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Biomedical subjects

W Herrmann

Publications and source records attributed to W Herrmann.

At least 37 records · Page 2Linked to original sources

Genetic defects as important factors for moderate hyperhomocysteinemia.

The genes for the enzymes methylenetetrahydrofolate reductase (MTHFR), methionine synthase (MS), methionine synthase reductase (MSR) and cytathionine-beta-synthase (CBS) play an important role in homocysteine metabolism. Rare mutations in these genes cause severe hyperhomocysteinemia and clinical symptoms. Growing interest has focused on common mutations with moderate effects on homocysteine levels. We studied 280 subjects of different age groups for the following mutations: MTHFR677C-->T and 1298A-->C, MS2756A-->G, MSR66A-->G and the 68 bp insertion in the CBS gene. The median value for homocysteine increased significantly with age (median homocysteine levels: 7.5, 12.4 and 16.5 micromol/l in the age groups 20-43, 65-75 and 85-96 years, respectively). The genotypes of the MTHFR677C-->T mutation were associated with differences in plasma homocysteine levels, but without reaching significance. Individuals homozygous for the MTHFR677C-->T mutation had a 2.3 micromol/l higher median homocysteine level compared to individuals with the wild-type allele. This effect was pronounced in combination with low folate levels and abolished with higher folate in plasma. For the other three mutations no association with homocysteine values could be determined. The analysis of homocysteine metabolite cystathionine by backward regression analysis revealed a significant correlation of the MS2756A-->G mutation with cystathionine level. This increase could indicate a disturbed remethylation. In summary, larger and homogeneous study populations are necessary to quantify the small effects of common mutations on homocysteine levels. This may also be the reason that no effects of genetic interactions between two genotypes were observed.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Homocysteine, cystathionine, methylmalonic acid and B-vitamins in patients with renal disease.

Moderate hyperhomocysteinemia is very frequent in renal patients. Aside from homocysteine (HCY) itself, the metabolites methylmalonic acid (MMA) and cystathionine (CYS) supply further information about disturbances in HCY metabolism. In two groups of renal patients, transplant and hemodialysis patients, we measured HCY, MMA and CYS and evaluated their diagnostic value for impaired HCY metabolism due to vitamin deficiency and renal insufficiency. We investigated serum samples from 63 transplant patients and 38 patients undergoing hemodialysis. HCY, MMA and CYS were assayed by gas chromatography-mass spectrometry, vitamin B6 by HPLC, B12 and folate by chemiluminescence immunoassay. The determination of HCY, MMA, and CYS in renal patients provides specific information about intracellular disturbances of HCY metabolism. The frequency of increased metabolite levels in renal patients was much higher than the frequency of lowered vitamin concentrations in serum. Furthermore, the metabolite levels in transplant patients were only moderately increased, whereas they were strongly increased in patients on hemodialysis (HCY 19.2 vs. 28.8 micromol/l, MMA 292 vs. 1025 nmol/l, CYS 733 vs. 2711 nmol/l). Our findings may support the use of MMA determination in the diagnosis of vitamin B12 deficiency in renal patients. Compared to vitamin B12 deficiency, renal dysfunction itself appears to cause only a modest elevation in serum MMA. Regression analysis revealed that the moderate elevation of HCY and CYS in transplant patients is mainly a consequence of impaired remethylation of HCY to methionine with activated transsulfuration, whereas the mildly elevated MMA level is attributable to renal dysfunction. In patients on hemodialysis, all three metabolites were markedly elevated, indicating a strongly disturbed HCY metabolism. Based on a backward regression, we discovered that the HCY metabolism was strongly disturbed by renal insufficiency and vitamin deficiency. The markedly elevated HCY level was mainly attributable to functional vitamin B12 deficiency indicated by high MMA, and the strong CYS elevation was due to renal dysfunction and inhibition of this pathway by low levels of vitamin B6. In conclusion, besides HCY, the determination of MMA and CYS levels supports an early diagnosis of B-vitamin deficiency in renal patients. MMA is a more sensitive indicator of intracellular vitamin B12 deficiency than vitamin B12 in serum.

Adolescent↗

Total homocysteine, vitamin B(12), and total antioxidant status in vegetarians.

BACKGROUND: Decreasing or eliminating animal products from the diet decreases the intake of some essential nutrients, such as vitamin B(12), which may lead to hyperhomocysteinemia. We investigated vitamin B(12)-dependent metabolism and oxidative stress in groups with various or no intake of meat or animal products. METHODS: We investigated 44 high meat eaters, 19 low meat eaters, 34 lacto-ovo/lacto vegetarians, and 7 vegan vegetarians. Homocysteine (HCY) was assayed by HPLC, methylmalonic acid (MMA) by capillary gas chromatography-mass spectrometry, serum folate and vitamin B(12) with a chemiluminescence immunoassay, and total antioxidant status (TAS) by a Randox method. RESULTS: The mean serum HCY concentration of vegetarians was significantly increased, and in vegans the median concentration exceeded 15 micromol/L. Vegetarians had a higher serum concentration of MMA but a lower TAS. Vitamin B(12) and folate did not differ significantly between vegetarian and omnivorous subjects. Overall, HCY and MMA were significantly correlated. Vitamin B(12) correlated negatively with MMA, HCY, and folate, whereas the correlation with TAS was positive. Backward regression analysis revealed an independent influence of MMA on HCY, of HCY and vitamin B(12) on MMA, and of vitamin B(12) on TAS. The increased MMA concentration suggested a 25% frequency of functional vitamin B(12) deficiency in all vegetarians. Serum vitamin B(12) was below the lower reference limit in only five subjects. CONCLUSIONS: Functional vitamin B(12) deficiency in vegetarians may contribute to hyperhomocysteinemia and decreased TAS, which may partly counteract the beneficial lifestyle of vegetarians. However, increased serum HCY is most likely not responsible for the lower TAS values in vegetarians. We recommend assaying of MMA and HCY to investigate functional vitamin B(12) status.

Adult↗

Fluorescence-based single-strand conformation polymorphism analysis of mutations by capillary electrophoresis.

Capillary electrophoresis in combination with fluorescence-based single-strand conformation polymorphism (SSCP) analysis was used to screen for known mutations as well as for unknown mutations. The mutations causing hemochromatosis and thrombogenetic diseases (factor V Leiden mutation and prothrombin mutation) are well defined. Familial hypercholesterolemia is caused by mutations in the low density lipoprotein (LDL) receptor gene. Because the mutations are heterogeneously localized in all 18 exons of the LDL receptor gene, effective screening procedures are necessary. The three well known mutations and 59 of 61 previously characterized mutations in the LDL receptor gene were detected by a distinct abnormal fragment pattern in capillary electrophoresis. The remaining two mutations in the LDL receptor gene showed only slight abnormalities under standard electrophoresis conditions (13 kV, 30 degrees C, 30 min). However, the abnormal pattern could be amplified by increasing the electrophoresis temperature. In all cases, heterozygous and homozygous mutations could clearly be differentiated from wild-type alleles. Because of the high efficiency of mutation detection, capillary electrophoresis in combination with fluorescence-based SSCP analysis would be attractive for the detection of well-defined mutations as well as for the screening of unknown mutations. The accuracy and the degree of automation make this technique well suited for routine genetic diagnosis.

Animals↗

Genetic Polymorphism of Methylenetetrahydrofolate Reductase (MTHFR) and Coronary Artery Disease.

A high plasma homocysteine concentration is a risk factor for atherosclerotic disease and venous thrombosis. Homocysteine levels are influenced by folic acid, vitamin B 6 and vitamin B 12, as well as by hereditary factors. A common genetic variant of the methylenetetrahydrofolate reductase (MTHFR) gene CC 677 T) is associated with thermolability of the MTHFR enzyme and elevated plasma homocysteine concentration, especially in those with low folic acid concentration. The prevalence of point mutation (nucleotide 677 C --> T) in MTHFR was measured in patients with coronary artery disease (CAD) who all underwent coronary artery bypass surgery (62 cases; age 64.0 +/- 9.5 years), and was compared with, age-matched control subjects. In patients with coronary artery disease (CAD), we investigated the prevalence of point mutation (nucleotide 677 C --> T) in MTHFR in comparison with control subjects. Heterozygous (C/T) prevalence for the 677 C --> T mutation in the MTHFR was higher in patients with CAD than in control subjects (P < 0.05). The prevalence of homozygosity (C/C) for wild-type MTHFR was lower in patients with CAD in comparison with control subjects (P < 0.05).

Journal Article↗

Role of homocysteine, cystathionine and methylmalonic acid measurement for diagnosis of vitamin deficiency in high-aged subjects.

BACKGROUND: Intracellular B-vitamin and folate deficiency indicated by hyperhomocysteinemia is very frequent in the elderly population. Hyperhomocysteinemia increases the risk of atherothrombotic diseases and neuropsychiatric complications. Our aim was to evaluate the prevalence of increased serum metabolite concentrations in subjects of a higher age, and whether the measurement of metabolite concentrations is more effective in diagnosing B-vitamin deficiency than mere homocysteine. MATERIALS AND METHODS: Homocysteine (HCY), cystathionine (CYS) and methylmalonic acid (MMA) were investigated in serum together with vitamin B-12, B-6 and folate in 90 high-aged subjects (85-102 years), 92 seniors (65-75 years), and in 50 younger subjects (19-50 years). RESULTS: Elderly subjects (high-aged and senior) had elevated serum concentrations of metabolites. High-aged subjects had a higher frequency of pathological increases than seniors: HCY 62% vs. 24%; MMA 62% vs. 23%; CYS 81% vs. 36%. Folate and vitamin B-6 concentrations were significantly decreased in both elderly groups; vitamin B-12 was only decreased in high-aged subjects. Utilising vitamin B-6, B-12 and folate for diagnosis of intracellular vitamin deficiency, the rate was 30% in seniors and 55% in high aged subjects. However, utilising the metabolites (HCY, MMA and CYS) for the diagnosis of intracellular vitamin deficiency, there was a distinctly increased rate of 55% in seniors respective to 90% in high-aged subjects. Backward multiple regression analysis revealed that only folate, MMA, creatinine and age were independent variables influencing the HCY concentration. Furthermore, the MMA concentration was significantly and independently influenced by folate, vitamin B-12, HCY and creatinine, and the serum concentration of CYS by vitamin B-12, creatinine and age. CONCLUSION: The metabolites HCY, MMA and CYS are sensitive indicators diagnosing impaired remethylation of homocysteine to methionine with parallel activation of catabolic pathway. Compared to mere HCY or B-vitamins in serum, the efficiency of diagnosing a disturbed HCY metabolism increases very much in utilising the metabolites HCY, MMA and CYS. For differential diagnosis, parallel measurement of folate and creatinine is recommended. The early and correct diagnosis of B-vitamin deficiency in elderly subjects is of high clinical relevance.

Adult↗

An increased serum level of free Apo(a) in renal patients is more striking than that of Lp(a) and is influenced by homocysteine.

Lipoprotein(a) [Lp(a)] excess combined with hyperhomocysteinaemia and hyperfibrinogenaemia may contribute to the high incidence of vascular diseases in dialysis patients. This study is aimed at investigating the role of free apolipoprotein(a) [fapo(a)] in renal patients. We have been able to show that, as compared with controls (0.53 mg/l), the median serum concentrations of fapo(a) in patients with nephrotic syndrome (2.58 mg/l) and with peritoneal dialysis (3. 40 mg/l) were strongly elevated (5- to 7-fold), while the fapo(a) levels in patients undergoing haemodialyis (1.02 mg/l) and after renal transplantation (0.90 mg/l) were about doubled. The observed differences in fapo(a) levels indicate that several mechanisms may increase the level of fapo(a), i.e., reduced renal clearance, enhanced hepatic synthesis, or homocysteine releasing apolipoprotein(a) from Lp(a). In the study collective, the median total homocysteine levels were significantly elevated in all patient groups, stronger in patients on haemodialysis (31.4 micromol/l) and peritoneal dialysis (31.2 micromol/l) than in patients with nephrotic syndrome (19.7 micromol/l) and after renal transplantation (19.5 micromol/l). In transplant patients with adequate renal function and without other apolipoprotein(a)-increasing factors, fapo(a) was significantly increased when total homocysteine exceeded 22 micromol/l. In conclusion, our findings let us presume that an increased fapo(a) level in renal patients possibly could be one of the reasons contributing to the high incidence of vascular diseases in these patients, because fapo(a) not covalently linked with Lp(a) is even more easily able to inhibit the fibrinolytic system than the complete Lp(a). These preliminary results have to be confirmed by further investigations.

Adolescent↗

Plasma homocysteine and lipoprotein profile in patients with peripheral arterial occlusive disease.

Several studies have identified moderate hyperhomocysteinemia (HCy) as an independent risk factor for atherosclerosis. The purpose of this case control study was to determine lipoprotein profile and homocysteine concentration in serum of 85 male patients with peripheral arterial occlusive disease (PAOD) and in 51 normolipidemic age-matched male controls. Cholesterol, triglycerides, and high-density lipoprotein (HDL) cholesterol as well as subfractions HDL2 and HDL3 cholesterol, low-density lipoprotein (LDL) cholesterol, apo B, apo A-I, and lipoprotein particles LpA-I and LpA-I:A-II were measured in serum. Homocysteine, folic acid, and vitamins B6 and B12 were determined with the help of high-pressure liquid chromatography. The 677 C --> T mutation in the methylenetetrahydrofolate reductase (MTHFR) gene was analyzed in PAOD patients. Patients with peripheral arterial occlusive disease showed a significantly higher mean concentration of homocysteine than control subjects (p<0.001). There was a negative correlation between the levels of homocysteine and vitamin B12 as well as folic acid (for vitamin B12: r=-0.40 and for folic acid: r=-0.38). The prevalence of hyperhomocysteinemia (Hcy >16 micromol/L) in the patients was 45% in contrast to 8% in controls. HDL cholesterol, HDL3 cholesterol, Apo A-I, and Lp A-I were significantly reduced in patients and triglycerides were elevated. The elevated plasma homocysteine concentration is frequently seen in homozygous carriers of a point mutation (677 C --> T) in the methylenetetrahydrofolate reductase gene, as the product of this gene is an enzyme, participating in homocysteine remethylation. The homozygous state for the 677 C --> T mutation was found in 13.3% of PAOD patients.

Aged↗

Comparison of procalcitonin, sCD14 and interleukin-6 values in septic patients.

The aim of the study was to investigate whether procalcitonin, soluble CD14 and interleukin-6 show advantages in predicting the outcome and specificity for bacterial infection in patients with sepsis in comparison to common C-reactive protein measurement. Laboratory parameters were measured in plasma of patients during 14 days following the diagnosis of sepsis. Patients fulfilling the ACCP/SCCM criteria for sepsis were admitted to an intensive care unit (n=35). Procalcitonin was measured with an immunoluminometric assay, and soluble CD14 and interleukin-6 were analysed by ELISA. C-reactive protein was determined nephelometrically. Measurements were performed on days 0, 1, 2, 3, 4, 7 and 14. Separating the patients into survivors (n=22) and non-survivors (n=13), it was demonstrated that non-survivors mostly exhibited, after the day of admission, increasing procalcitonin concentrations which peaked around days three and four. In contrast, the procalcitonin concentrations of survivors fell continuously to the value of 2.1 ng/ml which was reported to be important for patients prognosis. The difference between procalcitonin median values of survivors (n=22) and non-survivors (n=13) attained the level of statistical significance on day 7 and on day 14 (p=0.05). When comparing the median values of Creactive protein, soluble CD14 and interleukin-6 between survivors and non-survivors, no significant differences were detectable. In this study, plasma concentrations of soluble CD14 and interleukin-6 showed no predictive value for patients' outcome as compared with established laboratory parameters such as C-reactive protein or leukocyte count. Monitoring of procalcitonin seemed to detect severe episodes of sepsis and may improve the laboratory monitoring of septic patients.

Biomarkers↗

Fluorescence-based single-strand conformation polymorphism analysis of the low density lipoprotein receptor gene by capillary electrophoresis.

We describe here a new method to screen for unknown mutations in the low density lipoprotein (LDL) receptor gene by the use of capillary electrophoresis in single-strand conformation polymorphism (SSCP) analysis. To analyze the promoter and all 18 exons, 20 different amplification reactions were necessary. For each polymerase chain reaction (PCR), the forward and reverse primers were 5' fluorescent-labelled with FAM and HEX, respectively. To test the accuracy of the newly developed method, 61 genetic variants distributed in 16 exons were analyzed. Under identical electrophoresis conditions (13 kV, 30 degrees C, 30 min), 59 mutations were detected by a distinct abnormal SSCP pattern. The two remaining mutations showed only slight abnormalities, which could be amplified by increasing the electrophoresis temperature. The high accuracy, the degree of automation and the speed of analysis make fluorescence-based SSCP analysis with capillary electrophoresis ideal for rapid mutation screening and the technique is well-suited for clinical applications.

Base Sequence↗

Hyperhomocysteinemia in high-aged subjects: relation of B-vitamins, folic acid, renal function and the methylenetetrahydrofolate reductase mutation.

Moderate hyperhomocysteinemia is an atherogenic risk factor and plays an important role in geriatrics. Here, we have investigated the role of hyperhomocysteinemia in two elderly groups: 104 longeval subjects of 85-102 years, 100 seniors aged 65-75 years, and 75 controls of 19-60 years. Elevated homocysteine levels were found in 58% of longeval subjects in comparison with 32% in seniors. The homocysteine level in serum correlated positively with age as well as serum creatinine, and inversely with serum folate, but there was no correlation with serum B-vitamins. The frequency of vitamin B deficiency in serum of longeval subjects compared to seniors was as follows: vitamin B6 43% vs. 22%, vitamin B12 20% vs. 8%, and folic acid 1% in both groups. Increased serum creatinine levels (> 1.1 mg/dl) were found in 63% of the longeval subjects and in 32% of seniors. The 677-missense mutation in the methylenetetrahydrofolate reductase (MTHFR) gene, responsible for moderate homocysteine elevation, was found in 35, 37 and 27% of alleles in longeval persons, senior subjects and younger controls, respectively, showing no significant difference in frequency distributions of the MTHFR gene mutation. It can be concluded that hyperhomocysteinemia is very common with increased age. Its importance as an atherogenic risk factor with advanced age has to be clarified.

Adult↗

Laparoscopic bladder 'wrap' technique for repair of vesicoureteric reflux in a porcine model.

PURPOSE: The aim of this study was to determine if vesicoureteric reflux (VUR) can be successfully corrected laparoscopically by a bladder "wrap" technique in a pig model. METHODS: In 15 female piglets (mean weight, 22.5 kg) bilateral VUR was created by an open technique (11 grade 3, 2 each of grades 2 and 4). Eight weeks later (range, 4to 16 weeks) VUR was confirmed by fluoroscopic cystogram, and unilateral laparoscopic correction was performed. The contralateral ureter was used as a control. The bladder was emptied, and a 3F ureteric catheter was inserted on the repair side. Four 11-mm ports were inserted transperitoneally. The ureter was dissected to the ureterovesical junction (UVJ). Commencing at the UVJ, 2 (n = 9) or 3 (n = 6) black silk sutures were placed through the bladder muscle on either side of the ureter creating a bladder wrap around the distal 2 to 4 cm of ureter. At a mean of 16 weeks (range, 4 to 24 weeks) cystograms were repeated. The animals were killed the bladder and ureters underwent histopathology examination. RESULTS: VUR was corrected in 12 animals (80%). There was persistence of VUR in 2 and ureteric obstruction in 1. The wrap was intact in all animals. CONCLUSIONS: Laparoscopic correction of VUR by the bladder wrap technique is successful in pigs. Long-term follow-up studies will determine if this will be a satisfactory alternative surgical treatment for correction of VUR in children.

Animals↗

Measurement of thiols in human plasma using liquid chromatography with precolumn derivatization and fluorescence detection.

A liquid chromatography (LC) method for the simultaneous measurement of the main low molecular mass thiols (i.e., cysteine, cysteinylglycine, homocysteine, and glutathione) in human plasma is described. The sample treatment consists of the reduction of disulfide bounds with tri-n-butylphosphine and protein precipitation with trichloroacetic acid followed by precolumn derivatization with a thiol-selective fluorogenic reagent (7-fluoro-2,1,3-benzoxadiazole-4-sulfonamide). The structure of thiol derivatives is assessed using electrospray ionization-mass spectrometry (MS). The stability of resulting adducts in acidic medium (24 h at 10 degrees C) allows the automation of the technique and a high throughput of samples (approximately 50 per day). Separation is complete within 12 min using isocratic reversed-phase mode, and detection is operated by spectrofluorimetry (lambda ex = 385 nm and lambda em = 515 nm). Quantitation is performed by an internal standardization mode using thioglycolic acid. The LC method is fully validated, and homocysteine concentrations obtained in plasma samples are compared with values measured using either fluorescence polarization immunoassay or capillary gas chromatography-MS; a good correlation is observed between LC and both methods. The method has been applied in daily use to a large-scale study in a human healthy population, and some resulting data are discussed.

Adolescent↗

Artifact processing in computerized analysis of sleep EEG - a review.

Quantitative analysis of sleep EEG data can provide valuable additional information in sleep research. However, analysis of data contaminated by artifacts can lead to spurious results. Thus, the first step in realizing an automatic sleep analysis system is the implementation of a reliable and valid artifact processing strategy. This strategy should include: (1) high-quality recording techniques in order to minimize the occurrence of avoidable artifacts (e.g. technical artifacts); (2) artifact minimization procedures in order to minimize the loss of data by estimating the contribution of different artifacts in the EEG recordings, thus allowing the calculation of the 'corrected' EEG (e.g. ocular and ECG interference), and finally (3) artifact identification procedures in order to define epochs contaminated by remaining artifacts (e.g. movement and muscle artifacts). Therefore, after a short description of the types of artifacts in the sleep EEG and some typical examples obtained in different sleep stages, artifact minimization and identification procedures will be reviewed.

Artifacts↗

Determination of free apolipoprotein(a) in serum by immunoassay and its significance for risk assessment in patients with coronary artery disease.

This paper describes a new enzyme-linked ligand sorbent assay (ELLSA) to quantify free apolipoprotein(a) (apo(a)). The new test immobilizes free apo(a) utilizing a specific peptide that carries the amino acid sequence of a non-covalent apo(a) binding site on apoB3375-3405 (ligand-peptide). The ligand-peptide coupled to Sepharose was used in affinity chromatography to separate free apo(a) from whole serum. Isolated free apo(a) consisted of full length apo(a) and smaller apo(a). Additionally, free apo(a) levels determined by ELLSA as well as by electroimmunodiffusion correlated moderately well. Significantly increased serum concentrations of free apo(a) were found in coronary artery disease. The mean value of free apo(a) was three times higher in patients than in controls while the lipoprotein(a) (Lpla)) concentration was doubled. Utilizing receiver operating characteristic diagrams, it was shown that the free apo(a)-ELLSA had a better diagnostic test performance in atherosclerotic risk assessment than the Lp(a)-test: specificity free apo(a)-ELLSA 0.77, Lp(a)-test 0.81 [with (a:a)-enzyme immunoassay (EIA)] to 0.83 [with (a:B)-EIA]; sensitivity free apo(a)-ELLSA 0.57, Lp(a)-test 0.36 to 0.40. In conclusion, the new free apo(a)-ELLSA allows for the specific quantification of free apo(a). This provides an interesting indicator for atherosclerotic risk assessment.

Adult↗