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Jürgen Andrich

Publications and source records attributed to Jürgen Andrich.

15 recordsLinked to original sources

Error processing in Huntington's disease.

BACKGROUND: Huntington's disease (HD) is a genetic disorder expressed by a degeneration of the basal ganglia inter alia accompanied with dopaminergic alterations. These dopaminergic alterations are related to genetic factors i.e., CAG-repeat expansion. The error (related) negativity (Ne/ERN), a cognitive event-related potential related to performance monitoring, is generated in the anterior cingulate cortex (ACC) and supposed to depend on the dopaminergic system. The Ne is reduced in Parkinson's Disease (PD). Due to a dopaminergic deficit in HD, a reduction of the Ne is also likely. Furthermore it is assumed that movement dysfunction emerges as a consequence of dysfunctional error-feedback processing. Since dopaminergic alterations are related to the CAG-repeat, a Ne reduction may furthermore also be related to the genetic disease load. METHODOLOGY/PRINCIPLE FINDINGS: We assessed the error negativity (Ne) in a speeded reaction task under consideration of the underlying genetic abnormalities. HD patients showed a specific reduction in the Ne, which suggests impaired error processing in these patients. Furthermore, the Ne was closely related to CAG-repeat expansion. CONCLUSIONS/SIGNIFICANCE: The reduction of the Ne is likely to be an effect of the dopaminergic pathology. The result resembles findings in Parkinson's Disease. As such the Ne might be a measure for the integrity of striatal dopaminergic output function. The relation to the CAG-repeat expansion indicates that the Ne could serve as a gene-associated "cognitive" biomarker in HD.

Adult↗

No association between polymorphisms in the BDNF gene and age at onset in Huntington disease.

BACKGROUND: Recent evidence suggests that brain-derived neurotrophic factor (BDNF) is an attractive candidate for modifying age at onset (AO) in Huntington disease (HD). In particular, the functional Val66Met polymorphism appeared to exert a significant effect. Here we evaluate BDNF variability with respect to AO of HD using markers that represent the entire locus. METHODS: Five selected tagging polymorphisms were genotyped across a 65 kb region comprising the BDNF gene in a well established cohort of 250 unrelated German HD patients. RESULTS: Addition of BDNF genotype variations or one of the marker haplotypes to the effect of CAG repeat lengths did not affect the variance of the AO. CONCLUSION: We were unable to verify a recently reported association between the functional Val66Met polymorphism in the BDNF gene and AO in HD. From our findings, we conclude that neither sequence variations in nor near the gene contribute significantly to the variance of AO.

Adult↗

Assessment of simple movements reflects impairment in Huntington's disease.

Clinical rating, caudate atrophy, disturbed movement performance, neuropsychological testing, and age-related genetic disease load (CAG index) are tools that reflect impairment after onset of Huntington's disease (HD). Objectives were to compare scored HD symptoms, results of neuropsychological testing and of instrumental measurement of simple motion sequences, assess caudate atrophy and CAG index, and investigate their relation to each other in 131 subjects of various HD stages. Caudate atrophy and CAG index significantly increased in advanced HD patients. Motor test results significantly differed between HD patients and 49 controls, but not between HD gene carriers and controls. Instrumental test outcomes, scored HD intensity, caudate atrophy, and CAG index significantly correlated to each other. Neuropsychological testing, which we only performed in the HD gene carriers and the previously untreated HD patients, reflected the early appearance of HD symptoms and correlated with the motor test results. Results of our applied instrumental tool measure impaired movement performance, which is not specific for HD, but reflects the various methods assessed and the slowly evolving symptoms of the degenerative process in HD.

Adult↗

Mutations in TITF1 are not relevant to sporadic and familial chorea of unknown cause.

Benign hereditary chorea (BHC; OMIM 118700) is an autosomal dominant movement disorder. Mutations in the thyroid transcription factor 1 (TITF1) gene have been linked with BHC. The phenotype for BHC is highly variable and may include atypical features such as dystonia, slow saccades, and even cognitive deficits. Although BHC is commonly transmitted in a dominant manner, assessment of TITF1 mutations in familial or sporadic patients with late-onset nonprogressive or early-onset progressive chorea is of practical relevance in order to evaluate diagnostic strategies in single patients. In this study, 18 patients with chorea of unknown cause including index patients of three families with autosomal dominantly inherited nonprogressive chorea have been screened for TITF1 mutations by means of denaturating high-pressure liquid chromatography (dHPLC). No sequence variations were detected for the complete open reading frame, suggesting that TITF1 mutations are not a common cause of sporadic or familial chorea of unknown cause. Additionally, linkage analysis excluded TITF1 mutations in a large family with benign hereditary chorea.

Adolescent↗

Failure to confirm influence of methyltetrahydrofolate reductase (MTHFR) polymorphisms on age at onset of Huntington disease.

BACKGROUND: Huntington disease (HD) is a fully penetrant, autosomal dominantly inherited disorder associated with abnormal expansions of a stretch of perfect CAG repeats in the 5' part of the IT15 gene. The number of repeat units is highly predictive for the age at onset (AO) of the disorder. But AO is only modestly correlated with repeat length when intermediate HD expansions are considered. Recently, suggestive association has been reported between a single nucleotide polymorphism (SNP; rs1801131, also known as A1298C) in the methyltetrahydrofolate reductase (MTHFR) gene and AO of HD. 5,10-MTHFR is a key enzyme in the folate metabolism, diverting metabolites toward methylation reactions or nucleotide synthesis. Using part of a previously established study cohort plus additional patients and appropriate statistical methods, we reinvestigated two polymorphisms in the MTHFR gene, C677T and A1298C, as well as their association with AO in 167 HD patients. RESULTS: There was no statistically significant impact on AO for HD patients, neither of MTHFR SNPs nor of the combinations thereof. CONCLUSION: Contrary to previously described evidence the A1298C polymorphism in the MTHFR gene does not appear to modulate AO of HD patients.

Age of Onset↗

Age at onset of Huntington disease is not modulated by the R72P variation in TP53 and the R196K variation in the gene coding for the human caspase activated DNase (hCAD).

BACKGROUND: TP53 is an attractive candidate for modifying age of onset (AO) in Huntington disease (HD): The amino-terminus of the mutated huntingtin (htt) exon 1 translation product has functional properties which may affect critically the TP53 pathway in HD neurons. The pathogenic domain of mutant htt interacts with nuclear transcription factors, and it potentially modulates TP53-induced transcriptional events. A single nucleotide polymorphism (SNP) resulting in the R72P exchange in TP53 protein might modulate the variation in AO. In addition, also the R196K replacement in human caspase activated DNase (hCAD) may theoretically affect the AO. METHODS: We have genotyped the polymorphisms R72P and R196K in a well established cohort of 167 unrelated HD patients. RESULTS: The expanded CAG repeat explained 30.8% of the variance in AO. Adding the genotypes of the SNPs investigated did not affect the variance of the AO variance explained. CONCLUSION: In this replication study, no association was found explaining a significant amount of the variability in AO of HD thus contradicting a recent report.

Age of Onset↗

Mitochondrial impairment in patients and asymptomatic mutation carriers of Huntington's disease.

Huntington's disease (HD) is an autosomal dominantly inherited neurodegenerative disorder caused by a CAG repeat expansion in the IT-15 gene; however, it remains unknown how the mutation leads to selective neurodegeneration. Several lines of evidence suggest impaired mitochondrial function as a component of the neurodegenerative process in HD. We assessed energy metabolism in the skeletal muscle of 15 HD patients and 12 asymptomatic mutation carriers in vivo using 31P magnetic resonance spectroscopy. Phosphocreatine recovery after exercise is a direct measure of ATP synthesis and was slowed significantly in HD patients and mutation carriers in comparison to age- and gender-matched healthy controls. We found that oxidative function is impaired to a similar extent in manifest HD patients and asymptomatic mutation carriers. Our findings suggest that mitochondrial dysfunction is an early and persistent component of the pathophysiology of HD.

Adenosine Triphosphate↗

[Amisulpride in Huntington's disease].

OBJECTIVES: Amisulpride is a substituted benzamide derivative with atypical antipsychotic properties and low side effects. METHOD: We report four cases of patients with clinically and genetically established Huntington's disease and signs of psychosis who were treated with Amisulpride. RESULTS: Two patients developed extrapyramidal side effects due to the treatment. The antipsychotic therapy of all patients was effective. DISCUSSION: Due to degeneration of striatal neurons patients suffering from Huntington's disease react early with development of extrapyramidal side effects after therapy with amisulpride.

Aged↗

NR2A and NR2B receptor gene variations modify age at onset in Huntington disease.

N -Methyl-d-aspartate (NMDA) receptor-mediated excitotoxicity has been proposed to play a role in the pathogenesis of Huntington disease (HD), an autosomal dominantly inherited disorder associated with defined expansions in a stretch of perfect CAG repeats in the 5' part of the IT15 gene. The number of CAG repeat units is highly predictive for the age at onset (AO) in HD. However, AO is only modestly correlated with repeat length when the HD expansion range is in the high 30s or low 40s. Therefore, we investigated whether the genes for the different subunits composing the multimeric complexes of NMDA receptors (GRIN glutamate receptor, ionotropic, N-methyl-d-aspartate) represent candidates for modulating the AO of HD. In the studied cohort of 167 HD patients, the repeat range from 41 to 45 CAG units accounted for 30.8% of the variance in AO; 12.3% additional variance could be attributed to GRIN2B genotype variation and 4.5% to GRIN2A genotype variation. We conclude that these two genes, coding for NR2B and NR2A subtypes mainly expressed in the striatum, may influence the variability in AO of HD. Neuroprotective strategies for HD patients and persons at risk should be reconsidered in the light of these findings.

Adult↗

Glutathione S-Transferase Omega 1 variation does not influence age at onset of Huntington's disease.

BACKGROUND: Huntington's disease (HD) is a fully penetrant, autosomal dominantly inherited disorder associated with abnormal expansions of a stretch of perfect CAG repeats in the 5' part of the IT15 gene. The number of repeat units is highly predictive for the age at onset (AO) of the disorder. But AO is only modestly correlated with repeat length when intermediate HD expansions are considered. Circumstantial evidence suggests that additional features of the HD course are based on genetic traits. Therefore, it may be possible to investigate the genetic background of HD, i.e. to map the loci underlying the development and progression of the disease. Recently an association of Glutathione S-Transferase Omega 1 (GSTO1) and possibly of GSTO2 with AO was demonstrated for, both, Alzheimer's (AD) and Parkinson's disease (PD). METHODS: We have genotyped the polymorphisms rs4925 GSTO1 and rs2297235 GSTO2 in 232 patients with HD and 228 controls. RESULTS: After genotyping GSTO1 and GSTO2 polymorphisms, firstly there was no statistically significant difference in AO for HD patients, as well as secondly for HD patients vs. controls concerning, both, genotype and allele frequencies, respectively. CONCLUSION: The GSTO1 and GSTO2 genes flanked by the investigated polymorphisms are not comprised in a primary candidate region influencing AO in HD.

Age of Onset↗

Hyperhomocysteinaemia in treated patients with Huntington's disease homocysteine in HD.

Significantly increased plasma total homocysteine levels (t-Hcys) appeared in treated Huntington disease (HD) patients compared to controls and untreated HD subjects. Because the protein Huntingtin interacts with the homocysteine metabolism modulating enzyme cystathionine beta-synthase, we hypothesize that homocysteine promotes neurodegeneration in HD.

Adult↗

Assessment of complex movements reflects dysfunction in Huntington's disease.

Results of various complex instrumental tools, rating scales, caudate atrophy and CAG repeat length may reflect the severity of Huntington's disease (HD). A simple assessment task for dysfunction due to disease is the standardized, computer based performance of peg insertion. The objectives of our study were to compare scored HD symptoms, computed bicaudate diameter ratio (BDR), age related genetic disease load (CAG index = [CAG-35.5 x age]) and peg insertion scores between asymptomatic 34 HD gene carriers, 89 previously untreated HD patients with psychiatric or motor symptoms, or both, and 51 treated HD patients. We measured the period of the total time taken to insert 25 pegs from a rack into a series of appropriate holes, calculated the CAG index, estimated the bicaudate diameter ratio (BDR) of a current brain CT and scored the HD patients under blind conditions. Times for the peg insertion task significantly differed between HD patients and controls, but not between HD gene carriers and controls. BDR and CAG index reflected the increase of symptoms in HD. Peg insertion results and scored severity of HD, BDR and CAG index significantly correlated with each other. Peg insertion scores are not specific diagnostic markers for HD, but they reflect clinical symptoms of neurodegeneration. The performance of peg insertion involves visuospatial cognition, self-elaboration of internal strategies, sorting and planning of movement. Therefore peg insertion particularly reflects executive dysfunction in early HD and additionally motor impairment in advanced HD.

Adult↗

Relationship between major depression and heart rate variability. Clinical consequences and implications for antidepressive treatment.

A high sympathetic and/or a low cardiovagal activity in patients with major depression (MD) may contribute to the higher cardiac morbidity and mortality of MD patients. Standardized tests of heart rate variability (HRV) allow a quantitative estimation of autonomic nervous system function. However, previous studies on the relationship between HRV and MD have revealed conflicting results. Our study compared time and frequency domain HRV indices (5-min resting study, deep breathing test, Valsalva test) between 32 patients with MD (DSM-III-R) and 64 non-depressed controls. The severity of depressive symptoms was assessed by the Hamilton Depression Scale (HAM-D); patients were divided into subgroups with moderate (M-HAM-D<25) or severe depressive symptoms (S-HAM-D>or=25). After controlling for age, gender and smoking, S-HAM-D patients showed a higher heart rate and a significantly lower modulation of cardiovagal activity compared to controls. Although some of the HRV indices of the M-HAM-D group did not differ significantly from controls, they were in the expected direction. There was a significantly negative correlation between the HAM-D scores and the vagal HRV indices, suggesting a direct association between the severity of depressive symptoms and the modulation of cardiovagal activity. Clinical consequences arising from these findings and possible implications for treatment are discussed.

Adult↗

Short-term effects of intravenous benzodiazepines on autonomic neurocardiac regulation in humans: a comparison between midazolam, diazepam, and lorazepam.

OBJECTIVES: To evaluate the effects of intravenously applied diazepam, lorazepam, and midazolam on autonomic neurocardiac regulation assessed by standardized measurements of heart rate variability. DESIGN: Prospective, randomized clinical study. SETTING: University teaching hospital. PATIENTS: Forty-five patients, who underwent a gastroscopy, were randomly assigned to intravenous premedication with midazolam (5 mg), diazepam (10 mg), or lorazepam (4 mg). Six subjects refused an injection and served as nonpremedicated controls. INTERVENTIONS: Serial recordings of the 5-min resting heart rate variability were obtained before and 15 and 30 mins after premedication. Seven benzodiazepine-treated patients received intravenous flumazenil (0.5 mg). MEASUREMENTS AND MAIN RESULTS: The average doses applied were 0.07 mg/kg for midazolam, 0.13 mg/kg for diazepam, and 0.06 mg/kg for lorazepam. Fifteen minutes after intravenous benzodiazepines were administered, we found an increase in resting heart rate and a reduction of vagal tone compared with baseline in all three benzodiazepine-treated subgroups. Multivariate analysis (covariate age) of the changes in heart rate variability indices over the experimental course revealed a significant reduction in absolute high-frequency power with midazolam or diazepam compared with nonpremedicated subjects. Moreover, midazolam-treated subjects showed a significantly larger reduction in relative high-frequency power not only compared with nontreated subjects, but also compared with lorazepam- or diazepam-treated subjects. Vagal tone remained reduced compared with baseline even 30 mins after benzodiazepine application, however, the resting heart rate decreased toward baseline levels. After flumazenil administration, there was a linear correlation between an increase in high-frequency power and a corresponding decrease in resting heart rate. CONCLUSIONS: Benzodiazepines can influence autonomic neurocardiac regulation in man, probably through their interaction with the gamma-aminobutyric acidA-receptor chloride ion channel complex. The pattern of findings suggests that intravenous midazolam, diazepam, and lorazepam influence human autonomic neurocardiac regulation in a biphasic way. First, they cause a reduction of central vagal tone, and second, they may decrease the cardiac pacemaker directly. Flumazenil completely abolished the autonomic neurocardiac regulation effects of benzodiazepines.

Adult↗