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Biomedical subjects

H Steiner

Publications and source records attributed to H Steiner.

At least 73 records · Page 4Linked to original sources

Psychiatric phenomenology of child and adolescent bipolar offspring.

OBJECTIVE: To establish prodromal signs of and risk factors for childhood bipolar disorder (BD) by characterizing youths at high risk for BD. METHOD: Structured diagnostic interviews were performed on 60 biological offspring of at least one parent with BD. Demographics, family histories, and parental history of childhood disruptive behavioral disorders were also assessed. RESULTS: Fifty-one percent of bipolar offspring had a psychiatric disorder, most commonly attention-deficit/hyperactivity disorder (ADHD), major depression or dysthymia, and BD. BD in offspring tended to be associated with earlier parental symptom onset when compared with offspring without a psychiatric diagnosis. Bipolar parents with a history of childhood ADHD were more likely to have children with BD, but not ADHD. Offspring with bilineal risk had increased severity of depressed and irritable mood, lack of mood reactivity, and rejection sensitivity, while severity of grandiosity, euphoric mood, and decreased need for sleep were not preferentially associated with such offspring. CONCLUSIONS: Bipolar offspring have high levels of psychopathology. Parental history of early-onset BD and/or childhood ADHD may increase the risk that their offspring will develop BD. Prodromal symptoms of childhood BD may include more subtle presentations of mood regulation difficulties and less presence of classic manic symptoms.

Adolescent↗

Adolescents and sports: risk or benefit?

In order to begin to compensate for a lack of data on the effects of athletic participation in the development of adolescent mental health patterns, as well as to assess general health of the adolescent population, the Juvenile Wellness and Health Inventory (JWHS-76) was administered to 1,769 high school students. Our results indicate that sports participation is associated with self-reported lower total risk scores, mental and physical health benefits, and an increased risk of injury. This suggests a positive role for organized sports participation in youth populations. Prospective studies are needed to assess the impact of different sports, mounting performance pressure, and transition into collegiate levels of participation.

Adolescent↗

An in vivo assay for the identification of target proteases which cleave membrane-associated substrates.

Proteases not only play a fundamental role in numerous physiological processes, but are also involved in several human diseases including Alzheimer's disease (AD). A key protease implicated in AD is the so far unidentified gamma-secretase, which cleaves the membrane-bound beta-amyloid precursor protein (betaAPP) at the C-terminus of its amyloid domain within the membrane to release the neurotoxic amyloid beta-peptide. In order to allow the isolation of proteases, which specifically cleave membrane-bound substrates within or in the vicinity of a transmembrane domain, we developed a reporter gene assay in Saccharomyces cerevisiae. This assay may allow the identification of genes encoding target proteases that specifically cleave membrane bound substrates by transforming expression libraries.

Amyloid Precursor Protein Secretases↗

Treatment of cerebral Langerhans cell histiocytosis.

Cerebral Langerhans cell histiocytosis (LCH) is a rare granulomatous disorder which may be primary or secondary or solitary or multiple. Brain structures outside the hypothalamic-pituitary axis are only scarcely involved, even in multisystem varieties. Since there are neither controlled therapeutic trials nor systematic analyses of hitherto reported cases, optimal treatment strategies are not known. To evaluate the effect of different treatment modalities, we analyzed previous reports of extrahypothalamic LCH back to 1980 in which the diagnosis was made on the basis of examination of cerebral tissues. Thirty-five histologically examined cases were identified, including 10 patients presenting with multiple cerebral lesions. Adding one own case followed up for 10 years, 16 patients had cerebral involvement secondary to multisystem LCH, while another 20 patients had primary cerebral LCH. The peak incidence was far beyond the pediatric range for both primary and secondary cerebral LCH. Localized lesions can be treated successfully by surgery or radiation following biopsy. Chemotherapy may be an additional option. Multiple lesions can tentatively be controlled by chemotherapy and, possibly, radiation. The ultimate outcome is determined by whether or not recurrencies or de-novo lesions will appear and the course of the systemic disease. Studies addressing the effects of therapy in cerebral LCH are urgently needed.

Adolescent↗

Amyloidogenic function of the Alzheimer's disease-associated presenilin 1 in the absence of endoproteolysis.

Alzheimer's disease (AD) is characterized by the invariant accumulation of senile plaques predominantly composed of the pathologically relevant 42-amino acid amyloid beta-peptide (Abeta42). The presenilin (PS) proteins play a key role in Abeta generation. FAD-associated mutations in PS1 and PS2 enhance the production of Abeta42, and PS1 is required for physiological Abeta production, since a gene knockout of PS1 and dominant negative mutations of PS1 abolish Abeta generation. PS proteins undergo endoproteolytic processing, and current evidence indicates that fragment formation may be required for the amyloidogenic function of PS. We have now determined the sequence requirements for endoproteolysis of PS1. Mutagenizing amino acids at the previously determined major cleavage site (amino acid 298) had no effect on PS1 endoproteolysis. In contrast, mutations or deletions at the additional cleavage site around amino acid 292 blocked endoproteolysis. The uncleavable PS1 derivatives accumulated as full-length proteins and replaced the endogenous PS1 proteins. In contrast to the previously described aspartate mutations within transmembrane domains 6 and 7, the uncleaved PS1 variants do not act as dominant negative inhibitors of Abeta production. Moreover, when a FAD-associated mutation (M146L) was combined with a mutation blocking endoproteolysis, Abeta42 production still reached pathological levels. These data therefore demonstrate that endoproteolysis of presenilins is not an absolute prerequisite for the amyloidogenic function of PS1. These data also show that accumulation of the PS1 holoprotein is not associated with the pathological activity of PS1 mutations as suggested previously.

Alzheimer Disease↗

A loss of function mutation of presenilin-2 interferes with amyloid beta-peptide production and notch signaling.

Presenilin-1 (PS1) facilitates gamma-secretase cleavage of the beta-amyloid precursor protein and the intramembraneous cleavage of Notch1. Although Alzheimer's disease-associated mutations in the homologous presenilin (PS2) gene elevate amyloid beta-peptide (Abeta42) production like PS1 mutations, here we demonstrate that a gene ablation of PS2 (unlike that of PS1) in mice does not result in a severe phenotype resembling that of Notch-ablated animals. To investigate the amyloidogenic function of PS2 more directly, we mutagenized a conserved aspartate at position 366 to alanine, because the corresponding residue of PS1 is known to be required for its amyloidogenic function. Cells expressing the PS2 D366A mutation exhibit significant deficits in proteolytic processing of beta-amyloid precursor protein indicating a defect in gamma-secretase activity. The reduced gamma-secretase activity results in the almost complete inhibition of Abeta and p3 production in cells stably expressing PS2 D366A, whereas cells overexpressing the wild-type PS2 cDNA produce robust levels of Abeta and p3. Using highly sensitive in vivo assays, we demonstrate that the PS2 D366A mutation not only blocks gamma-secretase activity but also inactivates PS2 activity in Notch signaling by inhibiting the proteolytic release of the cytoplasmic Notch1 domain. These data suggest that PS2 is functionally involved in Abeta production and Notch signaling by facilitating similar proteolytic cleavages.

Amyloid beta-Peptides↗

Altered gene expression in striatal projection neurons in CB1 cannabinoid receptor knockout mice.

The basal ganglia, a brain structure critical for sensorimotor and motivational aspects of behavior, contain very high levels of CB1 cannabinoid receptors. These receptors are activated by endogenous lipophilic ligands, and they are thought to mediate behavioral effects of cannabinoid drugs. To evaluate the role of the endogenous cannabinoid system in the regulation of basal ganglia pathways, we have investigated the effects of targeted deletion of CB1 receptors on gene expression of various neuropeptides and transmitter-related enzymes in basal ganglia neurons. Mice without CB1 receptors are extremely hypoactive in a test for exploratory behavior (open-field test), showing markedly reduced locomotion and rearing. These CB1 mutants display significantly increased levels of substance P, dynorphin, enkephalin, and GAD 67 mRNAs in neurons of the two output pathways of the striatum that project to the substantia nigra and the globus pallidus. Our findings demonstrate that elimination of CB1 receptors results in behavioral abnormalities and functional reorganization of the basal ganglia.

Animals↗

The biological and pathological function of the presenilin-1 Deltaexon 9 mutation is independent of its defect to undergo proteolytic processing.

The two homologous presenilins are key factors for the generation of amyloid beta-peptide (Abeta), since Alzheimer's disease (AD)-associated mutations enhance the production of the pathologically relevant 42-amino acid Abeta (Abeta42), and a gene knockout of presenilin-1 (PS1) significantly inhibits total Abeta production. Presenilins undergo proteolytic processing within the domain encoded by exon 9, a process that may be closely related to their biological and pathological activity. An AD-associated mutation within the PS1 gene deletes exon 9 (PS1Deltaexon9) due to a splicing error and results in the accumulation of the uncleaved full-length protein. We now demonstrate the unexpected finding that the pathological activity of PS1Deltaexon9 is independent of its lack to undergo proteolytic processing, but is rather due to a point mutation (S290C) occurring at the aberrant exon 8/10 splice junction. Mutagenizing the cysteine residue at position 290 to the original serine residue completely inhibits the pathological activity in regard to the elevated production of Abeta42. Like PS1Deltaexon9, the resulting presenilin variant (PS1Deltaexon9 C290S) accumulates as an uncleaved protein and fully replaces endogenous presenilin fragments. Moreover, PS1Deltaexon9 C290S exhibits a significantly increased biological activity in a highly sensitive in vivo assay as compared with the AD-associated mutation. Therefore not only the increased Abeta42 production but also the decreased biological function of PS1Deltaexon9 is due to a point mutation and independent of the lack of proteolytic processing.

Alzheimer Disease↗

Differential expression of ErbB3 and ErbB4 neuregulin receptors in dopamine neurons and forebrain areas of the adult rat.

Neuregulins have been shown to play an important role in the development of the central nervous system, but their function in adult tissues is still unclear. We investigated the expression of the neuregulin receptors erbB3 and erbB4 in the adult rat brain by in situ hybridization histochemistry. Areas with considerable expression of erbB4 receptor mRNA include cortex, amygdala, hippocampus, medial habenula, reticular thalamic nucleus, several hypothalamic nuclei, subthalamic nucleus, substantia nigra pars compacta, and ventral tegmental area. Immunostaining for tyrosine hydroxylase and dopamine depletion by 6-hydroxydopamine indicate that erbB4 is expressed in dopamine neurons in the latter two nuclei. Substantial erbB4 expression is also present in clusters of cells along the ventral and medial border of the striatum/nucleus accumbens and in the subependymal zone along the lateral and olfactory ventricles (rostral migratory stream), suggesting a role for neuregulins in adult cell proliferation. In contrast, erbB3 mRNA is mostly expressed in white matter throughout the brain and in the ependyma of the ventral half of the third ventricle (tanycytes). These results demonstrate that expression of erbB3 and erbB4 receptors is widespread in the adult rat brain and suggest a function for neuregulins into adulthood.

Animals↗

Genes and mechanisms involved in beta-amyloid generation and Alzheimer's disease.

Alzheimer's disease is characterized by the invariable accumulation of senile plaques that are predominantly composed of amyloid beta-peptide (Abeta). Abeta is generated by proteolytic processing of the beta-amyloid precursor protein (betaAPP) involving the combined action of beta- and gamma-secretase. Cleavage within the Abeta domain by alpha-secretase prevents Abeta generation. In some very rare cases of familial AD (FAD), mutations have been identified within the betaAPP gene. These mutations are located close to or at the cleavage sites of the secretases and pathologically effect betaAPP processing by increasing Abeta production, specifically its highly amyloidogenic 42 amino acid variant (Abeta42). Most of the mutations associated with FAD have been identified in the two presenilin (PS) genes, particularly the PS1 gene. Like the mutations identified within the betaAPP gene, mutations in PS1 and PS2 cause the increased generation of Abeta42. PS1 has been shown to be functionally involved in Notch signaling, a key process in cellular differentation, and in betaAPP processing. A gene knock out of PS1 in mice leads to an embryonic lethal phenotype similar to that of mice lacking Notch. In addition, absence of PS1 results in reduced gamma-secretase cleavage and leads to an accumulation of betaAPP C-terminal fragments and decreased amounts of Abeta. Recent work may suggest that PS1 could be the gamma-secretase itself, exhibiting the properties of a novel aspartyl protease. Mutagenesis of either of two highly conserved intramembraneous aspartate residues of PS1 leads to reduced Abeta production as observed in the PS1 knockout. A corresponding mutation in PS2 interfered with betaAPP processing and Notch signaling suggesting a functional redundancy of both presenilins. In this issue, some of the recent work on the molecular mechanisms involved in Alzheimer's disease (AD) as well as novel diagnostic approaches and risk factors for AD will be discussed. In the first article, we like to give an overview on mechanisms involved in the proteolytic generation of Amyloid beta-peptide (Abeta), the major pathological player of this devastating disease. In the second part of this article recent results will be described, which demonstrate an unexpected biological and pathological function of an AD associated gene.

Alzheimer Disease↗

Enkephalin regulates acute D2 dopamine receptor antagonist-induced immediate-early gene expression in striatal neurons.

Projection neurons of the striatum release opioid peptides in addition to GABA. Our previous studies showed that the opioid peptide dynorphin regulates that subtype of projection neurons which sends axons to the substantia nigra/entopeduncular nucleus, as indicated by an inhibitory action of dynorphin/agonists on D1 dopamine receptor-mediated immediate-early gene induction in these neurons. The other subtype of striatal projection neurons projects to the globus pallidus and contains the opioid peptide enkephalin. Here, we investigated whether enkephalin regulates the function of striatopallidal neurons, by analysing opioid effects on immediate-early gene induction by D2 dopamine receptor blockade that occurs in these neurons. Thus, the effects of systemic and intrastriatal administration of various opioid receptor agonists and antagonists on immediate-early gene expression (c-fos, zif 268) induced by the D2 receptor antagonist eticlopride were examined with in situ hybridization histochemistry. Intrastriatal infusion of enkephalin (delta and mu), but not dynorphin (kappa), receptor agonists suppressed immediate-early gene induction by eticlopride in a dose-dependent manner. This suppression was blocked by the opioid receptor antagonist naloxone, confirming the involvement of opioid receptors. Repeated treatment with D2 receptor antagonists produces increased enkephalin expression and diminished immediate-early gene inducibility in striatopallidal neurons, as well as behavioral effects that are attenuated compared to those of acute treatment (e.g., reduced akinesia). Naloxone reversed such behavioral recovery (i.e. reinstated akinesia), but did not significantly affect suppressed immediate-early gene induction. Our results indicate that enkephalin acts, via mu and delta receptors in the striatum, to inhibit acute effects of D2 receptor blockade in striatopallidal neurons. Moreover, the present findings suggest that increased enkephalin expression after repeated D2 receptor antagonist treatment is an adaptive response that counteracts functional consequences of D2 receptor blockade, but is not involved in suppressed immediate-early gene induction. Together with our earlier findings of the role of dynorphin, these results indicate that opioid peptides in the striatum serve as negative feedback systems to regulate the striatal output pathways in which they are expressed.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

Adolescent defense style and life stressors.

This study examines the relationship between stressful life events and defense mechanisms. Eighty seven female adolescent patients completed the Adolescent Family Inventory of Life Events and Changes (A-FILE) assessing stressors in six domains of family life, and the Defense Style Questionnaire (DSQ) assessing 19 defense mechanisms grouped into Immature, Prosocial, and Mature clusters. Increasing stressors are significantly positively correlated with a more immature defense style. Results support the hypothesis that there is an iterative relationship between immature defenses and life stressors. These findings are compatible with a regression model of defense functioning and complement our previous results linking defenses to temperament.

Adolescent↗

Implications of hemolin glycosylation and Ca2+-binding on homophilic and cellular interactions.

Insects are useful models for the study of innate immune mechanisms because of their lack of antibodies and receptors involved in adaptive immune response. Nevertheless, hemolin cloned from moths is a soluble and membrane associated Ig-related molecule that is up-regulated during immune response [Lanz-Mendoza, H. & Faye, I. (1999) Dev. Comp. Immunol. 23, 359-374]. The hemolin monomeric form has four, pair-wise, interacting Ig-domains, forming a strongly bent horseshoe structure [Su, X.-D., Gastinel, L.N., Vaughn, D.E., Faye, I., Poon, P. & Bjorkman, P. (1998) Science 281, 991-995]. To elucidate the nature of its homophilic and cellular interactions, the glycosylation and Ca2+-binding properties of hemolin were investigated. We used Hyalophora cecropia hemolin isolated from hemolymph of bacteria-injected pupae, or produced as a recombinant protein in a baculovirus/insect cell system. Both types of hemolin contain N-acetylglucosamine and probably sialic acid, as indicated by peptide:N-glycosidase F and neuraminidase digestion and glycosylation detection by Western-blotting analysis. The N-acetylglucosamine residues on hemolin were confirmed with the use of specific lectins. In addition, hemolin was shown to specifically bind calcium when spotted onto nitrocellulose and treated as for 45Ca2+ autoradiography. Earlier studies demonstrated that hemolin can bind to hemocytes and this was tested for its dependence on calcium and carbohydrates, using hemolin-coated fluorescent microspheres. A greater level of attachment of microspheres occurred in the presence of calcium than if calcium was absent. Furthermore, this binding was inhibited by EGTA and N-acetylglucosamine or N-acetylneuraminic acid, implying that carbohydrates and calcium are crucial factors in homophilic binding and cell-adhesion events mediated by this Ig-superfamily molecule.

Animals↗

Three-dimensional power Doppler sonography: imaging and quantifying blood flow and vascularization.

OBJECTIVES: To assess the feasibility of imaging low-velocity blood flow in adnexal masses by transvaginal three-dimensional power Doppler sonography, to analyze three-dimensional power Doppler sonography data sets with a new computer-assisted method and to test the reproducibility of the technique. METHODS: A commercially available 5-MHz Combison 530 ultrasound system was used to perform three-dimensional power Doppler sonography transvaginally. A cube (= volume of interest) was defined enclosing the vessels of the cyst and the Cartesian characteristics were stored on a hard disk. This cube was analyzed using specially designed software. Five indices representing vascularization (the vascularization index (VI) or blood flow (the flow index (FI)) or both (the vascularization-flow index (VFI)) were calculated. The intraobserver repeatability of cube definition and scan repetition was assessed using Hartley's test for homogeneous variances. Interobserver agreement was assessed by the Pearson correlation coefficient. RESULTS: Imaging of vessels with low-velocity blood flow by three-dimensional power Doppler sonography and cube definition was possible in all adnexal massed studied. In some cases even induced non-vascular flow related to endometriosis was detected. The calculated F value with intraobserver repeated Cartesian file-saving ranged from 0 to 18.8, with intraobserver scan repetition from 4.74 to 24.8 for VI, FI 1, FI 2 and VFI 1; for VFI 2 the calculated F value was 64. The interobserver correlation coefficient ranged between 0.83 and 0.92 for VI, FI 1, FI 2 and VFI 1; for VFI 2 the correlation coefficient was less than 0.75. CONCLUSION: Vessels with low-velocity blood flow can be imaged using three-dimensional power Doppler sonography. Induced non-vascular flow was detected in endometriotic cyst fluid. Three-dimensional power Doppler sonography combined with the cube method gave reproducible information for all indices except VFI 2. These indices might prove to be a new predictor in all fields of neoangiogenesis. The clinical relevance remains to be determined.

Abscess↗

Personality traits in juvenile delinquents: relation to criminal behavior and recidivism.

OBJECTIVE: To examine the relation between personality traits and criminal behavior and to determine whether such factors are predictive of future recidivism. METHOD: A sample of 481 incarcerated males (mean age = 16 years) completed questionnaires assessing distress and restraint relating to personality characteristics. In addition, official criminological data were gathered from subjects' records. A subsample of 148 juveniles was followed up to 4.5 years after release and examined for rearrests and time out of prison since last incarceration. RESULTS: Results indicate a significant association between self-reported levels of distress and restraint and prior criminal behavior as well as behavior during incarceration. Furthermore, of the sample surveyed, 67% were rearrested. Personality traits measured during incarceration were predictive of recidivism rates, above and beyond the effects of such criminological factors as age and number of prior offenses. CONCLUSIONS: The results support the view that juvenile delinquents are a heterogeneous population in terms of personality features. These traits have discriminant and predictive validity. Adding personality measures to the assessment of delinquents may further our understanding of how personality influences criminal activity and future recidivism. We may be able to use this understanding to target specific domains of functioning to develop more effective intervention strategies.

Adolescent↗

Gay, lesbian, and bisexual youth risks for emotional, physical, and social problems: results from a community-based survey.

OBJECTIVE: Health problems of gay, lesbian, and bisexual (GLB) youth are reported as differing from those of heterosexual youth. Increased depression, suicide, substance use, homelessness, and school dropout have been reported. Most studies of GLB youth use clinical or convenience samples. The authors conducted a community school-based health survey that included an opportunity to self-identify as GLB. METHOD: An anonymous self-report health care questionnaire was used during a community-based survey in 2 high schools in an upper middle class district. RESULTS: Significantly increased health risks for self-identified GLB youth were found in mental health, sexual risk-taking, and general health risks compared with self-identified heterosexuals, but not in health domains associated with substance abuse, homelessness, or truancy. CONCLUSIONS: Self-identified GLB youth in community settings are at greater risk for mental health, sexual risk-taking, and poorer general health maintenance than their heterosexual peers.

Adolescent↗