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Biomedical subjects

H Simonsen

Publications and source records attributed to H Simonsen.

At least 19 recordsLinked to original sources

Glyceryl trinitrate may trigger endogenous nitric oxide production in patients with chronic tension-type headache.

Experimental studies in humans have shown that nitric oxide (NO) may play an important role in initiation of primary headaches. It has been proposed that activation of L-arginine-NO pathway and increased endogenous production of NO may be responsible for NO induced headache. NO is synthesized from L-arginine and that reaction also yields citrulline. In the present study we aimed to investigate plasma levels of citrulline and arginine as markers of NO production after infusion of the NO donor, glyceryl trinitrate (GTN). We recruited 16 patients with chronic tension-type headache and 16 healthy controls. The subjects were randomly allocated to receive 0.5 microg/kg/min GTN or placebo over 20 min. Patients were examined on headache free days. Blood samples were collected at baseline and 60 min after start of infusion. Both patients and controls developed stronger immediate headache on the GTN day than on the placebo day (P = 0.008). The headache was more pronounced in patients than in controls (P = 0.02). Plasma levels of citrulline increased significantly 60 min after start of GTN infusion compared to placebo infusion in patients (P = 0.01) but not in controls (P = 0.50). Plasma levels of arginine were unchanged in both patients (P = 0.12) and controls (P = 0.18). We suggest that GTN administration may trigger endogenous production of NO in patients with chronic tension-type headache resulting in activation of perivascular sensory afferents.

Adult↗

Comparison of Kistler 9861A force platform and Chattecx Balance System for measurement of postural sway: correlation and test-retest reliability.

Measurement of postural sway has several potential applications in sports medicine. Traditionally, however, rather complicated equipment has been applied. The purpose of the study was to compare two devices based on two different methods of measuring postural sway: (i) a sophisticated Kistler 9861A force platform (KIS)--which all but requires a laboratory setting--and (ii) Chattecx Balance System (CBS)--which is particularly suited for measurement of sway in the dynamic environment of sports. Measurement of sway was performed in 29 subjects twice at baseline and twice at follow-up 2-4 weeks later. One measurement consisted of four 25-second sequences (eyes open, parallel feet; eyes closed, parallel feet; eyes open, tandem Romberg; eyes closed, tandem Romberg). Factor analysis revealed influence of sight and stance on sway, marked interaction between these two factors and a decrease in sway on retest on the same day. Coefficients of variation were--KIS: 0.13-0.23; CBS: 0.11-0.25. Body height was a covariate for all parameters. Kistler 9861A force platform and CBS were correlated (baseline: r(s) = 0.47; follow-up: r(s) = 0.9). These findings suggest that, when the effects of acclimatization and covariance of body height were taken into account, CBS was as reliable and reproducible as KIS in our laboratory.

Adult↗

Hypoglycaemia and elevated urine ethylmalonic acid in a child homozygous for the short-chain acyl-CoA dehydrogenase 625G > A gene variation.

UNLABELLED: The aim of this case report is to call attention to short-chain acyl-CoA dehydrogenase (SCAD) deficiency as a possible contributory factor to hypoglycaemia in childhood. We report on a previously healthy 14 mo-old Danish boy who presented with hypoglycaemia and metabolic acidosis after a few days of upper airway infection. After two days on a normal diet, he recovered clinically and biochemically. A thorough biochemical examination did not reveal the cause of the hypoglycaemia. However, the excretion of ethylmalonic acid in two morning urine samples was moderately increased, and hence the SCAD gene was screened for mutations. We found the child homozygous for the G > A SCAD gene variation at position 625. CONCLUSION: In this patient, reduced function of the SCAD protein is reflected in the excretion of ethylmalonic acid, a marker of intracellular accumulation of butyryl-CoA and the cytotoxic butyric acid. Furthermore, gluconeogenesis might be compromised owing to lack of reducing equivalents from the oxidation of short-chain fatty acids in the fasting or stressed state, thus contributing to the predisposition for fasting hypoglycaemia.

Acyl-CoA Dehydrogenase↗

Molecular genetic basis and prevalence of glycogen storage disease type IIIA in the Faroe Islands.

Glycogen storage disease type IIIA (GSD IIIA) is caused by mutations of the amyloglucosidase gene (AGL). For most populations, none of the AGL mutations described to date is particularly frequent. In this paper, we report that six children with GSD IIIA from the Faroe Islands were found to be homozygous for the novel nonsense mutation c.1222C>T (R408X) of the AGL gene. This mutation is easily detected by restriction enzyme digest with NsiI after mismatch PCR. Investigating five intragenic polymorphisms, we could show that this mutation was always associated with the same haplotype. The c.1222C>T mutation could be detected on two chromosomes of another 50 unselected GSD IIIA patients of other European or North American origin which means that this mutation plays a minor role worldwide. From the fact that we are currently aware of a total of 14 GSD IIIA cases in the Faroese population of 45 000, the observed prevalence is 1 : 3100. While the novel AGL mutation c.1222C>T was not detectable among 198 German newborns, nine out of 272 children from the Faroese neonatal screening program were found to be heterozygous for this mutation. Thus, the calculated prevalence is 1 : 3600 (95% CI 1:700-1:6400). We conclude that due to a founder effect, the Faroe Islands have the highest prevalence of GSD IIIA world-wide. The detection of the molecular defect has facilitated the diagnosis and has offered the opportunity for prenatal diagnosis in this patient group.

Codon, Nonsense↗

Neonatal screening for galactosemia by quantitative analysis of hexose monophosphates using tandem mass spectrometry: a retrospective study.

BACKGROUND: Classic galactosemia (OMIM 230400) is an inherited disorder in the metabolism of galactose caused by deficiency of the enzyme galactose 1-phosphate uridyl transferase (EC 2.7.7.12). Galactosemia leads to accumulation of galactose and galactose 1-phosphate (gal-1-P) in blood and tissues and, if untreated, produces neonatal death or severe mental retardation, cirrhosis of the liver, and cataracts. Hence, the disorder is included in many neonatal screening programs. METHODS: We retrospectively analyzed filter-paper blood samples obtained 4-8 days postpartum for routine neonatal screening from 12 galactosemia patients and 2055 random controls. Total hexose monophosphates (HMPs) were used as a marker of gal-1-P and were assayed by negative-ion mode electrospray tandem mass spectrometry (tandem MS) with settings biased toward gal-1-P detection. The predominant precursor/product ion pair m/z 259/79 was used to quantify total HMPs by external standardization. RESULTS: Linear calibration curves were obtained in the range 0-8 mmol/L gal-1-P. The detection limit was 0.1 mmol/L HMP, and total CVs ranged from 13% at the detection limit to <8% at >1 mmol/L HMP. The method was in agreement with an alkaline phosphatase-galactose dehydrogenase method. All samples from galactosemia patients contained increased HMP concentrations (range for patients, 2.6-5.2 mmol/L; range for reference group, <0.10-0.94 mmol/L). The diagnostic sensitivity and specificity were 100% at a cutoff of 1.2 mmol/L HMP. A Duarte/classic galactosemia compound heterozygous sample could be discriminated clearly from both patient and reference samples. CONCLUSION: Quantitative analysis of HMPs by tandem MS can be used in laboratory investigations of galactosemia.

Alkaline Phosphatase↗

Neonatal level of thyroid-stimulating hormone and acute childhood leukemia.

One of the more consistent findings in leukemia research is the association between birth weight and childhood leukemia. Because thyroid hormones are critically involved in growth and differentiation, we speculated that hormone levels could be of significance to the development of leukemia in early life. Specifically, we hypothesized that high levels of thyroid-stimulating hormone (TSH) would be associated with a low risk of leukemia. Accordingly, high TSH (low free thyroid hormone) early after birth most likely reflects low function of the thyroid accompanied by low rate of cell turnover and so lower risk of faulty cell divisions leading to cancer. In a matched case-control study nested from all singleton children born in Denmark between 1986 and 1998, we compared levels of TSH (as measured in a neonatal screening program for congenital hypothyroidism) in 188 cases of acute lymphoblastic leukemia (ALL) and 28 of acute myeloid leukemia (AML) with levels in 1,450 and 216 matched controls, respectively. Data were analyzed using conditional logistic regression and odds ratios (OR) were adjusted for birth weight. As hypothesized, we found a decreased risk of ALL and AML associated with high TSH (OR(ALL) = 0.7 [0.5-1.0]; OR(AML) = 0.3 [0.1-1.0]). However, both conditions were also associated with low levels of TSH (OR(ALL) = 0.4 [0.2-0.7]; OR(AML) = 0.3 [0.1-1.4]). In conclusion, extreme TSH levels a few days after birth appears to be associated with a decreased risk of acute childhood leukemia.

Adolescent↗

Isolated 2-methylbutyrylglycinuria caused by short/branched-chain acyl-CoA dehydrogenase deficiency: identification of a new enzyme defect, resolution of its molecular basis, and evidence for distinct acyl-CoA dehydrogenases in isoleucine and valine metabolism.

Acyl-CoA dehydrogenase (ACAD) defects in isoleucine and valine catabolism have been proposed in clinically diverse patients with an abnormal pattern of metabolites in their urine, but they have not been proved enzymatically or genetically, and it is unknown whether one or two ACADs are involved. We investigated a patient with isolated 2-methylbutyrylglycinuria, suggestive of a defect in isoleucine catabolism. Enzyme assay of the patient's fibroblasts, using 2-methylbutyryl-CoA as substrate, confirmed the defect. Sequence analysis of candidate ACADs revealed heterozygosity for the common short-chain ACAD A625 variant allele and no mutations in ACAD-8 but a 100-bp deletion in short/branched-chain ACAD (SBCAD) cDNA from the patient. Our identification of the SBCAD gene structure (11 exons; >20 kb) enabled analysis of genomic DNA. This showed that the deletion was caused by skipping of exon 10, because of homozygosity for a 1228G-->A mutation in the patient. This mutation was not present in 118 control chromosomes. In vitro transcription/translation experiments and overexpression in COS cells confirmed the disease-causing nature of the mutant SBCAD protein and showed that ACAD-8 is an isobutyryl-CoA dehydrogenase and that both wild-type proteins are imported into mitochondria and form tetramers. In conclusion, we report the first mutation in the SBCAD gene, show that it results in an isolated defect in isoleucine catabolism, and indicate that ACAD-8 is a mitochondrial enzyme that functions in valine catabolism.

Alternative Splicing↗

High incidence of propionic acidemia in greenland is due to a prevalent mutation, 1540insCCC, in the gene for the beta-subunit of propionyl CoA carboxylase.

Propionyl CoA carboxylase (PCC) is a mitochondrial, biotin-dependent enzyme involved in the catabolism of amino acids, odd-chain fatty acids, and other metabolites. PCC consists of two subunits, alpha and beta, encoded by the PCCA and PCCB genes, respectively. Inherited PCC deficiency due to mutations in either gene results in propionic acidemia (PA), an autosomal recessive disease. Surprisingly, PA is highly prevalent among Inuits in Greenland. We have analyzed reverse transcriptase-PCR products of the beta-subunit mRNA, to characterize the responsible mutation(s). A 3-bp insertion, 1540insCCC, was found in homozygous form in three patients and in compound heterozygous form in one patient. The resulting PCC has no measurable activity, and the mutant beta-subunit appears to be very unstable. To test the hypothesis that a common mutation is responsible for PA in the Greenlandic Inuit population, 310 anonymous DNA samples of Inuit origin were screened for 1540insCCC. We found a carrier frequency of 5%, which is very high compared with those of most other autosomal recessive diseases. Analysis of alleles of a very closely linked marker, D3S2453, revealed a high degree of linkage disequilibrium between one specific allele and 1540insCCC, suggesting that this mutation may be a founder mutation.

Alleles↗

The (22(0)1-00(0)0) Band of CO(2) at 6348 cm(-1): Linestrengths, Broadening Parameters, and Pressure Shifts.

The (22(0)1-00(0)0) combination band of CO(2) around 6348 cm(-1) is studied with diode-laser spectroscopy, and linestrengths, collision-broadening parameters, and pressure shifts are determined. Linestrengths are modeled with a third-order Herman-Wallis expansion, and discrepancies with values reported in the literature are explained. Copyright 2000 Academic Press.

Journal Article↗

A retrospective anonymous pilot study in screening newborns for HFE mutations in Scandinavian populations.

We have retrospectively analyzed 837 random anonymized dried blood spot (DBS) samples from neonatal screening programs in Scandinavia for mutations in HFE, the candidate gene for hemochromatosis. We have found C282Y allele frequencies of 2.3% (+2.0%) (-1.3%) in Greenland, 4.5%+/-1.9% in Iceland, 5.1%+/-2.3% in the Faeroe Islands, and 8.2%+/-2.7% in Denmark. The high prevalence of HFE mutations in Denmark suggests that population screening for the C282Y mutation could be highly advantageous in terms of preventive health care. Long-term follow-up evaluation of C282Y homozygotes and H63D/C282Y compound heterozygotes will give an indication of the penetrance of the mutations.

Alleles↗

The 0 --> 3 Overtone Band of CO: Precise Linestrengths and Broadening Parameters.

Linestrengths and self-broadening parameters are determined with a standard uncertainty of 1% for 21 lines in the R branch of the 0 --> 3 overtone band of CO around 1.57 µm. The values are lower than those given in the Hitran database by 6-8% for the linestrengths and 1-5% for the collision broadening parameters, and they agree within 0-2% with more recent results obtained with FTIR. Also, results are given for foreign gas broadening by N2 and H2O. The line profiles show clear evidence for collisional narrowing with deviations corresponding to those expected for a Galatry profile. When analyzed in terms of a Voigt profile, this effect causes a reduction in effective Doppler width of about 5%. The linestrengths determined for gas mixtures are used for producing independent values for the CO concentrations. These results are derived without reference to any certified gas standard, and it is suggested that optical spectroscopy satisfies the criteria of a primary method set up by the Consultative Committee for Quantity of Matter (CCQM). Copyright 1999 Academic Press.

Journal Article↗

Technical aspects of neonatal screening using tandem mass spectrometry. Report from the 4th meeting of the International Society for Neonatal Screening.

Quantitative analysis of amino acids (AA) and acylcarnitines using tandem mass spectrometry is an emerging technology used to screen neonatal dried blood spot samples for disorders in the metabolism of AA, organic acids and fatty acids. This paper provides a brief review of some of the technically oriented issues which emerged at the 4th meeting of the International Society for Neonatal Screening in Stockholm, 1999. The information covers sample preparation, instrumentation, data acquistion modes, internal standards, interpretation, confounding factors and practical screening experience.

Amino Acid Metabolism, Inborn Errors↗

Biological specimen banks in neonatal screening.

The Danish neonatal screening program analyses dried blood spot samples (DBSS) from close to 70,000 newborns annually from Denmark, Greenland and the Faroe Islands. Since 1982, all DBSS have been stored in a biological specimen bank at -20 degrees C as a routine procedure after analysis. Before sampling, parents are given written information about the screening tests, the biobank and its use, and can choose to opt out. Since 1993 the biobank has been regulated by specific legislation, and thus assumes a unique position among biological specimen banks. Its purposes are: (i) diagnosis and treatment of diseases screened for, including repeat testing, quality assurance and group statistics; (ii) other diagnostic uses during infancy; and (iii) research projects. The stored samples have been used successfully to diagnose a range of genetic diseases using biochemical and molecular genetic assays, and to diagnose congenital CMV and toxoplasmosis infections using assays for specific IgM antibodies and pathogen nucleic acids. The unbiased nature and comprehensive coverage of the samples in the biobank make them attractive for research purposes. Our studies have focused on the epidemiology of genetic disease alleles and other molecular disease markers and on retrospective screening projects, which have allowed rapid appraisal of the performance of novel screening modalities, saving years of prospective screening trials. Storage of neonatal screening samples is thus beneficial not only to the individual testees, but also to future generations of newborns.

Biological Specimen Banks↗

Design of a pilot study to evaluate tandem mass spectrometry for neonatal screening.

In recent years, tandem mass spectrometry has generated great interest as a method for neonatal screening. The basic principle is electronically controlled separation of analytes by their mass-to-charge ratio. The advantage of this detection system is speed, the capability to analyze for many different compounds in a single analysis, and a minimal need for auxilliary assay reagents. The prevailing screening technique uses stable isotope dilution, butylesterification, and MS/MS analysis to quantify amino acids and acylcamitines in neonatal dried blood spot samples. This allows detection of more than 30 inborn errors of metabolism of amino acids, fatty acids, and other organic acids. In Denmark, a large-scale pilot study is being implemented to evaluate the screening potential of tandem mass spectrometry. National patient registers and medical records from clinical genetics units are used to identify cohorts of healthy infants and infants with selected inborn errors of metabolism. The neonatal screening samples of these infants are retrieved from a biobank and are assayed for amino acids and acylcarnitines using tandem mass spectrometry. This study yields decision values for neonatal screening, which will be evaluated in a subsequent 2-year prospective pilot study, offering the test to 140,000 neonates as a voluntary adjunct to the existing screening program. The organization consists of integrated units for neonatal screening and clinical genetics. The effect of the program will be assessed in terms of screening efficiency, cost and short term clinical outcome.

Amino Acids↗

[Neonatal screening in Denmark. Status and future perspectives].

In Denmark, the Faroe Islands, and Greenland, comprehensive screening of newborns for phenylketonuria and congenital hypothyroidism has been carried out for 20 years. The screening programme has detected 98 and 356 patients, respectively, corresponding to incidences of 1:12,000 and 1:3,400. The future savings on health care expenditures resulting from one year of neonatal screening are estimated to be 196 million DKK in present day value, which is 28 times higher than the cost of screening. The screening samples are stored in a biobank, which is used in diagnosis of congenital diseases and infant deaths and for development of future screening methods. It is desirable to expand the existing screening programme to include a range of rare inherited metabolic diseases, which collectively are frequent. This is realistic with the advent of tandem mass spectrometry, which allows cost-effective simultaneous screening for a group of inborn errors of metabolism.

Cost-Benefit Analysis↗

Determination of a common genetic variant of luteinizing hormone using DNA hybridization and immunoassays.

OBJECTIVE: An immunologically anomalous form of LH, due to two point mutations in codons 8 and 15 of the LH beta gene, has previously been described. LH status, i.e. the discrimination between wild-type (WT) and variant (V) LH, is usually determined by immunoassays, which can be unreliable at low serum concentrations of LH. A DNA hybridization assay was therefore developed to score the LH genotype in all subjects, independent of their serum LH concentrations. To evaluate the performance of the hybridization method, and to expand our observations of the worldwide occurrence of the V-LH, we determined its frequency in additional populations. To confirm the connection between the anomalous immunoreactivity and the V-LH beta gene, we also sequenced the LH beta subunit gene of a homozygous person. DESIGN: According to the ratio of two immunoassays, one detecting only WT-LH and the other detecting equally WT and V-LH, individuals can be classified as homozygotes for the V-LH beta allele, heterozygotes or WT. DNA samples from persons with known LH status, according to the immunoassays, were used for the development and evaluation of a new allele-specific DNA hybridization assay. This assay, and PCR and restriction fragment length polymorphism analysis, were used to determine the frequency of the V-LH beta allele in DNA samples obtained from eight populations. PATIENTS: Ambulatory adult men and women, apparently healthy and with no endocrine disorders. RESULTS: The LH genotyping by immunoassays and by the new hybridization method gave identical results with all samples analysed (n = 25). The V-LH beta subunit was observed to always have the two point mutations, and to be identical with the ones previously reported. The V-LH beta carrier frequency in the DNA samples collected from various populations varied between 0 and 53.5%. CONCLUSIONS: The immunoassay technique and the hybridization assay can be used as alternatives to determine the LH status. A great variation in carrier frequency of the V-LH beta allele is observed in different populations.

Adult↗

The frequency of an inactivating point mutation (566C-->T) of the human follicle-stimulating hormone receptor gene in four populations using allele-specific hybridization and time-resolved fluorometry.

We have described previously in the Finnish population an inactivating point mutation (566C-->T) in the human FSH receptor (FSHR) gene. In women, this mutation causes hypergonadotropic ovarian failure with arrest of follicular maturation and infertility, whereas in men, there is variable suppression of spermatogenesis, but no absolute infertility. To determine whether the same FSHR mutation occurs in other populations, its frequency was determined in Finland, Switzerland, Denmark, and the Chinese population of Singapore. The mutation was screened for using genomic DNA extracted from whole blood or dried blood spots. Exon 7 of the FSHR gene was first amplified using a pair of biotinylated primers. The PCR products were then immobilized on streptavidin-coated microtitration wells and hybridized using short allele-specific oligonucleotide probes labeled with europium. Time-resolved fluorometry was used for europium signal detection. To test the reliability of this method, 40 isolated DNA samples and 35 dried blood spot samples were blindly tested for the 566C-->T FSHR mutation. The analyses yielded identical results with denaturing gradient gel electrophoresis and allele-specific restriction enzyme digestion of the same samples, thus demonstrating the reliability of the tested method. Automation of this procedure allows the screening of large numbers of samples, which was subsequently carried out to investigate the frequency of the 566C-->T mutation in the study populations. A total of 4981 samples from the above-mentioned 4 countries were analyzed. The frequency of the 566C-->T mutation was 0.96% for all Finnish samples (n=1976), with a strong enrichment of the mutant allele in the northeastern part of the country. Only 1 mutation carrier was identified in the samples from Switzerland (n=1162), whereas none was found in samples from Denmark (n=1094) and the Singapore Chinese (n=540). These results suggest that the 566C-->T mutation of the FSHR gene is enriched in Finland, but is uncommon in other populations.

Alleles↗