnormalities.

Neurofibromatosis 2 (NF2) features bilateral vestibular schwannomas, other benign neural tumors, and cataracts. Patients in some families develop many tumors at an early age and have rapid clinical progression, whereas in other families, patients may not have symptoms until much later and vestibular schwannomas may be the only tumors. The NF2 gene has been cloned from chromosome 22q; most identified germ-line mutations result in a truncated protein and severe NF2. To look for additional mutations and clinical correlations, we used SSCP analysis to screen DNA from 32 unrelated patients. We identified 20 different mutations in 21 patients (66%): 10 nonsense mutations, 2 frameshifts, 7 splice-site mutations, and 1 large in-frame deletion. Clinical information on 47 patients from the 21 families included ages at onset and at diagnosis, numbers of meningiomas, spinal and skin tumors, and presence of cataracts and retinal abnormalities. We compared clinical findings in patients with nonsense or frameshift mutations to those with splice-site mutations. When each patient was considered as an independent random event, the two groups differed (P < or = .05) for nearly every variable. Patients with nonsense or frameshift mutations were younger at onset and at diagnosis and had a higher frequency and mean number of tumors, supporting the correlation between nonsense and frameshift mutations and severe NF2. When each family was considered as an independent random event, statistically significant differences between the two groups were observed only for mean ages at onset and at diagnosis. A larger data set is needed to resolve these discrepancies. We observed retinal hamartomas and/or epiretinal membranes in nine patients from five families with four different nonsense mutations. This finding, which may represent a new genotype-phenotype correlation, merits further study.

Adolescent↗

Type of mutation in the neurofibromatosis type 2 gene (NF2) frequently determines severity of disease.

The gene predisposing to neurofibromatosis type 2 (NF2) on human chromosome 22 has revealed a wide variety of different mutations in NF2 individuals. These patients display a marked variability in clinical presentation, ranging from very severe disease with numerous tumors at a young age to a relatively mild condition much later in life. To investigate whether this phenotypic heterogeneity is determined by the type of mutation in NF2, we have collected clinical information on 111 NF2 cases from 73 different families on whom we have performed mutation screening in this gene. Sixty-seven individuals (56.2%) from 41 of these kindreds revealed 36 different putative disease-causing mutations. These include 26 proposed protein-truncating alterations (frameshift deletions/insertions and nonsense mutations), 6 splice-site mutations, 2 missense mutations, 1 base substitution in the 3' UTR of the NF2 cDNA, and a single 3-bp in-frame insertion. Seventeen of these mutations are novel, whereas the remaining 19 have been described previously in other NF2 individuals or sporadic tumors. When individuals harboring protein-truncating mutations are compared with cases with single codon alterations, a significant correlation (P < .001) with clinical outcome is observed. Twenty-four of 28 patients with mutations that cause premature truncation of the NF2 protein, schwannomin, present with severe phenotypes. In contrast, all 16 cases from three families with mutations that affect only a single amino acid have mild NF2. These data provide conclusive evidence that a phenotype/genotype correlation exists for certain NF2 mutations.

Adolescent↗

Expression of neurofibromatosis 2 transcript and gene product during mouse fetal development.

Neurofibromatosis 2 (NF2) is an autosomal dominant inherited disorder that predisposes to benign tumors of the nervous system as well as a variety of ocular abnormalities. In contrast to NF1, NF2 is associated with only minor developmental abnormalities. The human NF2 gene encodes a tumor suppressor protein, termed schwannomin or merlin, which is a member of a superfamily of proteins thought to link cytoskeletal elements to cell membrane components. To determine the pattern of NF2 gene expression in mouse embryos, we sequenced the mouse NF2 gene and used in situ hybridization and antischwannomin antibodies to determine the developmental expression of the NF2 gene. Schwannomin was detected in most differentiated tissues but was undetectable in undifferentiated tissues. In particular, schwannomin was not detectable in mitotic neuroepithelial cells, the perichondrium, the liver, the neocortex, and the ventricular zone of the developing cerebral cortex. In the heart, expression was observed in all developmental stages beginning on embryonic day 8. In the eye, which shows developmental abnormalities in NF2 patients, expression was detected in the cells of the lens and in the pigment epithelium but weakly detected in retinal neurons. The most striking example of tightly regulated NF2 expression was observed in cells migrating from the ventricular zone to the cortical plate on embryonic days 15 and 16. Only cells in the intermediate zone expressed schwannomin, indicating that schwannomin may play an important role in cellular migration.

Amino Acid Sequence↗

Patterns of hematopoietic lineage involvement in children with neurofibromatosis type 1 and malignant myeloid disorders.

Children with neurofibromatosis type 1 (NF1) are at increased risk of developing malignant myeloid disorders, particularly juvenile chronic myelogenous leukemia/juvenile myelomonocytic leukemia (JCML/JMML). We investigated bone marrows from 11 such patients (8 boys and 3 girls) and detected allelic losses at the NF1 locus in 4 of them and probable losses in 2 others. To determine which hematopoietic cell lineages were derived from the abnormal clones, Epstein-Barr virus (EBV)-transformed cell lines and CD34+ cells were analyzed from 3 children with JCML with allelic losses in unfractionated marrow. CD34 cells from these 3 patients lacked the normal NF1 allele, whereas EBV cell lines retained it. Erythroblasts plucked from the burst-forming unit-erythroid colonies of one of these children lacked the normal NF1 allele. We also studied a 10-month-old boy with NF1 who developed an unusual myeloproliferative syndrome. His bone marrow and EBV cell line both showed loss of the normal NF1 allele. In our series and in the literature, male sex and maternal transmission of NF1 were associated with the highest risk of myeloid leukemia. These data (1) provide strong genetic evidence that NF1 functions as a tumor-suppressor in early myelopoiesis, (2) confirm the clonal nature of JCML/JMML, (3) suggest that the elevation in fetal hemoglobin seen in JCML/JMML is a result of primary involvement of erythroid progenitors in the malignant clone, (4) show consistent loss of NF1 in the CD34 cells of affected children and show that the malignant clone may also give rise to pre-B cells in some cases, and (5) implicate epigenetic factors in the development of leukemia in children with NF1.

Acute Disease↗

Visual function in neurofibromatosis.

OBJECTIVES: To evaluate the visual function in patients with neurofibromatosis (NF) and to study the etiology and incidence of visual dysfunction associated with NF. PATIENTS AND METHODS: A total of 75 patient with diagnostic criteria for NF were evaluated. Neuro-ophthalmological examination as well as electrophysiological and imaging studies were performed. Special attention was given to the presence of visual dysfunction and to its correlation with the ophthalmic changes that were found. RESULTS: Ocular findings were present in 42 (56%) patients. Visual dysfunction was identified in only 11 (14.7%) patients. Visual acuity decrease was the most prevalent change, being present in eight (72.7%) of patients with visual dysfunction. Nystagmus, strabismus, visual field defects, and color vision defects were also detected. Therapy is also reviewed. The prognosis of the 11 patients with visual dysfunction was unfavorable, and is discussed. CONCLUSION: The prevalence of NF and ophthalmological findings related to it make the problem of visual dysfunction in NF a serious one, deserving of the attention of all ophthalmologists. Clinical examination, associated with complementary diagnostic techniques (mainly imaging studies), allows NF's identification, definition, and therapy. The high prevalence of asymptomatic ocular findings in NF (73.8%) highlights the role of imaging techniques in its evaluation.

Adolescent↗

Tumour suppressor genes, immunology and local manifestations of neurofibromatosis phenotypes.

Research on Neurofibromatosis (NF) has been directed at understanding what determines disease quiescence, exacerbation, and the possible malignant evolution. Studies on NF have examined the role of genetic oncosuppression in the evolution of the defence against the non-self. Paraffin fixed specimens of benign and malignant neoplasia, occurring in patients with NF1 and NF2, were tested for the presence of p53: a reliable marker of genetic oncosupression. The wild type variant of p53 is expressed in malignant neoplasia, and is usually not expressed in benign tumors. Contrariwise, an immune reaction it is seen in benign tumors and is practically absent in malignant tumors. Evidence of protein p53 in the various malignant neoplasias studied by our group seems to reflect the up-regulation on the oncosuppresive genetic potential that occurs while there is a lack of immunological defence. In the presence of an immunological defence, the expression p53 is normally not seen e.g. plexiform neurofibromas. The evolution of the various neoplastic types here reported was the same as that reported by current clinical and experimental models: the cell's defective genes are no longer suppressed and after activation the genes undergo initiation, promotion, and the cell sustains inflammatory-immune reactions that lead to fibrosis; what follows is a variable period of apparent quiescence. Severe pathogenic stimuli may act on predisposed cells and deteriorate pre-existing genetic damage, casting the cell into a phase of dysplastic or neoplastic proliferation that overcomes the body's defences. Hope for future therapy lies in the development of drugs that can either mimic the immune system or the proteins encoded by the oncosuppressor genes.

Adolescent↗

Monosomy 7 myelodysplastic syndrome and other second malignant neoplasms in children with neurofibromatosis type 1.

BACKGROUND: Children with neurofibromatosis type 1 (NF1) are at increased risk of developing benign and malignant solid tumors as well as hematologic malignancies, including de novo juvenile chronic myelogenous leukemia, monosomy 7 syndrome, and acute myelogenous leukemia. The normal NF1 allele is frequently deleted in the bone marrow cells from NF1 patients with hematologic malignancies, suggesting a pathogenic role in primary leukemogenesis. The authors report monosomy 7 myelodysplastic syndrome (MDS) as a second malignant neoplasm (SMN) in five children with sporadic NF1, the results of molecular analysis for NF1 and ras alterations in their bone marrow, and summarize their experience with SMNs in pediatric patients with NF1. METHODS: Monosomy 7 MDS was diagnosed as an SMN in five children with NF1 by morphologic and cytogenetic studies of bone marrow specimens. DNA extracted from these malignant bone marrows was analyzed for allelic loss at the NF1 locus and for the presence of ras mutations. The Children's Hospital of Philadelphia (CHOP) Tumor Registry was also reviewed to estimate the incidence of SMNs in pediatric NF1 patients. RESULTS: Bone marrow specimens from four patients retained constitutional heterozygosity at the NF1 locus; one specimen was uninformative. There was no evidence of activating ras mutations. The risk of an SMN was approximately 11% among the 64 NF1 registrants with primary malignancies in the CHOP registry, but was 75% (6 of 8) among patients treated for a pediatric embryonal cancer. CONCLUSIONS: Children with NF1 are susceptible to the development of malignant myeloid disorders both as a primary event and as an SMN. Additional molecular genetic analysis is necessary to determine if the NF1 gene is inactivated by somatic mutation in these secondary leukemias.

Blotting, Southern↗

[Neurofibromatosis type 2 (NF2)].

Neurofibromatosis type 2 (NF2) is an autosomal dominantly inherited disorder, strongly associated with development of benign intracranial tumors, including bilateral vestibular schwannomas and meningiomas. The NF2 gene located on the human chromosome 22q12 was recently cloned, and the protein it encodes (termed merlin/schwannomin) was found to be strikingly similar to the moesin-ezrin-radixin (MER) family of cytoskeleton-associated proteins. Mutations of NF2 gene have been found not only in the NF2 patient but also in NF2-related sporadic tumors such as acoustic schwannomas and meningiomas, suggesting that the NF2 gene functionally acts as a tumor suppressor gene. To elucidate the biological function of merlin, we have detected five merlin binding cellular proteins. The N-terminal region of merlin, the entire merlin-ezrin-radixin-moesin (MERM) homology domain, was found to be essential for binding to all five proteins. Since most reported NF2 mutations in the region were determined to be necessary for binding, the mutations probably impair binding. The majority of NF2 mutations are nonsense mutations or frameshifts that resulted in premature termination of merlin. The lack of these interactions caused by such mutations of NF2 gene may affect the cellular signals, resulting in benign intracranial tumors in NF2 patients.

Chromosomes, Human, Pair 22↗

CD44 expression is aberrant in benign Schwann cell tumors possessing mutations in the neurofibromatosis type 2, but not type 1, gene.

Atypical expression of CD44 splice variants has been implicated in the progression of numerous tumors. This abnormal CD44 expression is presumed to result from gene alterations that cause tumorigenic transformation. Two tumor types that have been linked to specific gene alterations are schwannomas, which have mutations in the neurofibromatosis (NF) type 2 (NF2) gene, and neurofibromas, which characteristically possess NF type 1 (NF1) gene mutations. We examined CD44 expression in normal sciatic nerves, in schwannomas with confirmed NF2 mutations, and in neurofibromas and malignant peripheral nerve sheath tumor tissue and cell lines from NF1 patients. Compared to normal nerves, schwannomas express higher total levels of CD44 and additional splice variants, whereas CD44 expression in neurofibromas is unaltered. Malignant peripheral nerve sheath tumor tissue and cell lines express the CD44v6 epitope, which is not expressed by normal Schwann cells or by other Schwann cell tumors. These data indicate that altered CD44 expression correlates strictly with mutations in the NF2 but not NF1 gene and suggest that CD44v6 might be a marker for the malignant transformation of Schwann cells.

Alternative Splicing↗

Neurofibromatosis types I and II: radiological appearance.

The neurocutaneous disorders frequently involve the central nervous system. This, the first in a pair of articles which describe and illustrate the radiological appearances of the central nervous system manifestations of the most common neurocutaneous disorders, looks at neurofibromatosis types I and II.

Adolescent↗

Occult neurofibroma and increased S100 protein in the skin of patients with neurofibromatosis type 1: new insight to the etiopathomechanism of neurofibromas.

BACKGROUND: Neurofibromas represent proliferation of the connective tissue cells of peripheral nerves and deposition of collagenous extracellular matrix. There is evidence that the appearance and growth of neurofibromas may be associated with prior or ongoing mechanical trauma in patients with neurofibromatosis type 1 (NF1). OBJECTIVE: To study the histologic characteristics of apparently healthy skin of patients with NF1. DESIGN: The histologic features of healthy-looking skin of patients with NF1 were analyzed. SETTING: University hospital. PATIENTS: Ten patients who fulfilled the criteria for NF1. INTERVENTIONS: Punch biopsy specimens of healthy-looking skin of the forearm from 9 volunteer patients and of the upper eyelid during cosmetic operation from 1 volunteer patient were obtained. MAIN OUTCOME MEASURES: The main outcomes were not predicted, and the hypothesis was formulated during data collection. RESULTS: Apparently unaffected skin of 5 patients with NF1 was studied by routine histologic testing with respect to expression of S100 protein. Unexpectedly, analysis of the samples revealed the presence of a small neurofibroma tumor in one of the samples. The tumor was located in deep dermis around a hair follicle. In addition, neurofibromatous tissue not large enough to be called a tumor was found on the same anatomical location in another patient. In further studies, 10 punch biopsy specimens of apparently healthy skin from patients with NF1 were similarly sectioned and analyzed. No tumors were found in these additional samples. In 4 patients, however, abundant S100 protein-positive cells were located within collagenous extracellular matrix surrounding hair follicles. CONCLUSIONS: The skin of patients with NF1 might be more widely affected than previously thought and occult neurofibromas are not rare.

Eyelid Neoplasms↗

Prevalence of neurofibromatosis 1 in German children at elementary school enrollment.

OBJECTIVE: To determine the prevalence of neurofibromatosis 1 (NF1) among 6-year-old children in Germany. SETTING AND PATIENTS: A total of 152819 children aged 6 years in 6 German states were screened for NF1 during routine medical examinations at elementary school enrollment in cooperation with local health departments in 2000 and 2001. MAIN OUTCOME MEASURE: The prevalence of NF1 among 6-year-old German children was estimated to be 1:2996 (95% confidence interval, 1:2260 to 1:3984). RESULTS: Fifty-one NF1 cases were identified and confirmed by evaluation by appropriate medical specialists. Seven other children were found to have multiple cafe au lait spots without other apparent features of NF1. A minimum estimate of the crude prevalence was 3.0 per 10 000 (95% confidence interval, 2.3-4.0 per 10 000 population). The incidence of NF1 in this population was probably in the range of 30 to 38 cases per 100 000 live births. CONCLUSION: Our study obtained a nearly unbiased birth incidence of NF1 of approximately 1 in 2600 to 1 in 3000 and demonstrates that NF1 can be diagnosed by age 6 years in most cases by routine physical examination with special attention to the disease-associated skin stigmata.

Cafe-au-Lait Spots↗

The value of visual evoked potential as a screening test in neurofibromatosis.

Pattern reversal visual evoked potential (VEP) test was performed in 30 asymptomatic patients with neurofibromatosis (NF). All patients had normal visual acuity, visual fields, and ophthalmoscopic examination results. Pattern reversal VEP was abnormal in eight patients (26%). Seven of these patients had computed tomographic scans with reformated orbital views. Orbital computed tomographic scans were abnormal in six patients and in each case showed enlargement of the optic nerve on the side of VEP abnormality. Our data indicate that pattern reversal VEP is a valuable screening test in asymptomatic patients with NF. Because of the high incidence of VEP abnormality in such patients, VEP abnormality must be interpreted cautiously when a patient with NF is suspected of having other diseases or disorders that potentially affect the visual pathways.

Adolescent↗

Significance of planum temporale and planum parietale morphologic features in neurofibromatosis type 1.

BACKGROUND: Neurofibromatosis type 1 (NF-1) is associated with learning disabilities and cognitive impairment in childhood and adolescence. Individuals with NF-1 have a propensity for brain hyperintensities on T2-weighted magnetic resonance images, macrocephaly, and optic gliomas. Few clear relationships between these central nervous system abnormalities and cognitive function, however, have been found in this population. OBJECTIVES: To determine whether planum temporale (PT) and planum parietale (PP) morphologic features are associated with learning disabilities in NF-1. PATIENTS AND METHODS: We measured and compared the surface area, gray matter volume, and asymmetry of the PT and PP on T1-weighted MRIs from 24 children and adolescents with NF-1 and an equal number of controls. Relationships between these measurements and cognitive and academic achievement scores were examined. RESULTS: The left PT in boys with NF-1 was significantly smaller in both surface area and gray matter volume compared with girls with NF-1 and controls. Boys with NF-1 also showed greater symmetry between the left and right hemispheres in this region compared with girls with NF-1 and controls, who showed a pattern of left greater than right asymmetry of the PT. Intelligence-based discrepancy scores of reading and math achievement, which are commonly used to define learning disabilities, were significantly related to PT asymmetry in the NF-1 group as a whole. Less leftward asymmetry of the PT was associated with poorer reading and math achievement in relation to intellectual test scores. CONCLUSIONS: The high susceptibility of individuals with NF-1 to develop reading and other learning disabilities seems to be related to the development of the sylvian fissure. These results provide further support for the hypothesized association between sylvian fissure morphologic features and learning disabilities.

Adolescent↗

Brain morphometry, T2-weighted hyperintensities, and IQ in children with neurofibromatosis type 1.

BACKGROUND: Larger gray matter (GM) volume in healthy children is correlated with higher IQ. Children with neurofibromatosis type 1 (NF1) have larger brains, their magnetic resonance images frequently show T2-weighted hyperintensities, and their IQs are lower. OBJECTIVES: To confirm the hypotheses that (1) children with NF1 have larger GM and white matter volumes, (2) the greatest volume differences are in the frontal and parietal regions and in children with NF1 with hyperintensities, and (3) GM volume is inversely related to IQ in children with NF1. DESIGN: Wechsler Intelligence Scale for Children-Third Edition IQ testing and measurement of cerebral volumes and hyperintensities in brain magnetic resonance images were performed on 36 children with NF1 and on 36 matched relatives who served as control subjects. RESULTS: Gray matter and white matter volumes were significantly larger in children with NF1. The greatest difference was observed in cerebral white matter volume, predominantly in the frontal lobes, whereas the greatest difference in GM volume was in the temporal, parietal, and occipital regions. In controls, IQ was significantly related to GM volume, but in children with NF1, IQ was not inversely associated with GM volume, although IQs of children with NF1 were significantly lower. CONCLUSIONS: Children with NF1 do not have the normal relationship between GM volume and IQ. Larger GM volume in the posterior brain regions and larger white matter volumes in the frontal brain regions contribute to the larger brain volume in children with NF1.

Brain↗

Optic nerve sheath meningiomas in patients with neurofibromatosis type 2.

OBJECTIVE: To determine the prevalence of optic nerve sheath meningiomas (ONSMs) in patients with neurofibromatosis type 2 (NF2). METHODS: An observational retrospective case series of 30 consecutive patients with NF2 referred to an academic ophthalmology unit from November 1, 1991, through August 31, 2003. Twenty-six patients were followed up for a mean of 93 months (range, 3-150 months). One individual was lost to follow-up, and 3 had been referred recently. Diagnosis of ONSM was made based on typical neuroradiologic and clinical features in 7 patients and on histologic criteria in 1. RESULTS: Eight of 30 patients harbored unilateral (n = 6) or bilateral (n = 2) ONSMs. Six ONSMs were diagnosed at initial examination, and 4 during follow-up. CONCLUSIONS: There is a strong association between ONSMs and NF2 that parallels the well-known association of optic nerve gliomas with NF1. Physicians should be aware of the possibility that patients with ONSMs may also have NF2.

Adolescent↗

Iris nodules in von Recklinghausen's Neurofibromatosis. Electron microscopic confirmation of their melanocytic origin.

A 75-year-old man had generalized neurofibromatosis (NFT) with bilateral iris nodules and a mature cataract with elevated intraocular pressure in his left eye. At the time of intracapsular cataract extraction, a sector iridectomy was performed. Electron microscopic studies of the iris nodules within the iridectomy specimen unequivocally established that the spindle-shaped cells within the nodules were of melanocytic origin. We believe that the iris nodules in NFT represent melanocytic hamartomas.

Aged↗

Ovoid bodies in choroidal neurofibromatosis.

We studied the ultrastructure of the ovoid bodies in choroidal neurofibromatosis. Ovoid bodies consisted of groups of the same kind of elongated cells arranged in lamellar patterns. The elongated cell was characterized by a fragmented circumferential basal lamina, groups of pinocytotic vesicles, a desmosomelike intercellular contact, and intimate contact with axons. These findings suggest that elongated cells are proliferated Schwann's cells and ovoid bodies do not correspond with real sensory nerve end organs; rather, they are enlarged peripheral nerves due to neoplastic hyperplasia of Schwann's cells around axons.

Choroid↗