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[Graves' disease and hyperprolactinemia in a patient with Noonan syndrome neurofibromatosis type 1].

We report the case of a 42-Year-old woman with Recklinghausen disease (neurofibromatosis type 1) and Noonan syndrome who developed Graves' disease. Hyperthyroidism, which had existed for two Years without treatment, led to the discovery of neurofibromatosis type 1. The diagnosis of Graves' disease was confirmed by blood hormone levels, thyroid gland ultrasound, radioisotope scan and thyroid iodine uptake. Additional tests were carried out due to the patient's short stature and the presence of subcutaneous nodules. Hyperprolactinemia, bone defects (bone density testing), and abnormal MRI signals from the optic chiasma were disclosed. The diagnosis of Recklinghausen disease was proven histologically. The possible co-existence of neurofibromatosis type 1 and Noonan syndrome are discussed on the basis of this clinical case.

Adult↗

Region-specific astrogliosis in brains of mice heterozygous for mutations in the neurofibromatosis type 1 (Nf1) tumor suppressor.

Brains from human neurofibromatosis type 1 (NF1) patients show increased expression of glial fibrillary acidic protein (GFAP), consistent with activation of astrocytes (M.L. Nordlund, T.A. Rizvi, C.I. Brannan, N. Ratner, Neurofibromin expression and astrogliosis in neurofibromatosis (type 1) brains, J. Neuropathol. Exp. Neurology 54 (1995) 588-600). We analyzed brains from transgenic mice in which the Nf1 gene was targeted by homologous recombination. We show here that, in all heterozygous mice analyzed, there are increased numbers of astrocytes expressing high levels of GFAP in medial regions of the periaqueductal gray and in the nucleus accumbens. More subtle, but significant, changes in the number of GFAP positive astrocytes were observed in the hippocampus in 60% of mutant mice analyzed. Astrocytes with elevated GFAP were present at 1 month, 2 months, 6 months and 12 months after birth. Most brain regions, including the cerebellum, basal ganglia, cerebral cortex, hypothalamus, thalamus, cortical amygdaloid area, and white matter tracts did not show any gliotic changes. No evidence of degenerating neurons was found using de Olmos' cupric silver stain. We conclude that Nf1/nf1 mice provide a model to study astrogliosis associated with neurofibromatosis type 1.

Animals↗

Skeletal overgrowth with modelling error in neurofibromatosis.

Ten cases of neurofibromatosis, nine involving the lower extremity and one, the upper extremity, were analysed for growth and modelling errors. The elongated bones showed over-tubulation or under-tubulation. Long as well as short bones were affected. Modelling errors mostly affected the metaphysis but, in a few cases, especially where there was isolated involvement of the fibula, the diaphysis was also affected. In two patients the whole length of paired bones of the leg showed evidence of over-tubulation. The rule of polarity which influences growth and modelling was not applicable to these cases of neurofibromatosis. Soft-tissue masses of neurofibromatosis often determined the segment of the bone involved but, in cases without such an external influence, inherent mesodermal dysplasia was thought to be the causative factor.

Adolescent↗

Optic gliomas in children with neurofibromatosis type 1.

To determine the frequency and natural history of tumors of the optic nerves and chiasm in patients with neurofibromatosis type 1, we obtained computed tomographic scans of 65 children who had no known visual or ocular abnormalities before their initial evaluation. Optic gliomas were detected in 10 children (15%). The median age of children with gliomas was 4.3 years (mean 5.8 years, range 9 months to 21 years). Three children (30%) had isolated, unilateral tumors, three (30%) had bilateral tumors, and four (40%) had involvement of the optic chiasm and of one or both nerves. Definite abnormalities of vision were found in only two children (20%). Five additional children were referred to the clinic after evaluation of ophthalmologic complaints led to the diagnosis of neurofibromatosis type 1: three had unilateral exophthalmos and two had plexiform neurofibromas of the eyelid with associated glaucoma. Ipsilateral optic gliomas were found in all five children; one child also had a contralateral tumor. Optic gliomas are commonly identified in young children with neurofibromatosis type 1 who have no ocular or visual abnormalities. Optic nerve gliomas may be associated with plexiform neurofibromas of the eyelid and glaucoma.

Adolescent↗

Genitourinary neurofibromatosis in childhood.

Neurofibromatosis in children occurs uncommonly and involvement of the bladder is exceedingly rare. The syndrome is transmitted as an autosomal dominant trait and is characterized by cutaneous pigmentation and tumors of neural crest origin. Hypertension has been documented in association with neurofibromatosis in the form of renovascular disease in children and with pheochromocytomas in adults. We report on 2 children with extensive neurofibromas of the bladder, upper tract damage and genital enlargement. One case was misdiagnosed as posterior urethral valves and the other case as clitoral hypertrophy. The literature of urogenital neurofibromatosis is reviewed with particular attention to bladder lesions, hypertension, malignant potential and treatment options.

Child, Preschool↗

Radiographic manifestation and treatment considerations in a case of multiple neurofibromatosis.

Neurofibromatosis is a neurocutaneous disorder, of which two distinct entities were defined: a peripheral type I neurofibromatosis, described by Von Recklinghausen, and a central type II affecting mainly the central nervous system. Type I is characterized by neural and cutaneous manifestations, as well as skeletal, oral, and jaw expression. The purpose of the presented case is to depict radiographic manifestations of type I neurofibromatosis in the mandible. The appearance of lesions on X-ray, differential diagnosis, and treatment considerations are discussed.

Adult↗

Increased levels of a nerve-growth-factor cross-reacting protein in "central" neurofibromatosis.

Nerve-growth factor (N.G.F.) from serum was assayed in 9 affected individuals from three kindreds with the trait "central neurofibromatosis". The hallmark of this disease is bilateral acoustic neuromas. Antigenic activity, as measured by radioimmunoassay, was significantly elevated. However, functional activity for N.G.F.; as measured by radioreceptor assay, was normal or low. This indicates that the central form of neurofibromatosis is characterised by high circulating N.G.F. levels which show low to normal function. These changes in N.G.F. differ from those in peripheral neurofibromatosis and suggest that the two hereditary conditions involve different alterations in N.G.F. synthesis and/or regulation.

Adolescent↗

Rapid growth of an optic nerve ganglioglioma in a patient with neurofibromatosis 1.

BACKGROUND: Optic nerve gangliogliomas are extremely rate tumors of the central nervous system composed of elements of glial and neuronal origin. The clinical and biologic behavior of gangliogliomas depends on the glial component. Pilocytic gangliogliomas generally have a low growth rate and good ultimate prognosis. No definitive relation has yet been established between gangliogliomas and neurofibromatosis type 1. METHODS: The authors describe the clinical, histologic, and immunohistochemical features of an optic nerve ganglioglioma with several atypical findings. A review of the literature is provided. RESULTS: An optic nerve glioma was diagnosed in a 16-year-old patient who had signs of neurofibromatosis type 1; the atypical clinical course involved a rapid progression of symptoms with a significant increase in tumor size. The tumor was removed surgically and found to be a ganglioglioma composed of pilocytic glial cells (immunoperoxidase-positive for glial fibrillary acid protein) and neurons (immunoperoxidase-positive for neuron specific enolase, synaptophysin, and neurofilament). A focal astrocytic area showed increased cellularity, several mitotic figures, and an elevated labeling index with Ki-67 immunoperoxidase staining. CONCLUSION: Optic nerve gangliogliomas are rare tumors that cannot be distinguished clinically from pilocytic astrocytomas. Although these tumors usually grow slowly, careful follow-up is advised. The atypical histologic features are considered to be a manifestation of rapid local growth rather than a harbinger of malignant behavior. The authors' findings suggest that gangliogliomas may be included in the diagnostic criteria for neurofibromatosis type 1.

Adolescent↗

Investigation of the cytotoxic effects of DNA damaging agents on neurofibromatosis cells.

Cells cultured from individuals with neurofibromatosis, a genetic syndrome associated with a predisposition to malignancy, were studied. We examined survival as measured by colony formation in skin fibroblasts from 5 patients with neurofibromatosis after exposure to X-rays, ultraviolet light and an alkylating agent. We did not observe mutagen hypersensitivity in neurofibromatosis cells as compared to normal controls.

Adolescent↗

Bone development in neurofibromatosis 1.

Bony abnormalities are common findings in cases of neurofibromatosis 1. We might hypothesize that neurofibromin, the protein encoded by the neurofibromatosis 1 gene, plays important roles in bone development. Loss of function of oligodendrocyte-myelin glycoprotein gene and increased activity of ras p21 might increase the level of c-fos proto-oncogene in bones with formation of fibrous dysplasia-like tissue. Also, increased ras p21 might disturb collagen I synthesis by osteoblasts. Moreover, increased ras activity might increase the mitogenic signals to the nucleus through mitogen-activated protein kinase (MAPK) and disturb the level of the transcription factor core-binding factor alpha(1) (Cbfa1). Abnormal fibrous tissue and neurofibromas formed at the site of pseudarthrosis might represent abnormal response of periosteal fibroblasts for injury, an effect simulating the response of skin fibroblasts in neurofibromatosis 1 to injury.

Animals↗

Multiple lower limb non-ossifying fibromas in siblings with neurofibromatosis.

Non-ossifying fibromas are common benign lesions of tubular long bones. There is recognized association of these bony lesions with neurofibromatosis type 1 although the presence of non-ossifying fibromas in familial members with the condition has not previously been reported. We report two siblings with neurofibromatosis and radiological evidence of multiple lower limb non-ossifying fibromas. Both patients presented with pain in the knees and a pathological fracture was observed in one case. Patients with multiple non-ossifying fibromas should be examined carefully for other evidence of neurofibromatosis.

Adolescent↗

Proton magnetic resonance spectroscopy of brain lesions in children with neurofibromatosis type 1.

Two of the recognized cranial MRI findings in children with neurofibromatosis type 1 (NF1) are neurofibromatosis bright objects (NBO) and brain glioma. Their differential diagnosis can be problematic. This study aimed to determine the features of these abnormalities on short echo-time in-vivo proton magnetic resonance spectroscopy. Twenty children under the age of 16 with NF1 were studied. A single voxel, short echo-time technique (TE = 20 ms; TR = 5000 ms) was used to obtain proton spectra of typical NBO and any regions suggestive of atypical bright objects or tumor. Nine children without neurofibromatosis with no structural brain abnormality acted as aged-matched comparisons. A semi-quantitative analysis indicated significant increase in choline and myo-inisitol in tumors compared to typical NBO (p < 0.05) and compared to controls (p < 0.05); reduction in the levels of N-acetyl moieties in NBO compared to controls (p < 0.05); reduction in N-acetyl in tumors compared to controls (p < 0.001); and reduction in glutamate/glutamine in tumors compared to controls (p < 0.05). This cross-sectional data suggests that proton spectroscopy can aid differentiating between NBO and brain (non-optic/hypothalamic) glioma. Typical NBO have different short echo-time spectroscopic appearances compared to normal brain.

Adolescent↗

Visceral artery aneurysms in Von Recklinghausen's neurofibromatosis.

We report the case of a patient with Von Recklinghausen's neurofibromatosis in whom two visceral artery aneurysms were diagnosed: a 4 cm aneurysm originating from the common hepatic artery and a smaller aneurysm originating from the superior mesenteric artery. The hepatic artery aneurysm underwent successful embolization. Because of the patient's poor general condition, the superior mesenteric aneurysm was considered inoperable and has been kept under surveillance by ultrasonography. Arterial involvement in Von Recklinghausen's neurofibromatosis is a well-known but infrequent occurrence. Stenotic lesions predominate, with the renal arteries being the site of predilection. Aneurysmal defects are less common, and involvement of the visceral arteries is exceptional. Only three reports of superior mesenteric artery aneurysm in patients with Von Recklinghausen's neurofibromatosis were found in the literature, and hepatic artery aneurysm has never previously been described in this disease.

Aneurysm↗

VATS resection of an oesophageal leiomyoma in a patient with neurofibromatosis Recklinghausen.

A series of reports in the literature suggest an association of neurofibromatosis Recklinghausen with intestinal tumors as carcinoids, leiomyomas and leiomyosarcomas. We present a case of a 23-year-old man with severe cutaneous manifestation of neurofibromatosis. Dysphagia was the main symptom. CT scan suggested the diagnosis of an oesophageal leiomyoma. The oesophageal muscle layers were split and the tumor was enucleated by video assisted thoracoscopic surgery (VATS). The postoperative course was uneventful. The patient was drinking liquids from day 1 and was eating a normal diet from day 3 postoperatively. He was dismissed from the hospital on the 4th postoperative day. We conclude that in patients with neurofibromatosis and oesophageal symptoms an intestinal manifestation of the disease in the oesophagus has to be considered and that VATS resection of intramural and extrinsic oesophageal leiomyomas is the treatment of choice.

Adult↗

Neurofibromatosis in monozygotic twins: a case report.

A case report is given of a pair of monozygotic twin girls with neurofibromatosis caused by a new mutation. The symptomatology was dominated by a neurofibrosarcoma on the leg of one twin and by a large plexiform neurofibroma on the neck of the other twin. Otherwise, the disease showed similar, although not identical or mirror-image distribution of subcutaneous neurofibromas and café-au-lait spots. The twins had identical HLA and blood group antigens and the same chromosome aberration. These case reports indicate that nonhereditary factors may influence the manifestations of neurofibromatosis. A review of the literature on monozygotic twins with neurofibromatosis is given.

Adult↗

[Vascular manifestation of von Recklinghausen neurofibromatosis: case report of venous dysplasia].

We present the case report of a patient with neurofibromatosis and regional dysmorphism in the superficial femoral vein. Colour coded duplex sonography revealed an incidental finding: thickening of a short portion of the vein wall with calcification. This unusual finding strongly suggests a causal relationship. Pathological processes in the arteries have often been described in patients with von Recklinghausen's disease (neurofibromatosis). Dysplastic and hyperplastic reactions of the intramural nerve tissues and the smooth muscle elements in the vascular wall have been observed. This leads to the formation of aneurysms and arteriovenous fistulas and to stenosing processes in the peripheral, visceral and cerebral arteries. However, involvement of the veins in type 1 von Recklinghausen's neurofibromatosis has only been reported in old histopathological studies of medium-sized and small vessels.

Arteriovenous Malformations↗

Multiple gastrointestinal stromal tumors in type I neurofibromatosis: a pathologic and molecular study.

Multiple gastrointestinal stromal tumors typically occur in familial form associated with KIT receptor tyrosine kinase or platelet-derived growth factor receptor-alpha (PDGFRA) germline mutations, but may also develop in the setting of type 1 neurofibromatosis. The molecular abnormalities of gastrointestinal stromal tumors arising in neurofibromatosis have not been extensively studied. We identified three patients with type 1 neuro-fibromatosis and multiple small intestinal stromal tumors. Immunostains for CD117, CD34, desmin, actins, S-100 protein, and keratins were performed on all of the tumors. DNA was extracted from representative paraffin blocks from separate tumor nodules in each case and subjected to a nested polymerase chain reaction, using primers for KIT exons 9, 11, 13, and 17 and PDGFRA exons 12 and 18, followed by direct sequencing. The mean patient age was 56 years (range: 37-86 years, male/female ratio: 2/1). One patient had three tumors, one had five, and one had greater than 10 tumor nodules, all of which demonstrated histologic features characteristic of gastrointestinal stromal tumors and stained strongly for CD117 and CD34. One patient died of disease at 35 months, one was disease free at 12 months and one was lost to follow-up. DNA extracts from 10 gastrointestinal stromal tumors (three from each of two patients and four from one patient) were subjected to polymerase chain reactions and assessed for mutations. All of the tumors were wild type for KIT exons 9, 13, and 17 and PDGFRA exons 12 and 18. Three tumors from one patient had identical point mutations in KIT exon 11, whereas the other tumors were wild type at this locus. We conclude that, although most patients with type 1 neurofibromatosis and gastrointestinal stromal tumors do not have KIT or PDGFRA mutations, KIT germline mutations might be implicated in the pathogenesis of gastrointestinal stromal tumors in some patients.

Adult↗

Multiple transcripts of the neurofibromatosis type 1 gene in human brain and in brain tumours.

1. Neurofibromatosis type 1 is a common hereditary disorder characterized by the presence of multiple neurofibromas and café-au-lait spots, and is frequently associated with intellectual handicaps and brain tumours. The gene responsible for neurofibromatosis (the NF1 gene) codes for a protein of 2818 amino acids, termed neurofibromin, which has a domain related to mammalian ras GTPase-activating protein. 2. The NF1 gene gives rise to multiple transcripts generated by alternative splicing, that encode neurofibromin and its isoforms. These include type I mRNA coding for neurofibromin, type II mRNA coding for neurofibromin containing the insertion of 21 amino acids in the GTPase-activating protein-related related domain and mRNA coding for an N-terminal isoform lacking the GTPase-activating protein-related domain (N-isoform). 3. In the present study, the relative levels of mRNAs encoding type I, type II and N-isoform were determined by S1-nuclease mapping analysis in human brain tissue and in primary brain tumours obtained from patients with tumours unrelated to neurofibromatosis type 1. 4. These three mRNAs were expressed in all ten brain tumours and in every region of the brain examined, with the highest levels found in the cerebellum. Type I mRNA was the predominant form in the human brain except for the pons, whereas type II mRNA was predominantly expressed in eight out of ten primary brain tumours. 5. In contrast, N-isoform mRNA was similarly expressed in normal brain tissue and brain tumours. 6. These findings suggest that neurofibromin and its isoforms have important physiological roles in the human brain and that the altered expression of type I and type II mRNAs in brain tumours may be related to the tumorigenesis.

Adult↗