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Biomedical subjects

D Thomas

Publications and source records attributed to D Thomas.

At least 145 records · Page 8Linked to original sources

High-affinity blockade of human ether-a-go-go-related gene human cardiac potassium channels by the novel antiarrhythmic drug BRL-32872.

Human ether-a-go-go-related gene (HERG) potassium channels are one primary target for the pharmacological treatment of cardiac arrhythmias by class III antiarrhythmic drugs. These drugs are characterized by high antiarrhythmic efficacy, but they can also initiate life-threatening "torsade de pointes" tachyarrhythmias. Recently, it has been suggested that combining potassium and calcium channel blocking mechanisms reduces the proarrhythmic potential of selective class III antiarrhythmic agents. BRL-32872 is a novel antiarrhythmic drug that inhibits potassium and calcium currents in isolated cardiomyocytes. In our study, we investigated the effects of BRL-32872 on cloned HERG channels heterologously expressed in Xenopus oocytes. Using the two-microelectrode voltage clamp technique, we found that BRL-32872 caused a high-affinity, state-dependent block of open HERG channels (IC(50) = 241 nM) in a frequency-dependent manner with slow unbinding kinetics. Inactivated channels mainly had to open to be blocked by BRL-32872. The HERG S620T mutant channel, which has a strongly reduced degree of inactivation, was 51-fold less sensitive to BRL-32872 block, indicating that BRL-32872 binding was enhanced by the inactivation process. In an additional approach, we studied HERG channels expressed in a human cell line (HEK 293) using the whole-cell patch-clamp technique. BRL-32872 inhibited HERG currents in HEK 293 cells in a dose-dependent manner, with an IC(50) value of 19.8 nM. We conclude that BRL-32872 is a potent blocker of HERG potassium channels, which accounts for the class III antiarrhythmic action of BRL-32872.

Animals↗

[Distribution and treatment of cardiovascular risk factors in coronary patients: the Prevenir Study].

The aim of this study was to evaluate the distribution and hospital treatment of cardiovascular risk factors in coronary patients. A transverse observational study was carried out in 77 cardiological centres throughout France. All patients with a history of myocardial infarction or of unstable angina during the month of January 1998 were enrolled. The clinical features of 1334 patients (71.4% men, 746 myocardial infarction, 588 unstable angina) on hospital admission were analysed. The prevalence of smoking, dyslipidaemia, hypertension and obesity was 49, 45, 42, 19 and 11% respectively in the men and 17, 46, 63, 23 and 10% respectively in the women. The number of treatable risk factors slightly decreased in the oldest age group. The prevalence of hypertension increased with age whereas smoking and dyslipidaemia decreased in both men and women. Obese and diabetic patients had more risk factors than the others. A little less than half of patients with dyslipidaemia were under no preventive measures (diet and/or lipid-lowering drugs) and 40% of men with a previous history of coronary artery disease continued to smoke. The authors conclude that men over 85 and women over 75 years of age have fewer risk factors than other age groups and the type of risk factor varies with age. The treatment of dyslipidaeamia and smoking is still inadequate and should be improved.

Adult↗

[Whole blood viscosity measurement in acute myocardial infarction: feasibility and significance].

Thrombolytic agents and new antiplatelet drugs used in acute myocardial infarction (AMI) could change whole blood viscosity. The aim of this pilot trial is to compare blood viscosity at four shear rate levels among three groups of patients: AMI receiving thrombolysis with alteplase (n: 10), AMI eligible for primary angioplasty with abciximab (n: 10), healthy volunteers (n: 10). Viscosity measurement was obtained in 30 minutes with a Couette hemoviscosimeter. At baseline, blood viscosity level was higher in patients with acute coronary syndromes than in healthy volunteers (72 +/- 32 mPa.s versus 51 +/- 13 mPa.s, p<0.05). After thrombolysis, viscosity was higher at 90 minutes than at third day, paradoxically with fibrinogen elevation (72 +/- 32 mPa.s versus 58 +/- 27 mPa.s, p=0.01). In primary angioplasty with abciximab, viscosity decreased significantly (56 +/- 28 mPa.s versus 43 +/- 13 mPa.s, p=0.01). The effects of ionic contrast agent and abciximab are discussed. In healthy volunteers group, 100 mg aspirin once a day during 7 days reduces blood viscosity at high shear stress. The small size of the study population restricts correlation analysis with major clinical adverse events. A larger trial is necessary to evaluate the predictive value of whole blood viscosity in reocclusive and/or hemorrhagic events in those reperfusion strategies but also in case of thrombolytic agent and abciximab combination.

Adult↗

Reverse methionine biosynthesis from S-adenosylmethionine in eukaryotic cells.

The intracellular ratio between methionine and its activated form S-adenosylmethionine (AdoMet) is of crucial importance for the one-carbon metabolism. AdoMet recycling into methionine was believed to be largely achieved through the methyl and the thiomethyladenosine cycles. We show here that in yeast, AdoMet recycling actually occurs mainly through the direct AdoMet-dependent remethylation of homocysteine. Compelling evidences supporting this result were obtained owing to the identification and functional characterization of two new genes, SAM4 and MHT1, that encode the yeast AdoMet-homocysteine methyltransferase and S-methylmethionine-homocysteine methyltransferase, respectively. Homologs of the Sam4 and Mht1 proteins exist in other eucaryotes, indicating that such enzymes would be universal and not restricted to the bacterial or fungal kingdoms. New pathways for AdoMet or S-methylmethionine-dependent methionine synthesis are presented.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Enzyme mimicry by the antiidiotypic antibody approach.

The concept of "internal image" of antiidiotypic antibodies has provided the basis for eliciting catalytic antibodies. A monoclonal IgM 9A8 that was obtained as an antiidiotype to AE-2 mAb, a known inhibitor of acetylcholinesterase, displayed esterolytic activity. Study of recombinant Fab fragments and separate light and heavy chains of 9A8 confirmed that the antibody variable domain encodes the catalytic function, whereas neither part of the primary sequence of the Fab exhibited homology with the enzyme. The specific modification of the 9A8 variable domain by an active site-directed covalent inhibitor revealed the presence of an active site Ser residue. A three-dimensional modeling suggests the existence of a functional catalytic dyad Ser-His. Comparison of active sites of 9A8 and 17E8 esterolytic abzyme raised against transition-state analog revealed structural similarity although both antibodies were elicited by two different approaches.

Amino Acid Sequence↗

Angiogenesis in acute and chronic leukemias and myelodysplastic syndromes.

Angiogenesis has been associated with the growth, dissemination, and metastasis of solid tumors. The aims of this study were to evaluate the vascularity and the levels of angiogenic factors in patients with acute and chronic leukemias and myelodysplastic syndromes (MDS). The numbers of blood vessels were measured in 145 bone marrow biopsies and the levels of vascular endothelial growth factor (VEGF), basic fibroblast growth factor (bFGF), tumor necrosis growth factor-alpha (TNF-alpha), tumor growth factor-alpha (TGF-alpha), and hepatocyte growth factor (HGF) were determined in 417 plasma samples. Except for chronic lymphocytic leukemia (CLL), vascularity was significantly higher in all leukemias and MDS compared with control bone marrows. The highest number of blood vessels and largest vascular area were found in chronic myeloid leukemia (CML). VEGF, bFGF, and HGF plasma levels were significantly increased in acute myeloid leukemia (AML), CML, CLL, chronic myelomonocytic leukemia (CMML), and MDS. HGF, TNF-alpha, and bFGF but not VEGF were significantly increased in acute lymphoblastic leukemia (ALL). TNF-alpha levels were significantly increased in all diseases except for AML and MDS. No significant increase was found in TGF-alpha in any leukemia or MDS. The highest plasma levels of VEGF were in CML, and the highest plasma levels of bFGF were in CLL. The levels of HGF were highest in CMML. These data suggest that vascularity and angiogenic factors are increased in leukemias and MDS and may play a role in the leukemogenic process.

Acute Disease↗

Lack of serologic association of human herpesvirus-8 (KSHV) in patients with monoclonal gammopathy of undetermined significance with and without progression to multiple myeloma.

Because human herpesvirus-8 (HHV-8) DNA has been found in multiple myeloma (MM) patients by polymerase chain reaction, it was suggested that HHV-8 may play a role in the transformation of monoclonal gammopathy of undetermined significance (MGUS) to MM. Therefore, 362 MGUS sera with and without progression to MM were tested for IgG antibody to HHV-8. Only 7.8% of the MGUS sera contained HHV-8 antibody to lytic proteins, and IgG antibody to HHV-8 latent antigen was even lower than lytic antibody (2.9%). No differences were observed in the distribution of antibody to HHV-8 in sera from MGUS patients who progressed to MM. The seroprevalences of HHV-8 in MGUS (7.8%), MM (5.4%), and healthy donors (5.9%) were similar, thus arguing for the lack of epidemiologic evidence of HHV-8 participation in the pathogenesis of MM. MGUS patients were immune competent in response to Epstein-Barr virus (EBV) infection because 97% contained antibody to EBV virus capsid antigen.

Herpesvirus 8, Human↗

Functional coupling of human beta 3-adrenoreceptors to the KvLQT1/MinK potassium channel.

The slow component of the delayed rectifier potassium current (IKs) plays an important role during repolarization in the human heart. Life-threatening arrhythmias can be triggered by sympathetic stimulation, presumably acting on IKs. The ion channel responsible for the IKs current is made of two proteins, the KvLQT1 protein and the MinK protein. In this study, we investigated the effects of adrenergic stimulation on the KvLQT1/MinK channel by coexpressing KvLQT1/MinK channels with the human beta(3)-adrenoreceptor subunit heterologously in Xenopus oocytes. Western blot experiments revealed that beta(3)-adrenoreceptor proteins appear in the cell membrane of Xenopus oocytes, when the corresponding cRNA was injected. In electrophysiological measurements we found that stimulation with the beta-adrenergic agonist isoproterenol increased the current amplitude of the beta(3)/KvLQT1/MinK complex up to 237% with an ED(50) of 8 nm, a value similar to that found on IKs in guinea pig cardiomyocytes. When oocytes with beta(3)/KvLQT1/MinK were preincubated with cholera toxin (2 microg/ml), an activator of G(S) proteins, the basal current amplitude of the beta(3)/KvLQT1/MinK complex was increased 3.1-fold, and the current amplitude increase by isoproterenol was drastically reduced, indicating that the signal transduction cascade was mediated via G(s) proteins. The knowledge about functional coupling of the human beta(3)-adrenoreceptor to KvLQT1/MinK channels reveals interesting aspects about the genesis and therapy of arrhythmias.

Animals↗

Effect of prior exposure to Chlamydia pneumoniae, Helicobacter pylori, or cytomegalovirus on the degree of inflammation and one-year prognosis of patients with unstable angina pectoris or non-Q-wave acute myocardial infarction.

Inflammation and chronic infections may be important features in the pathogenesis of acute coronary syndromes. We describe 6 systemic markers of inflammation in patients with unstable angina or non-Q-wave myocardial infarction and the relations between these markers, seropositivity to chronic infections, and prognosis. C-reactive protein (CRP), serum amyloid A protein (SAA), fibrinogen, interleukin-6 (IL-6), neopterin, procalcitonin, and serum antibody levels to Chlamydia pneumoniae, Helicobacter pylori, and cytomegalovirus were measured on admission and 48 hours later. One-year clinical follow-up was performed. Plasma levels of acute phase reactants were all elevated on admission and increased further at 48 hours: CRP from 10.1 +/- 2.1 mg/L at baseline to 26.6 +/- 5.1 mg/L at 48 hours (p <0.001); SAA from 27.3 +/- 8.5 to 93.1 +/- 23.2 mg/dl (p <0.005); fibrinogen from 3.2 +/- 0.1 to 3.8 +/- 0.1 g/L (p <0.0001); whereas initial high levels of IL-6 tended also to increase from 9.8 +/- 2 to 15.3 +/- 3.1 pg/ml (p = NS). In contrast, neopterin and procalcitonin remained unchanged. We found no association between levels of each inflammatory marker and the serologic status. Furthermore, levels of inflammatory proteins in patients seronegative to all 3 agents were comparable to those of patients seropositive to 2 or 3 infectious agents. The composite end points of death, myocardial infarction, recurrent angina, or revascularization at 1-year follow-up did not differ according to the serologic status. Thus, in patients with acute coronary syndromes, the acute phase proteins increased over the first 2 days of hospitalization. This initial inflammatory reaction as well as the 1-year clinical outcome did not differ according to the initial serologic status of Chlamydia pneumoniae, Helicobacter pylori, or cytomegalovirus.

Acute-Phase Proteins↗

Prognostic value of neurohormonal activation and cardiopulmonary exercise testing in patients with chronic heart failure.

We compared the value of plasma neurohormones and cardiopulmonary exercise testing for predicting long-term prognosis in patients with moderate congestive heart failure (CHF). We studied 264 consecutive patients with CHF due to left ventricular systolic dysfunction. Plasma atrial natriuretic peptide (ANP), norepinephrine, and endothelin-1 were measured at rest in all patients, who also underwent a symptom-limited maximal exercise with oxygen consumption (VO(2)) determination. After a median follow-up of 789 days, 52 deaths and 31 heart transplantations occurred, of which 4 were urgent. In an univariate analysis, New York Heart Association functional class, systolic blood pressure at rest, left ventricular end-diastolic diameter, left ventricular ejection fraction, peak VO(2), percent of predicted peak VO(2), plasma ANP, plasma norepinephrine, and plasma endothelin-1 were associated with survival without urgent heart transplantation. In a multivariate stepwise regression analysis, only plasma ANP (p = 0.0001), left ventricular ejection fraction (p = 0.007), and plasma norepinephrine (p = 0.035), but neither peak VO(2) nor percentage of predicted peak VO(2), were independent predictors of death or urgent heart transplantation. Determination of plasma ANP and norepinephrine provides additional independent information for long-term prognostic determination compared with exercise testing alone. Measurement of plasma neurohormones should therefore be considered routinely as a complementary or alternative tool for identifying high-risk patients with moderate CHF.

Atrial Natriuretic Factor↗

Different expression of an S-adenosylmethionine synthetase gene in transgenic tobacco callus modifies alkaloid biosynthesis.

Transformed callus cultures of Nicotiana tabacum were generated in which the SAM-1 gene from Arabidopsis thaliana encoding S-adenosylmethionine synthetase (SAM-S), under the control of the 35S promoter, had been integrated. The presence of the SAM-1 gene was detected in all tested transformants and the SAM-S activity correlated with the accumulation of SAM in the tobacco callus cultures. Three distinct phenotypic classes were identified among the transgenic cell lines in relation to growth of the cells, structure of the calli, and level of SAM. Transgene silencing was observed in several cultivated transgenic calli and this phenomenon was correlated directly with a low level of SAM-1 mRNA accompanied by a decrease of the SAM-S activity. The transgenic calli overexpressing the SAM-1 gene accumulated a high SAM level. The modifications in SAM-S activity were reflected in the pattern of secondary products present in the different cell lines, thereby demonstrating that the flux through the biosynthetic pathway of a plant secondary product can be modified by means of genetic engineering.

Alkaloids↗

Cardiovascular responses to the isoprostanes iPF(2alpha)-III and iPE(2)-III are mediated via the thromboxane A(2) receptor in vivo.

BACKGROUND: Isoprostanes (iPs) are free radical-catalyzed products of arachidonic acid that reflect lipid peroxidation in vivo. Several iPs exert biological effects in vitro and may contribute to the functional consequences of oxidant stress. For example, iPF(2alpha)-III (8-iso PGF(2alpha)) and iPE(2)-III modulate platelet function and vascular tone. Although these effects are blocked by antagonists of the receptor (TP) for the cyclooxygenase product thromboxane A(2), it has been speculated that the iPs may activate a receptor related to, but distinct from, the TP. METHODS AND RESULTS: Transgenic mice (TPOEs) were generated in which the TP-beta isoform was under the control of the preproendothelin promoter. They overexpressed TP-beta in the vasculature but not in platelets and exhibited an exaggerated pressor response to infused iPF(2alpha)-III compared with wild-type mice. This was blocked by TP antagonism. The platelet response to the iP was unaltered in TPOEs compared with wild-type mice. By contrast, both the pressor response to iPF(2alpha)-III and its effects on platelet function were abolished in mice lacking the TP gene. This was also true of the effects of infused iPE(2)-III on mean arterial pressure and platelet aggregation. CONCLUSIONS: Both iPF(2alpha)-III and iPE(2)-III exert their effects on platelet function and vascular tone in vivo by acting as incidental ligands at membrane TPs rather than via a distinct iP receptor. Activation of TPs by iPs may be of importance in syndromes in which cyclooxygenase activation and oxidant stress coincide, such as in atherosclerosis and reperfusion after tissue ischemia.

Angiotensin II↗

Communicating information about sore throats and rheumatic fever to South Auckland high-school students.

AIMS: The present study examined the effectiveness of three modes of communication designed to increase high school students' knowledge about throat infections and rheumatic fever in a high risk area. METHODS: The study was part of an evaluation of a rheumatic fever prevention programme that has established 27 school-based 'sore throat' clinics in South Auckland. The rationale for the clinics was explained to students through: assemblies conducted by public health nurses, written information sheets and classroom lessons. The effectiveness of each communication mode was assessed by comparing the knowledge of students from eight classes at an intervention school with eight classes at a control school before and after the intervention school students received the teaching. RESULTS: Students at the intervention school showed a significant improvement in knowledge compared to students at the control school. The assembly presentations by health professionals were more effective in informing students than information sheets or classroom lessons. CONCLUSIONS: This study suggests that presentations by health professionals are an effective method of teaching basic health information to students in these South Auckand secondary schools. Classroom teachers need to be provided with appropriate resources, if they are to provide effective instruction. Written information sheets should not be relied on.

Adolescent↗

Inducible NF-kappaB activation is permitted by simultaneous degradation of nuclear IkappaBalpha.

Signal-induced phosphorylation and ubiquitination of IkappaBalpha targets this inhibitor of NF-kappaB for proteasome-mediated degradation, thus permitting the release of active NF-kappaB. Upon cell stimulation, NF-kappaB activation results in neotranscription and neosynthesis of its own inhibitor, IkappaBalpha. As reported earlier, the neosynthesized inhibitor is then accumulated in the nucleus, where it rapidly binds to and terminates the function of nuclear NF-kappaB upon withdrawal of the stimulus. The present work was aimed at understanding how NF-kappaB activity is preserved while stimuli persist, despite intense, simultaneous IkappaBalpha neosynthesis, which would be expected to end NF-kappaB activity. We here show that incoming IkappaBalpha in the nucleus represents a target for resident nuclear proteasome complexes. Signal-induced, proteasome-dependent degradation of phosphorylated and ubiquitinated IkappaBalpha occurs in the nucleus, thus permitting the onset and persistence of NF-kappaB activity as long as stimulation is maintained. Our results suggest that intranuclear proteolysis of IkappaBalpha is necessarily required to avoid self-termination of NF-kappaB activity during cell activation.

Cell Nucleus↗

Polyglutamylation of folate coenzymes is necessary for methionine biosynthesis and maintenance of intact mitochondrial genome in Saccharomyces cerevisiae.

One-carbon metabolism is essential to provide activated one-carbon units in the biosynthesis of methionine, purines, and thymidylate. The major forms of folates in vivo are polyglutamylated derivatives. In organisms that synthesize folate coenzymes de novo, the addition of the glutamyl side chains is achieved by the action of two enzymes, dihydrofolate synthetase and folylpolyglutamate synthetase. We report here the characterization and molecular analysis of the two glutamate-adding enzymes of Saccharomyces cerevisiae. We show that dihydrofolate synthetase catalyzing the binding of the first glutamyl side chain to dihydropteroate yielding dihydrofolate is encoded by the YMR113w gene that we propose to rename FOL3. Mutant cells bearing a fol3 mutation require folinic acid for growth and have no dihydrofolate synthetase activity. We show also that folylpolyglutamate synthetase, which catalyzes the extension of the glutamate chains of the folate coenzymes, is encoded by the MET7 gene. Folylpolyglutamate synthetase activity is required for methionine synthesis and for maintenance of mitochondrial DNA. We have tested whether two folylpolyglutamate synthetases could be encoded by the MET7 gene, by the use of alternative initiation codons. Our results show that the loss of mitochondrial functions in met7 mutant cells is not because of the absence of a mitochondrial folylpolyglutamate synthetase.

Amino Acid Sequence↗