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Biomedical subjects

G Sunder-Plassmann

Publications and source records attributed to G Sunder-Plassmann.

At least 55 records · Page 3Linked to original sources

The clinical potential of novel erythropoiesis stimulating protein.

Novel erythropoiesis stimulating protein (NESP) is a supersialylated analogue of endogenous erythropoietin or recombinant human erythropoietin (rhuEPO). It contains a total of five N-linked consensus carbohydrate binding sites in the native protein. NESP has a higher molecular weight due to an increased content of carbohydrates, which, however, has no meaningful influence on the binding to and activation of the erythropoietin receptor. The major difference in comparison to rhuEPO is the up to threefold increase of the terminal half-life of NESP, which allows for less frequent dosing of NESP. Several clinical studies have shown that NESP is as safe and efficient as rhuEPO in correcting renal anaemia and in the maintenance therapy of renal anaemia.

Adolescent↗

A controlled study of sorbent suspension dialysis in chronic liver disease and hepatic encephalopathy.

To investigate the role of extracorporeal detoxification in cirrhotic patients with advanced hepatic encephalopathy not responding to medical treatment, 20 patients were randomized to receive six hours of additional sorbent dialysis or ongoing standardized medical treatment. Following treatment, the clinical stage of encephalopathy remained unchanged in both groups. Abnormal sensory evoked potentials improved following sorbent dialysis (N70 latency, 128 ms before versus 110 ms after treatment, P<0,05; cervico-cranial transmission, 7.7 ms versus 6.8 ms, P<0.01) indicating improvement in important aspects of cerebral function. In contrast, brain function remained unchanged following medical treatment (N70 latency, 114 ms versus 113 ms; cervico-cranial transmission, 7.7 ms versus 7.2 ms, P=NS, respectively). Serum benzodiazepine levels decreased significantly after sorbent dialysis but not after medical treatment. Biocompatibility of sorbent dialysis was limited and clinical complications occurred in a proportion of patients. In conclusion, a six-hour treatment with sorbent suspension dialysis did not ameliorate the clinical stage of HE but improved neurophysiologic function in cirrhotic patients who had not responded to conventional medical treatment.

Adult↗

Inadvertent transpericardial insertion of a central venous line with cardiac tamponade failure of preventive practices.

A 56-year-old man who had undergone cardiac surgery suffered from cardiac tamponade after administration of contrast-medium through a central venous catheter. Pericardiotomy showed the catheter transversing the pericardial sac just beneath an unusual high reflection and then reentering the superior vena cava. Preventive practices including chest radiography, confirming free venous blood return and manometry may fail to detect catheter malposition in rare cases. Knowledge of potential pitfalls in using generally recommended safety practices and continuous vigilance are essential for the anesthesiologist and intensivist in avoiding potentially lethal hazards.

Cardiac Tamponade↗

Biocompatibility of a cuprophane charcoal-based detoxification device in cirrhotic patients with hepatic encephalopathy.

Extracorporeal detoxification has been proposed to treat patients with hepatic encephalopathy (HE) not responding to standard therapy. To investigate the biocompatibility of a cuprophane charcoal-based detoxification device, a prospective, randomized, controlled study was performed. Of 41 consecutive patients with cirrhosis and HE grade II or III who did not improve with conventional treatment, 20 patients (median age, 56 years; range, 33 to 71 years; 13 men) were randomly assigned to either ongoing conventional treatment or one additional 6-hour treatment with a sorbent suspension dialysis system. Main outcome parameters were physiological function and blood parameters of biocompatibility. In the 10 patients undergoing combined conventional and sorbent suspension dialysis treatment, blood pressure remained unchanged and body temperature and heart rate increased (P: < 0.01). Platelet count decreased (medians, from 75 to 26 g/L; P: < 0.001) and international normalized ratio increased after combined treatment (2.0 to 2.2; P: < 0.001). Three patients developed bleeding complications during treatment or shortly after. Treated patients showed increases in levels of plasma elastase (104 to 586 microg/L; P: = 0.001), tumor necrosis factor-alpha (5.4 to 7.5 pg/mL; P: = 0.04), and interleukin-6 (118 to 139 pg/mL; P: = 0.04), but not interferon-gamma and E-selectin. No changes were observed in the 10 patients treated conventionally. In conclusion, despite technical refinements compared with charcoal hemoperfusion, biocompatibility of sorbent suspension dialysis is still very limited. Clinical complications were apparently caused by blood-membrane interactions and disseminated intravascular coagulation. We suggest further developments in design and appropriate strategies of anticoagulation to improve the biocompatibility of artificial liver support.

Adult↗

Safe and efficient emergency transvenous ventricular pacing via the right supraclavicular route.

UNLABELLED: Infraclavicular and internal jugular central venous access are techniques commonly used for temporary transvenous pacing. However, the procedure still has a considerable complication rate, with a high risk/benefit ratio because of insertion difficulties and pacemaker malfunction. To enlarge the spectrum of alternative access sites, we prospectively evaluated the right supraclavicular route to the subclavian/innominate vein for emergency ventricular pacing with a transvenous flow-directed pacemaker as a bedside procedure. For 19 mo, 17 consecutive patients with symptomatic bradycardia, cardiac arrest, or torsade de pointes requiring immediate bedside transvenous pacing were enrolled in the study. The success rate, insertional complications, pacemaker performance, and patients' outcomes were recorded. Supraclavicular venipuncture was successful in all patients, in 16 of 17 at the first attempt. Adequate ventricular pacing was achieved within 1 to 5 min (median, 2 min) after venipuncture and within 10 s to 4 min (median, 30 s) after lead insertion (</=30 s in 15 of 17 patients). The median pacing threshold was 1 mA (range, 0.7 to 2.5 mA). No procedure-related complications were recorded. Throughout the pacing period of 1538 h (median: 62 h, range, 1-280 h) two reversible malfunctions caused by inadvertent lead dislodgement after 122 and 171 h were recorded; in one patient the pacemaker had to be removed because of local infection after 14 days of pacing. We conclude that the right supraclavicular route is an easy, safe, and effective first approach for transvenous ventricular pacing and might provide a useful alternative to traditional puncture sites, even in a preclinical setting. IMPLICATIONS: Temporary transvenous cardiac pacing can yield high complication rates especially under emergency conditions. We investigated emergency pacing via the right supraclavicular access in 17 consecutive hemodynamically compromised patients and found good safety, efficacy, and a low complication rate.

Aged↗

High prevalence of hyperhomocysteinemia in critically ill patients.

OBJECTIVE: To test the hypothesis that the prevalence of hyperhomocysteinemia is increased in critically ill patients and correlates with disease severity and mortality in these patients. DESIGN: A prospective study. SETTING: Three medical intensive care units at the University of vienna Medical School serving both medical and surgical patients. PATIENTS: All consecutive admissions (n = 56) during a period of 4 wks. A total of 112 age- and gender-matched healthy individuals constituted the control group. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Blood samples were drawn within 24 hrs after admission for analysis of total homocysteine (tHcy), folate, vitamin B6 levels, and vitamin B12 levels as well as to identify the 677C-->T polymorphism in the gene coding for the enzyme 5,10-methylenetetrahydrofolate reductase. Acute Physiology and Chronic Health Evaluation III scores at admission and 24 hrs after admission as well as 30-day survival were documented in all patients. Hyperhomocysteinemia was more prevalent in critically ill patients (16.1%; 95% confidence interval, 7.6% to 28.3%) compared with age- and gender-matched healthy individuals (5.4%; 95% confidence interval, 2.0% to 11.3%; chi-square test; p = .022). There was no difference in tHcy plasma concentrations in the first 24 hrs after admission to an intensive care unit between survivors and nonsurvivors. The 5,10-methylenetetrahydrofolate reductase 677C-->T polymorphism had no influence on tHcy levels and survival of intensive care unit patients. CONCLUSIONS: The prevalence of hyperhomocysteinemia is increased in critically ill patients compared to age- and gender-matched healthy individuals. The clinical significance of this finding remains to be determined.

5,10-Methylenetetrahydrofolate Reductase (FADH2)↗

G-protein beta3 subunit gene (GNB3) polymorphism 825C-->T in patients with hypertensive crisis.

OBJECTIVE: The polymorphism 825C-->T in exon 10 of the gene GNB3 encoding the beta3 subunit of heterotrimeric guanine nucleotide binding regulatory proteins (G-proteins) results in a splicing variant (GNB3-s) in which the nucleotides 498-620 of exon 9 are deleted. The T allele has been shown to be overrepresented in patients with essential hypertension. Because GNB3-s may support the development of severe elevation of blood pressure, we hypothesized that GNB3 825C-->T may be present more frequently in patients with hypertensive crisis. DESIGN: Case control study. SETTING: Department of Emergency Medicine at the University Hospital of Vienna, Vienna, Austria. PATIENTS: A total of 174 patients admitted to an emergency department for treatment of hypertensive crisis diagnosed as suffering from essential hypertension. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Patients were genotyped for the 825C-->T transition in GNB3. An equal number of age- and gender-matched normotensive, healthy individuals served as the control population. The allele frequency of 825C-->T in the GNB3 gene was 0.310 in patients with hypertensive crisis and 0.342 in the control group. There was no difference in genotype distribution and allele frequency between the patients and the age- and gender-matched control group or between the observed prevalence and the occurrence rate expected from the Hardy-Weinberg principle within each group. CONCLUSIONS: GNB3 825C-->T is not associated with the phenotype of hypertensive crisis in patients suffering from essential hypertension. Furthermore, our data do not support the concept that the 825C-->T transition in the GNB3 gene is associated with essential hypertension.

Adult↗

Hyperhomocysteinemia in organ transplantation.

An elevated total homocysteine plasma concentration is associated with an increased morbidity and mortality due to cardiovascular disease in the general population, in patients with renal failure and in recipients of kidney or heart transplants. The fasting or post-methionine loading plasma concentration of total homocysteine is elevated in 50-60% of renal transplant recipients with stable graft function and in the majority of heart transplant recipients. Fasting and post-methionine loading hyperhomocysteinemia can be normalized in virtually all renal transplant patients by a combination of folic acid (5 mg/d), vitamin B6 (50 mg/d) and vitamin B12 (0.4 mg/d). In individuals without renal failure much lower doses of folate and vitamin B12 are able to correct hyperhomocysteinemia. Currently, prospective studies are under way to clarify whether folate and vitamin therapy improves cardiovascular disease morbidity and mortality in the general population and in organ transplant recipients. While population wide screening for and treatment of hyperhomocysteinemia is generally not recommended, treatment of high risk patients, including renal failure patients and kidney and heart transplant recipients, can be considered but still represents an experimental therapy.

Folic Acid↗

Therapeutic potential of total homocysteine-lowering drugs on cardiovascular disease.

An elevated total homocysteine (tHcy) plasma concentration is associated with increased morbidity and mortality due to cardiovascular disease in the general population and in patients with impaired renal function. The prevalence of hyperhomocysteinaemia (plasma levels above 15 micromol/l) in the general population is less than 5% and can be as high as 50% in patients with vascular disease. In patients with renal insufficiency, elevated tHcy plasma levels are detected in 50 - 100% of the patients. Total homocysteine plasma levels can be lowered or normalised by folic acid and/or vitamin B(6) and vitamin B(12) supplementation. In patients with advanced chronic renal insufficiency or end-stage renal disease, hyperhomocysteinaemia is partially resistant to folic acid or vitamin therapy. However, higher tHcy plasma levels may also reflect tissue damage and the increase in Hcy after an acute incident such as stroke or myocardial infarction may be necessary for tissue repair mechanisms. This implies, that lowering tHcy may even be harmful to some patients. Currently, prospective studies are underway to clarify whether folate supplementation, with or without additional other vitamins, improves cardiovascular disease morbidity and mortality in the general population, as well as in renal failure patients. While population-wide screening for and treatment of hyperhomocysteinaemia is generally not recommended, treatment of high risk patients may be considered.

Animals↗

Erythropoietin-inducible immediate-early genes in human vascular endothelial cells.

BACKGROUND: Patients receiving recombinant human erythropoietin (rHuEPO) may experience side effects arising from the vascular system. The underlying mechanisms, however, are largely unknown. METHODS: To elucidate downstream events following erythropoietin receptor triggering, a differential display analysis of human vascular endothelial cell mRNA was performed. RESULTS: We identified eight genes that were upregulated by rHuEPO as confirmed in two further independent cell culture experiments using a semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR) protocol. The genes coded for proteins that may be assigned to four different groups: 1) proteins implicated in the regulation of vascular functions (thrombospondin-1, 20 kDa myosin regulatory light chain; relative increase of rHuEPO induced mRNA levels: 155.2%, P = 0.043; 137.6%, P = 0.046, respectively); 2) gene products involved in gene transcription and/or translation (c-myc purine-binding transcription factor PuF, tryptophanyl-tRNA synthetase, S19 ribosomal protein; increase of mRNA levels: 126.4%, P = 0.032; 150.9%, P = 0.012; 134.9%, P = 0.038); 3) subunits of mitochondrial enzymes related to energy transfer (NADH dehydrogenase subunit 6, cytochrome C oxidase subunit 1; increase of mRNA concentrations: 141.7%, P = 0.007; 140.3%, P = 0.01); and 4) regulators of signal transduction (protein tyrosine phosphatase G1, increase of transcript level: 160.3%, P = 0.016). CONCLUSIONS: We report on novel molecular downstream events following rHuEPO receptor triggering of human vascular endothelial cells. We identified EPO-responsive immediate-early genes, coding for proteins involved in vascular functions, gene transcription, and/or translation, energy transfer, and signal transduction. Thus, our data provide new insights into the molecular changes induced by EPO in human vascular endothelial cells.

Base Sequence↗

[Trends in molecular diagnosis].

The number of characterized monogenic and polygenic diseases is rising each year. In consequence, molecular diagnostics is faced with an ever increasing number of patient samples and with more and more heterogeneous genetic defects. The fusion of microelectronics and molecular biology has created a new technology (microelectronic miniaturization), which provides a rapid, efficient, and cost-effective tool in molecular diagnostics at a high-sample throughput. The biochip has recently been selected as one of the ten scientific highlights in the year 1998. The application of microelectronics ranges from the polymerase chain reaction (PCR), nucleotide sequence analysis via DNA-chips or capillary electrophoresis-chips to gene expression analysis. These microchips are suited for integration into fully automated systems, thus providing the basis for automation of molecular diagnostics. The present article summarizes important trends in molecular diagnostics and provides a glimpse on future technologies.

Diagnostic Techniques and Procedures↗

Peritoneal elimination of homocysteine moieties in continuous ambulatory peritoneal dialysis patients.

BACKGROUND: The amount of total homocysteine eliminated by peritoneal dialysis and its relationship to peritoneal transport characteristics in continuous ambulatory peritoneal dialysis (CAPD) patients are unknown. METHODS: The influence of total homocysteine, folate, and vitamin B12 plasma concentrations, serum albumin levels, age, sex, dialysate to plasma ratio (D/P) creatinine, D/D0 glucose, D/P albumin, dialysate effluent volume, and effluent albumin on the daily peritoneal excretion of total homocysteine was investigated in 39 CAPD patients. The relationship of D/P creatinine to D/P total homocysteine, D/P free homocysteine, and D/P protein-bound homocysteine was analyzed additionally in a subgroup of 25 patients. RESULTS: We observed a significant influence of plasma total homocysteine concentrations (P = 0.0001) of the daily dialysate effluent volume (P = 0.0221) and of the D/P creatinine (P = 0.0132) on peritoneal elimination of total homocysteine. The daily peritoneal excretion of total homocysteine was 38.94 +/- 20.82 mumol (5.27 +/- 2.81 mg). There was a positive linear association of the daily total homocysteine elimination with plasma total homocysteine concentrations (P = 0.0001). A significant linear correlation was observed between D/P creatinine and D/P total homocysteine (P = 0.0001), D/P free homocysteine (P = 0.0001), as well as D/P protein-bound homocysteine (P = 0.0001). CONCLUSIONS: The peritoneal elimination of total homocysteine primarily depends on the plasma total homocysteine concentration. Elevated total homocysteine plasma levels cannot be reduced efficiently by peritoneal dialysis.

Adult↗

Effect of MTHFR 677C>T on plasma total homocysteine levels in renal graft recipients.

BACKGROUND: Hyperhomocysteinemia is an established, independent risk factor for vascular disease morbidity and mortality. The 5,10-methylenetetrahydrofolate reductase (MTHFR) gene polymorphism C677T has been shown to result in increased total homocysteine concentrations on the basis of low folate levels caused by a decreased enzyme activity. The effect of this polymorphism on total homocysteine and folate plasma levels in renal transplant patients is unknown. METHODS: We screened 636 kidney graft recipients for the presence of the MTHFR C677T gene polymorphism. The major determinants of total homocysteine and folate plasma concentrations of 63 patients, who were identified to be homozygous for this gene polymorphism compared with heterozygotes (N = 63), and patients with wild-type alleles (N = 63), who were matched for sex, age, glomerular filtration rate (GFR), and body mass index, were identified by analysis of covariance. The variables included sex, age, GFR, body mass index, time since transplantation, folate and vitamin B12 levels, the use of azathioprine, and the MTHFR genotype. To investigate the impact of the kidney donor MTHFR genotype on total homocysteine and folate plasma concentrations, a similar model was applied in 111 kidney graft recipients with stable graft function, in whom the kidney donor C677T MTHFR gene polymorphism was determined. RESULTS: The allele frequency of the C677T polymorphism in the MTHFR gene was 0.313 in the whole study population [wild-type (CC), 301; heterozygous (CT), 272; and homozygous mutant (TT), 63 patients, respectively] and showed no difference in the patient subgroups with various renal diseases. The MTHFR C677T gene polymorphism significantly influenced total homocysteine and folate plasma concentrations in renal transplant recipients (P = 0.0009 and P = 0.0002, respectively). Furthermore, a significant influence of the GFR (P = 0.0001), folate levels (P = 0.0001), age (P = 0.0001), body mass index (P = 0.0001), gender (P = 0.0005), and vitamin B12 levels (P = 0.004) on total homocysteine concentrations was observed. The donor MTHFR gene polymorphism had no influence on total homocysteine and folate levels. Geometric mean total homocysteine levels in patients homozygous for the mutant MTHFR allele were 18.6 micromol/liter compared with 14.6 micromol/liter and 14.9 micromol/liter in patients heterozygous for the MTHFR gene polymorphism and those with wild-type alleles (P < 0.05 for TT vs. CT and CC). Geometric mean folate levels were lower in CT and TT patients (11.2 and 10.2 nmol/liter) compared with CC patients (13.6 nmol/liter, P < 0.05 vs. CT and TT). CONCLUSIONS: This study demonstrates that homozygosity for the C677T polymorphism in the MTHFR gene significantly increases total homocysteine concentrations and lowers folate levels in kidney graft recipients, even in patients with excellent renal function (GFR more than median). These findings have important implications for risk evaluation and vitamin intervention therapy in these patients who carry an increased risk for the development of cardiovascular disease.

Adult↗

Pathobiology of the role of iron in infection.

Beyond its role in hemoglobin synthesis, iron plays an important part in host defense mechanisms. Sequestration of iron is a mechanism to control bacterial proliferation and virulence. However, uremia results in several immunologic deficits, including impaired lymphocyte mitogenic response and granulocyte function abnormalities such as impaired phagocytosis, respiratory burst, and myeloperoxidase activity. At the other end of the spectrum, iron overload can impair immune function and stimulate bacterial growth and virulence. Overtreatment with iron increases the preexisting risk of infectious complications for uremic patients, as indicated by hyperferritinemia in hemodialysis patients who have impaired polymorphonuclear leukocyte (PMNL)-induced bacterial killing. These results suggest that maintaining iron status within normal range is important to control potential increased risk of infection in patients with end-stage renal disease (ESRD).

Animals↗

Molecular analysis of the carboxy terminus of the beta and gamma subunits of the epithelial sodium channel in patients with end-stage renal disease.

BACKGROUND: Mutations in the carboxy termini of the beta subunit (hbetaENaC) and the gamma subunit (hgammaENaC) of the human epithelial sodium channel have been identified in patients with Liddle syndrome. Moreover polymorphisms have been described in these genes, the clinical relevance of which for progression to end-stage renal disease (ESRD) is unknown. We, therefore, have screened ESRD patients for putative variants of these genes. METHODS: We investigated 256 chronic hemodialysis patients, including 123 patients with a history of hypertension as a cause of ESRD. Screening for mutations in the carboxy termini of hbetaENaC and hgammaENaC was accomplished by polymerase chain reaction amplification followed by single-strand conformation polymorphism analysis. RESULTS: In 231 patients single-strand conformation polymorphism analysis of the polymerase chain reaction fragments of the hbetaENaC and hgammaENaC genes showed a similar migration pattern as compared with negative control subjects. In 25 patients a band shift was observed. However, sequence analysis in all these patients revealed wild-type sequence. CONCLUSIONS: The present study demonstrates the absence of genetic variants in the carboxy terminus of the hbetaENaC and hgammaENaC genes in Austrian patients with ESRD maintained on chronic hemodialysis treatment. Thus, mutations in these genes are unlikely to be associated with ESRD.

DNA Primers↗

Inherited disorders of iron metabolism.

Recent molecular studies have resulted in the identification of genetic alterations underlying hereditary disorders of iron metabolism. One example is the discovery of the HFE gene that is mutated in patients suffering from hereditary hemochromatosis. This autosomal recessive disorder has an estimated carrier frequency that varies between 0.07 and 0.13, thus representing one of the most common genetically determined metabolic disorders. The identification of the hemochromatosis mutations has encouraged efforts to investigate other conditions with iron overload for a putative interaction with these genetic variants. Few data are already available suggesting, for example, that iron overload in patients with sporadic porphyria cutanea tarda is associated with mutations in the hereditary hemochromatosis gene. However, it is obvious that disorders of iron metabolism have a multifactorial pathogenesis, including environmental and genetic factors. Thus, many questions remain to be answered about whether a genetic predisposition exists for development of various iron-loading or iron-deficiency phenotypes. This review focuses on the most recent advances in the field of hereditary disorders of iron metabolism and discusses their potential implications for nephrologists.

Anemia↗