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Biomedical subjects

G B Schaefer

Publications and source records attributed to G B Schaefer.

At least 19 recordsLinked to original sources

Hypothalamic dysfunction with polydactyly and hypoplastic nails.

Attention to a careful diagnostic work-up should be given to patients with postaxial polydactyly or apparently isolated hypothalamic hamartomas. Early recognition of the condition is critical for management, particularly for anticipating and preventing endocrine emergencies. Conservative management of the hypothalamic hamartoma should be stressed. Finally, detailed genetic counseling should be provided to the family regarding autosomal-dominant inheritance as well as the wide range of interfamilial and intrafamilial variability.

Brain Diseases

Interleukin-1beta upregulates MMP-9 expression in stromal cells of human giant cell tumor of bone.

Giant cell tumor (GCT) of bone is a progressive, potentially malignant process that destroys skeletal tissue. It consists of multinucleated giant cells, which are hypothesized to be derived from a monocyte/macrophage lineage and mononuclear stromal cells, and the precise relationship of these cells is not fully understood. Recently, we demonstrated that the production of matrix metalloproteinase-9 (MMP-9) in GCT stromal cells is regulated by certain factor(s) secreted by the multinucleated giant cells. In the present study, we evaluated for the presence of interleukin-1beta (IL-1beta) and attempted to establish its possible role for the induction of MMP-9 in GCT stromal cells. Using enzyme-linked immunosorbent assay (ELISA), we have demonstrated that the primary GCT cultures secrete both IL-1beta and MMP-9. The addition of monoclonal antibody (mAb) against IL-1beta partially abrogated, but did not abolish, MMP-9 expression. Our results on gelatin zymography, reverse transcriptase-polymerase chain reaction (RT-PCR), and immunofluorescence showed that GCT stromal cells did not express MMP-9, although treatment with IL-1beta induced MMP-9 expression in a dose-dependent manner, and the secretion peaked 24 h after stimulation and then plateaued. Studies with cycloheximide, a protein synthesis inhibitor, demonstrated that de novo protein synthesis is required for IL-1beta induced MMP-9 expression. Moreover, nuclear run-on analysis has revealed that IL-1beta significantly increased MMP-9 gene transcription in GCT stromal cells. The data suggest that IL-1beta secreted by the multinucleated giant cells in GCT may be one of the factors responsible for the induction of MMP-9 at the transcriptional level in GCT stromal cells in vivo. We conclude that GCT has a self-stimulatory system for the production of MMP-9, and the ability of stromal cells to produce MMP-9 with appropriate stimuli, such as IL-1beta, and possibly in concert with other cytokines may contribute to the aggressive and potentially malignant behavior of GCT.

Enzyme-Linked Immunosorbent Assay

Clinical studies of families with hearing loss attributable to mutations in the connexin 26 gene (GJB2/DFNB1)

OBJECTIVE: This retrospective study describes the phenotype associated with the single most common cause of genetic hearing loss. The frequency of childhood deafness is estimated at 1/500. Half of this hearing loss is genetic and approximately 80% of genetic hearing loss is nonsyndromic and inherited in an autosomal recessive manner. Approximately 50% of childhood nonsyndromic recessive hearing loss is caused by mutations in the connexin 26 (Cx26) gene (GJB2/DFNB1), making it the most common form of autosomal recessive nonsyndromic hearing loss with a carrier rate estimated to be as high as 2.8%. One mutation, 35delG, accounts for approximately 75% to 80% of mutations at this gene. METHODS: Hearing loss was examined in 46 individuals from 24 families who were either homozygous or compound heterozygous for Cx26 mutations. A subset of these individuals were examined for vestibular function, otoacoustic emissions, auditory brainstem response, temporal bone computed tomography, electrocardiography, urinalyses, dysmorphology, and thyroid function. RESULTS: Although all persons had hearing impairment, no consistent audiologic phenotype was observed. Hearing loss varied from mild-moderate to profound, even within the group of families homozygous for the common mutation 35delG, suggesting that other factors modify the phenotypic effects of mutations in Cx26. Furthermore, the hearing loss was observed to be progressive in a number of cases. No associations with inner ear abnormality, thyroid dysfunction, heart conduction defect, urinalyses, dysmorphic features, or retinal abnormality were noted. CONCLUSION: Newborns with confirmed hearing loss should have Cx26 testing. Cx26 testing will help define a group in which approximately 60% will have profound or severe-profound hearing loss and require aggressive language intervention (many of these patients will be candidates for cochlear implants).

Child

Transcriptional regulation of MMP-9 expression in stromal cells of human giant cell tumor of bone by tumor necrosis factor-alpha.

We determined whether certain factor(s) secreted by multinucleated giant cells, which is of monocyte/macrophage lineage in giant cell tumor of bone (GCT), regulate the induction of matrix metalloproteinase (MMP)-9 expression in mononucleated stromal cells. Our data derived using enzyme linked immunosorbant assays (ELISAs) suggest that the GCT cells in primary culture produce both MMP-9 and tumor necrosis factor-alpha (TNF-alpha). Further, the MMP-9 expression in GCT primary cultures was partially abrogated by neutralizing antibody to TNF-alpha, suggesting that TNF-alpha secretion by the multinucleated giant cells may be one of the factors responsible for the production of MMP-9 by the stromal cells in vivo. In order to confirm this we examined the role of TNF-alpha on the induction of MMP-9 expression in bone GCT stromal cells. These cells express MMP-2, but not MMP-9. However, treatment of these cells with TNF-alpha induced the expression of MMP-9 in a concentration-dependent manner. Kinetic experiments revealed that the secretion of MMP-9 peaked 12 h post TNF-alpha stimulation. Immunofluorescence studies confirmed the expression of MMP-9 after stimulation of GCT stromal cells with TNF-alpha. Further, TNF-alpha-induced MMP-9 expression was completely blocked with neutralizing antibody to TNF-alpha, thereby demonstrating the specificity. In addition, the induction of MMP-9 expression by TNF-alpha was completely abrogated in the presence of cycloheximide, a protein synthesis inhibitor, suggesting that de novo protein synthesis may be required. Nuclear run-on analysis demonstrated that treatment of GCT stromal cells significantly enhanced the MMP-9 gene transcription. Together, our data suggest that TNF-alpha secreted by the multinucleated giant cells up-regulates MMP-9 expression in GCT stromal cells by the induction of certain transcription factors, which in turn enhanced the rate of transcription of MMP-9 gene. These studies also suggest the existence of an essential cell-cell interaction in the regulation of MMP-9 expression in GCT.

Adult

Identical twins discordant for Sotos syndrome.

The cause of Sotos syndrome is unknown but it usually occurs sporadically. Recent studies have shown no evidence of uniparental disomy. One set of concordant monozygotic twins has been reported. We have identified the Sotos syndrome in one of two 5-year-old male monozygotic twins. Our finding of discordance in these identical twins suggests that a postconceptual mutation, or epigenetic change and/or an environmental factor may be involved in the cause of Sotos syndrome.

Child, Preschool

Volumetric neuroimaging in Usher syndrome: evidence of global involvement.

Usher syndrome is a group of genetic disorders consisting of congenital sensorineural hearing loss and retinitis pigmentosa of variable onset and severity depending on the genetic type. It was suggested that the psychosis of Usher syndrome might be secondary to a metabolic degeneration involving the brain more diffusely. There have been reports of focal and diffuse atrophic changes in the supratentorial brain as well as atrophy of some of the structures of the posterior fossa. We previously performed quantitative analysis of magnetic resonance imaging studies of 19 Usher syndrome patients (12 with type I and 7 with type II) looking at the cerebellum and various cerebellar components. We found atrophy of the cerebellum in both types and sparing of cerebellar vermis lobules I-V in type II Usher syndrome patients only. We now have studied another group of 19 patients (with some overlap in the patients studied from the previous report) with Usher syndrome (8 with type I, 11 with type II). We performed quantitative volumetric measurements of various brain structures compared to age- and sex-matched controls. We found a significant decrease in intracranial volume and in size of the brain and cerebellum with a trend toward an increase in the size of the subarachnoid spaces. These data suggest that the disease process in Usher syndrome involves the entire brain and is not limited to the posterior fossa or auditory and visual systems.

Adult

Accelerated linear growth and advanced bone age in Sotos syndrome is not associated with abnormalities of collagen metabolism.

OBJECTIVES: To investigate whether the advanced bone age in Sotos syndrome is associated with alterations in type I collagen metabolism in bone. DESIGN AND METHODS: The metabolism of collagen was studied by analyzing the production, gene expression and degradation of type I collagen in dermal fibroblast strains from patients with Sotos syndrome and comparing them with fibroblasts from age-matched healthy subjects. Collagen production was determined as collagenase digestible radioactivity and collagen mRNA levels were measured by RT-PCR. Collagen degradation was assessed by specific collagenase assay and gelatin zymography. To determine the structural defects in type I collagen, the newly synthesized proteins were analyzed by SDS-PAGE before and after proteolytic digestion with pepsin. RESULTS: In the present study, we have demonstrated that the collagen production, secretion and degradation in Sotos syndrome is comparable to controls. In addition, no qualitative differences in mRNA transcripts for type I collagen were detected between the control and Sotos syndrome fibroblasts. The secretion and intracellular accumulation of procollagen is also comparable to controls. The analysis of both procollagen and collagen on SDS-PAGE did not exhibit any major structural changes as compared with controls. CONCLUSIONS: Our results on several aspects of collagen metabolism have demonstrated for the first time that collagen, the most abundant of mammalian proteins and the major constituent of bone, is normal in patients with Sotos syndrome. Therefore, it appears that the advanced bone age and accelerated linear growth seen in patients with Sotos syndrome may not be attributed to inherent abnormalities of collagen metabolism. The etiology and the pathogenesis of Sotos syndrome still remains unclear.

Adolescent

Does selection bias determine the prevalence of the cavum septi pellucidi?

This study was undertaken to ascertain the prevalence of the persistent cavum septi pellucidi in children and adults by magnetic resonance imaging (MRI) and to compare the clinical indications for neuroimaging in the two age groups as a measure of group selection bias. All scans performed at West Virginia University during 1997 were reviewed for the presence of a persistent cavum septi pellucidi. The clinical indications for the MRI study were determined in 100 consecutive adult (17 years of age or older) and 100 consecutive pediatric (younger than 17 years of age) scans. In the 203 pediatric patients the prevalence of a persistent cavum septi pellucidi was 6.9%, and in the 814 adults the prevalence was 2.1%. Mental retardation/developmental delay was the clinical indication for at least 26% of the pediatric patients but was not an indication for neuroimaging in the adult study group. The known association of persistent cavum septi pellucidi with mental retardation and in several groups of patients with conditions clinically characterized by mental dysfunction suggests that the higher prevalence in the pediatric study group may primarily be the result of the patient selection bias operating through the different clinical indications for neuroimaging in the two populations.

Adolescent

Radiological findings in developmental delay.

This article reviews the neuroimaging findings in patients with nonsyndromic mental retardation and global developmental delays. The frequency and type of abnormal neuroimaging findings in this patient population are discussed. Specifically addressed are the issues of which patients should have neuroimaging studies in light of (in the vernacular) "cost-benefit" analysis. The extension of these studies to "milder" developmental delays, and other neurodevelopmental disorders are also discussed.

Brain

Cavum septi pellucidi and cavum vergae in normal and developmentally delayed populations.

Recent studies have shown that the persistence of the cavum septi pellucidi beyond the neonatal period is a marker of cerebral dysgenesis. It has been suggested that the finding of a persistent cavum vergae is also a marker of disturbed brain development. In order to investigate this hypothesis we reviewed 161 brain magnetic resonance imaging scans from normal individuals for the presence of cavum septi pellucidi or cavum vergae, or both. In the 34 prospectively obtained normal adults, there were no individuals with either a cavum septi pellucidi or cavum vergae. In the "defined" normal subjects 3 of 127 individuals (2.4%) had a cavum septi pellucidi whereas a cavum vergae was noted in 26 of 127 (20.5%). We next reviewed the neuroimaging studies of 249 children and adults evaluated for mental retardation or developmental delay. A cavum septi pellucidi was found in 38 of 249 (15.3%) and a cavum vergae in 48 of 249 (19.3%) of these patients. A cavum septi pellucidi and cavum vergae were found together in 19 of 249 (7.6%). We interpret these data as showing that the cavum septi pellucidi is rarely seen in normal individuals although the cavum vergae is seen with the same frequency in normal and retarded populations. Thus we conclude that the cavum septi pellucidi serves as a significant marker of cerebral dysfunction manifested by neurodevelopmental abnormalities while the cavum vergae alone does not identify individuals at risk for cognitive delays.

Adolescent

Kabuki syndrome.

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Abnormalities, Multiple

Turner syndrome.

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Female

Evaluation of mental retardation: recommendations of a Consensus Conference: American College of Medical Genetics.

A Consensus Conference utilizing available literature and expert opinion sponsored by the American College of Medical Genetics in October 1995 evaluated the rational approach to the individual with mental retardation. Although no uniform protocol replaces individual clinician judgement, the consensus recommendations were as follows: 1. The individual with mental retardation, the family, and medical care providers benefit from a focused clinical and laboratory evaluation aimed at establishing causation and in providing counseling, prognosis, recurrence risks, and guidelines for management. 2. Essential elements of the evaluation include a three-generation pedigree: pre-, peri-, and post-natal history, complete physical examination focused on the presence of minor anomalies, neurologic examination, and assessment of the behavioral phenotype. 3. Selective laboratory testing should, in most patients, include a banded karyotype. Fragile X testing should be strongly considered in both males and females with unexplained mental retardation, especially in the presence of a positive family history, a consistent physical and behavioral phenotype and absence of major structural abnormalities. Metabolic testing should be initialed in the presence of suggestive clinical and physical findings. Neuroimaging should be considered in patients without a known diagnosis especially in the presence of neurologic symptoms, cranial contour abnormalities, microcephaly, or macrocephaly. In most situations MRI is the testing modality of choice. 4. Sequential evaluation of the patient, occasionally over several years, is often necessary for diagnosis, allowing for delineation of the physical and behavioral phenotype, a logical approach to ancillary testing and appropriate prognostic and reproductive counseling.

Diagnosis, Differential

The neuroimaging findings in Sotos syndrome.

We reviewed the neuroimaging studies of 40 patients with classic Sotos syndrome. The studies consisted of CT scans only in 4 patients and one or more MRI scans in 36 patients. The diagnosis of Sotos syndrome was made using well-established clinical criteria. The neuroimaging studies of each patient were evaluated subjectively by visual inspection and the chief findings were tabulated and grouped into five categories: 1) ventricular abnormalities, 2) extracerebral fluid spaces, 3) midline abnormalities, 4) migrational abnormalities, and 5) others. The most common abnormality of the cerebral ventricles was prominence of the trigone (90%), followed by prominence of the occipital horns (75%) and ventriculomegaly (63%). The supratentorial extracerebral fluid spaces were increased for age in 70% of the patients and the fluid spaces in the posterior fossa were increased in 70% also. A variety of midline abnormalities were noted but anomalies of the corpus callosum were almost universal. Gray matter heterotopias occurred in only 3 (8%) of 36 patients. Periventricular leukomalacia, presumably the result of prenatal or perinatal difficulties and unrelated to the basic condition, was the most common of the miscellaneous other abnormalities noted. The neuroimaging findings of Sotos syndrome are distinct enough to allow differentiation of this syndrome from other mental retardation syndromes with macrocephaly.

Abnormalities, Multiple

Marshall-Stickler phenotype associated with von Willebrand disease.

We report on 6 individuals from three different kindreds with Marshall-Stickler (MS) phenotype, with characteristic orofacial abnormalities, arthropathy, deafness, and eye findings, all of whom were discovered to have a mild bleeding diathesis and coagulation-study findings consistent with mild von Willebrand disease (vWD). MS syndrome has been linked in some cases to the type II procollagen gene (COL2A1) on chromosome 12q, and to the collagen XI gene (COL11A2) on chromosome 6. The von Willebrand factor (vWF) is encoded by a 180-Kb gene located on the short arm of chromosome 12. This is the first reported association of these two disorders.

Adolescent