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Biomedical subjects

W E Haefeli

Publications and source records attributed to W E Haefeli.

At least 73 records · Page 4Linked to original sources

Vigabatrin dosing during haemodialysis.

The antiepileptic drug vigabatrin has shown efficacy in the treatment of patients with refractory epilepsy. Unlike many other antiepileptics it is not bound to plasma protein and mainly eliminated by the kidney. Although the therapeutic and toxic serum concentration range is not clearly defined and efficacy and toxicity are not closely correlated with the dose, factors decreasing vigabatrin elimination such as advanced age or renal failure may pose risk of untoward effects. Thus far there are no dose recommendations available for patients on haemodialysis. We report on an epileptic patient who experienced severe, partially reversible renal failure as a consequence of near-drowning. In this patient serum concentrations of vigabatrin were measured repeatedly both during haemodialysis and after partial recovery of renal function. The terminal elimination half-life in this patient was 41 hours during the period of severe renal failure (creatinine clearance < 5 ml/min). As about 60% of vigabatrin was removed from the blood pool by haemodialysis in these patients the antiepileptic should be administered after dialysis. To maintain serum concentrations in the usual range and to control seizure activity only 500 mg vigabatrin every 3 days were necessary.

Anticonvulsants↗

Effect of methionine loading on 5-methyltetrahydrofolate, S-adenosylmethionine and S-adenosylhomocysteine in plasma of healthy humans.

1. Elevated plasma homocysteine concentration, either in the fasting state or after methionine loading, is an independent risk factor for vascular disease in man. Methionine loading has been used to investigate impaired methionine metabolism, especially of the trans-sulphuration pathway, but most studies have focused on changes in homocysteine. 2. We investigated the effect of methionine excess on total plasma homocysteine, 5-methyltetrahydrofolate (which is the active form of folate in the remethylation of homocysteine to methionine), S-adenosyl-methionine (the first metabolite of methionine) and S-adenosylmethionine) (the demethylated product of S-adenosylmethionine) over 24h in 12 healthy subjects. 3. As well as the expected increase in homocysteine (from 8.0 +/- 1.3 to 32.6 +/- 10.3 mumol/l, mean +/- SD, P < 0.001), S-adenosylmethionine showed a significant transient increase (from 37.9 +/- 25.0 to 240.3 +/- 109.2 nmol/l, P < 0.001), which correlated well with homocysteine (r2 = 0.92, P < 0.001). 5-Methyltetrahydrofolate values decreased significantly (from 23.2 +/- 7.2 to 13.1 +/- 2.9 nmol/l, P < 0.01), and gradually returned to baseline levels after 24h. No significant change over the time of measurement was found for S-adenosylhomocysteine. 4. The sequence of metabolic changes observed in this study strongly suggests that a change in either homocysteine or S-adenosylmethionine may cause a reduction in 5-methyltetrahydrofolate. This must be considered in evaluating the relationship between folate and homocysteine in vascular disease. The metabolic relationships illustrated in this study should be evaluated in the search for pathogenetic mechanisms of mild hyperhomocysteinaemia and vascular disease.

Adult↗

Low whole-blood S-adenosylmethionine and correlation between 5-methyltetrahydrofolate and homocysteine in coronary artery disease.

Mild elevation of plasma homocysteine is an independent risk factor for vascular disease. We studied the role of 5-methyltetrahydrofolate (5-MTHF), the folate form directly involved in homocysteine metabolism, in contrast to previous studies, which used total folate measurements, in 70 coronary artery disease (CAD) patients and control subjects. We also measured S-adenosylmethionine (SAM), which controls the activity of critical enzymes of homocysteine metabolism. Fasting plasma total homocysteine was elevated (> 12.4 mumol/L for women, > 13.3 mumol/L for men) in 17% of patients, in accordance with earlier studies. These patients showed lower 5-MTHF (12.4 +/- 1.0 mumol/L, mean +/- SD) than control subjects (24.2 +/- 15.0, P < .001), and there was a clear correlation (multiple linear regression analysis: P = .002) of this relevant form of folate with homocysteine. However, 37% of the normohomocysteinemic patients also revealed similarly low 5-MTHF levels, suggesting that a decrease of 5-MTHF does not necessarily cause hyperhomocysteinemia. SAM was significantly decreased in patients (1.4 +/- 0.4 mumol/L) compared with control subjects (1.8 +/- 0.3, P < .001) but was not correlated to homocysteine or 5-MTHF. The correlation between homocysteine and 5-MTHF that was found in CAD patients but not in control subjects confirms the direct relationship between these compounds in vivo. The new finding of low SAM in patients demands further studies, since it might indicate that low levels pose risk and that SAM might be a protective factor against the development of CAD.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Subconstrictor doses of neuropeptide Y potentiate alpha 1-adrenergic venoconstriction in vivo.

The 36-amino acid human neuropeptide Y is a vasoactive compound released after stimulation of the sympathetic nervous system. In addition to its direct and long-lasting vasopressor effects, it may potentiate the constrictor action of catecholamines and other vasoconstrictors at doses that do not per se exert vascular effects. Using the hand vein compliance technique, we have previously shown that neuropeptide Y also constricts superficial hand veins and that its effects may last for several hours. In this study, we investigated the local effect of neuropeptide Y on alpha 1-adrenergic venoconstriction in nine healthy volunteers at dose rates that did not affect venous compliance. On separate days, cumulative dose-response curves to phenylephrine alone and with coadministration of 1 or 30 pmol neuropeptide Y per minute were constructed, and the responses were fitted to a four-parameter logistic equation. Neuropeptide Y dose dependently shifted the phenylephrine curves toward lower dose rates without affecting maximal effects. ED50 values for phenylephrine alone and with 1 or 30 pmol/min neuropeptide Y were 4.0, 4.9 (P = NS versus control), and 1.2 (P < .005) nmol/min, respectively. Comparison with neuropeptide Y dose-response curves revealed that the interaction was synergistic. These are the first data in humans to show that small dose rates of neuropeptide Y may potentiate alpha-adrenergic effects in vivo. Because this interaction occurs at estimated local concentrations nearly achieved in humans, these studies suggest that neuropeptide Y might modulate the filling of this capacitance system in vivo.

Adrenergic alpha-Agonists↗

Prolonged sedation due to accumulation of conjugated metabolites of midazolam.

Midazolam is a short-acting benzodiazepine routinely used in intensive-care medicine. Conjugates of its main metabolite, alpha-hydroxymidazolam, have been shown to accumulate in renal failure but have not previously been related to the prolonged sedative effects commonly observed in critically ill patients. We report five patients with severe renal failure who had prolonged sedation after administration of midazolam. In all five patients, the comatose state was immediately reversed by the benzodiazepine-receptor antagonist flumazenil. Serum concentration monitoring showed high concentrations of conjugated alpha-hydroxymidazolam when concentrations of the unconjugated metabolite and the parent drug were below the therapeutic range. In-vitro binding studies showed that the affinity of binding to the cerebral benzodiazepine receptor of glucuronidated alpha-hydroxymidazolam was only about ten times weaker (affinity constant 16 nmol/L) than that of midazolam (1.4 nmol/L) or unconjugated alpha-hydroxymidazolam (2.2 nmol/L). Conjugated metabolites of midazolam have substantial pharmacological activity. Physicians should be aware that these metabolites can accumulate in patients with renal failure.

Aged↗

Nitric oxide is responsible for flow-dependent dilatation of human peripheral conduit arteries in vivo.

BACKGROUND: Experimental evidence suggests that flow-dependent dilatation of conduit arteries is mediated by nitric oxide (NO) and/or prostacyclin. The present study was designed to assess whether NO or prostacyclin also contributes to flow-dependent dilatation of conduit arteries in humans. METHODS AND RESULTS: Radial artery internal diameter (ID) was measured continuously in 16 healthy volunteers (age, 24 +/- 1 years) with a transcutaneous A-mode echo-tracking system coupled to a Doppler device for the measurement of radial blood flow. In 8 subjects, a catheter was inserted into the brachial artery for measurement of arterial pressure and infusion of the NO synthase inhibitor NG-monomethyl-L-arginine (L-NMMA; 8 mumol/min for 7 minutes; infusion rate, 0.8 mL/min). Flow-dependent dilatation was evaluated before and after L-NMMA or aspirin as the response of the radial artery to an acute increase in flow (reactive hyperemia after a 3-minute cuff wrist occlusion). Under control conditions, release of the occlusion induced a marked increase in radial blood flow (from 24 +/- 3 to 73 +/- 11 mL/min; P < .01) followed by a delayed increase in radial diameter (flow-mediated dilatation; from 2.67 +/- 0.10 to 2.77 +/- 0.12 mm; P < .01) without any change in heart rate or arterial pressure. L-NMMA decreased basal forearm blood flow (from 24 +/- 3 to 13 +/- 3 mL/min; P < .05) without affecting basal radial artery diameter, heart rate, or arterial pressure, whereas aspirin (1 g PO) was without any hemodynamic effect. In the presence of L-NMMA, the peak flow response during hyperemia was not affected (76 +/- 12 mL/min), but the duration of the hyperemic response was markedly reduced, and the flow-dependent dilatation of the radial artery was abolished and converted to a vasoconstriction (from 2.62 +/- 0.11 to 2.55 +/- 0.11 mm; P < .01). In contrast, aspirin did not affect the hyperemic response nor the flow-dependent dilatation of the radial artery. CONCLUSIONS: The present investigation demonstrates that NO, but not prostacyclin, is essential for flow-mediated dilatation of large human arteries. Hence, this response can be used as a test for the L-arginine/NO pathway in clinical studies.

Adult↗

Neuropeptide Y in human hand veins: pharmacologic characterization and interaction with cyclic guanosine monophosphate-dependent venodilators in vivo.

The dorsal hand vein compliance technique was used to study direct vascular effects of human neuropeptide Y in vivo. Human neuropeptide Y is an endogenous vasoconstrictor peptide that is costored with norepinephrine in sympathetic nerve endings and coreleased with the catecholamine under various physiologic and pathologic conditions. Compared with the alpha 1-adrenergic agonist phenylephrine (geometric mean dose-rate that produces the half-maximal response [ED50]: 1.05 nmol/min; maximum venoconstriction [Emax] +/- SEM, expressed as a percentage of baseline compliance: 91% +/- 3%), human neuropeptide Y was nine times more potent (geometric mean ED50: 0.122 nmol/min; p < 0.001) but markedly less efficacious (Emax: 58% +/- 4%; n = 12; p < 0.001). Venoconstrictor effects of human neuropeptide Y lasted several hours and were unchanged by simultaneous administration of alpha-adrenergic antagonists but were readily reversed by nitroglycerin or bradykinin. The high responsiveness of subcutaneous veins to human neuropeptide Y indicates that human neuropeptide Y may regulate venous compliance and filling of the venous subcutaneous capacitance bed in vivo.

Adult↗

Role of basal and stimulated release of nitric oxide in the regulation of radial artery caliber in humans.

Although it is well established that nitric oxide contributes to the regulation of resistance arterial tone in humans, its role at the level of large arteries is less clear. Therefore, we assessed in healthy volunteers the effect of local administration of the inhibitor of nitric oxide synthesis NG-monomethyl-L-arginine (L-NMMA) on basal radial artery diameter (transcutaneous A-mode echotracking) and radial blood flow (Doppler) as well as on the radial response to acetylcholine and the nitric oxide donor sodium nitroprusside. A catheter was inserted into the brachial artery for measurement of arterial pressure and infusion of L-NMMA (2, 4 and 8 mumol/min for 5 minutes, n = 11), acetylcholine (3, 30, 300 and 900 nmol/min for 3 minutes, n = 8), and nitroprusside (2.5, 5, 10, and 20 nmol/min for 3 minutes, n = 6). None of the treatments affected arterial blood pressure or heart rate. L-NMMA dose-dependently decreased radial blood flow (from 31 +/- 6 to 17 +/- 3 10(-3) L/min after 8 mumol/min, P < .01) but did not affect radial artery diameter (from 2.93 +/- 0.11 to 2.90 +/- 0.14 mm). Acetylcholine dose-dependently increased radial blood flow (154 +/- 43% after 900 nmol/min) and radial artery diameter (16 +/- 4%), and both effects were markedly reduced after L-NMMA (increase in radial blood flow and radial artery diameter: 22 +/- 20% and 3 +/- 2%, respectively; both P < .01 versus controls). Nitroprusside also dose-dependently increased radial artery diameter (14 +/- 4% after 20 nmol/min) but only moderately affected radial blood flow (47 +/- 21%).(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

[Role of nitric oxide in the regulation of the mechanical properties of peripheral muscular arteries in man].

Although several experiments have demonstrated the existence of a basal NO-dependent vasodilatory tone at the arteriolar level, the contribution of NO to the mechanical properties of large arteries has not been investigated in humans. To evaluate the effect of NO-synthase inhibition on these mechanical properties, radial artery internal diameter (d, mm) and wall thickness (h, mm) were measured continuously in 11 healthy volunteers (age: 24 +/- 1 years), using an A-mode echo-tracking system coupled to a Doppler device for the measurement of radial blood flow (RBF, ml/min). A catheter was inserted in the brachial artery for measurement of arterial pressure (AP, mmHg), and infusion of the inhibitor of NO synthesis NG-monomethyl L-arginine (L-NMMA: 4 mumol/min for 5 min, infusion rate 0.8 ml/min). Arterial compliance C, 10(-3) mm2/mmHg), distensibility (D, 10(-3)/mmHg), mid-wall stress (sigma, 10(5) dynes/mm2) and incremental modulus (Ei, 10(7) dynes/mm2) were calculated before and after L-NMMA. After L-NMMA, RBF decreased from 31 +/- 6 to 23 +/- 4 (p < 0.05), radial vascular resistance increased from 2.70 +/- 0.35 to 3.77 +/- 0.55 (p < 0.05), without changes in AP or heart rate. Table shows mechanical parameters, assessed at fixed AP (80 mmHg) (*: p < 0.05 vs baseline): [table: see text] Thus, the L-NMMA-induced decrease in radial arterial wall stiffness (Ei) without changes in arterial diameter or stress demonstrates that NO-synthase inhibition induces an isometric relaxation of vascular muscle cells, which explains the increase of arterial compliance at constant mid-wall stress. These results demonstrate that NO contributes to the regulation of peripheral muscular arterial mechanics in humans. At the level of large arteries, the isometric relaxation observed after NO-synthase inhibition is probably the consequence of compensatory vasodilator mechanisms.

Adult↗

Indirect evidence for stimulation of nitric oxide release by tumour necrosis factor-alpha in human veins in vivo.

OBJECTIVES: The detrimental haemodynamic changes observed in septicaemia are generalised vasodilation, arterial hypotension, and hyporesponsiveness to vasopressor compound, all of which could be explained by the release of an endogenous vasodilator. Experimental and clinical evidence suggests that tumour necrosis factor-alpha (TNF) induces the expression of vascular nitric oxide (NO) synthase within hours and that NO released from smooth muscle cells could be involved in the pathogenesis of septic shock. The aim of this study was to investigate the role of NO in the vascular effects of TNF. METHODS: Using the dorsal hand vein compliance technique, the effect of the NO synthase inhibitor L-NG-monomethyl-arginine (L-NMMA) on alpha 1-adrenergic responsiveness (phenylephrine 1.25-8000 ng/min) was studied after prolonged local venous infusion of TNF (8.7 micrograms in 5 h) in 9 volunteers and in 6 volunteers without previous cytokine exposure. RESULTS: Mean (+/- s.e.) maximum phenylephrine constriction (Emax) was 73 +/- 6% and log dose-rates exerting 50% of Emax (log ED50) were 3.2 +/- 0.09 (geometric mean: 1535 ng/min). Local co-administration of L-NMMA at a dose sufficiently high to block NO formation (3.4 mumol/min) increased venous sensitivity to phenylephrine threefold (log ED50 2.8 +/- 0.1, P < 0.015; geometric mean: 574 ng/min) whereas Emax was similar (73 +/- 5%). In the controls the phenylephrine dose-response relationship remained unaffected by simultaneous administration of L-NMMA. CONCLUSIONS: As no basal release of NO occurs in hand veins without previous exposure to TNF these results provide direct evidence for induction of NO formation in the human vasculature and consecutive resistance to alpha-adrenergic venoconstriction. NO might, therefore, be a key mediator of haemodynamic impairment in humans under conditions with known elevations of circulating TNF, such as a septic shock.

Adult↗

[Role of nitric oxide in flow-dependent vasodilation of human peripheral arteries in vivo].

Experiments performed in isolated arteries or in animals suggested that flow-dependent dilatation of conduit arteries is mediated through the release of endothelium-derived nitric oxide (NO). The present study was designed to assess whether NO also contributes to flow-dependent dilatation of conduit arteries in humans. Radial artery internal diameter was measured in 8 healthy volunteers (age 22 +/- 1 years), using a transcutaneous A-mode echo-tracking system, coupled to a Doppler device for the measurement of radial blood flow. A catheter was inserted in the brachial artery for measurement of arterial pressure and infusion of the L-arginine analogue NG-monomethyl L-arginine (L-NMMA (8 mumol/min for 7 min, infusion rate 0.8 ml/min). Flow-dependent dilatation was evaluated before and after L-NMMA as the response of the radial artery to an acute increase in flow (reactive hyperemia after a 3 min distal cuff occlusion). Release of the occlusion induced a significant increase in radial blood flow (from 27 +/- 4 to 82 +/- 13 ml/min; p < 0.01) followed by a delayed increase in radial diameter (flow-mediated dilatation; from 2.77 +/- 0.13 to 2.85 +/- 0.13 min; p < 0.01), without any change in heart rate or arterial pressure. L-NMMA induced a significant decrease in basal forearm blood flow (from 27 +/- 4 to 14 +/- 2 ml/min; p < 0.05), without affecting basal radial artery diameter, heart rate or arterial pressure.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Drug-induced Stevens-Johnson syndrome in a patient with AIDS].

The Stevens-Johnson syndrome is a severe potentially life-threatening form of the erythema multiforme, affecting both skin and mucous membranes. We present a case of a 49-year-old male patient with AIDS who developed a Stevens-Johnson syndrome while being treated with pyrimethamine, sulfadiazine and phenytoin for cerebral toxoplasmosis. Further diagnostic evaluation of this dangerous cutaneous affection may prove difficult for several reasons. In particular, in patients with AIDS who are more susceptible for adverse drug reactions and who are simultaneously receiving a variety of drugs with a considerable potential of cutaneous side effects, therapy cannot be withhold for lack of therapeutic alternatives. Moreover, the low lymphocyte count in this case may have made reliable testing with lymphocyte transformation studies impossible. The evaluation and the differential diagnosis of the drug-induced Stevens-Johnson syndrome are discussed. Especially long- and moderately long-acting sulfonamides belong to the most important agents that can cause a drug-induced Stevens-Johnson syndrome. The pathogenesis and the risk factors for cutaneous hypersensitivity reactions in HIV-infected patients are only poorly understood. These kind of reactions, however, seem to occur more often in patients with a more advanced immunodeficiency.

Acquired Immunodeficiency Syndrome↗

[Torsade de pointes during anti-arrhythmia treatment with amiodarone].

Torsade de pointes, a polymorphous ventricular tachycardia, is a well-known but rarely occurring cardiac adverse drug reaction under amiodarone, a class-III antiarrhythmic agent. We report the case of a 60-year-old male patient who developed a life-threatening torsade after three weeks of amiodarone therapy. Considering some potential risk factors, amiodarone is an effective and safe antiarrhythmic agent for ventricular and supraventricular tachycardia. In most patients, Amiodarone can be used safely even in those who had developed a torsade de pointes with other antiarrhythmic agents.

Amiodarone↗

Acyclovir-induced neurotoxicity: concentration-side effect relationship in acyclovir overdose.

PURPOSE: To investigate the concentration-side effect relationship in a patient with severe acyclovir-induced neurotoxicity and to summarize the information available in the literature about central nervous system side effects due to acyclovir. METHODS: Repeated blood samples were drawn in a patient with severe acyclovir overdose who developed coma and nonoliguric renal failure. The acyclovir levels measured by radioimmunoassay were related to the level of consciousness. RESULTS: We measured the highest acyclovir serum levels reported so far (229.9 mumol/L = 51.8 mg/L). Impairment of consciousness developed with a remarkable temporal delay of 24 to 48 hours after occurrence of peak serum concentrations and resolved with a comparable delay after reaching the therapeutic range (anticlockwise hysteresis). Six days after discontinuation of the drug, central nervous system symptoms had resolved, and, 4 days later, renal function returned to pretreatment values. CONCLUSIONS: The observation that neurotoxicity developed with a delay of 24 to 48 hours after acyclovir peak serum concentrations could explain the wide range of acyclovir levels reported in similar cases. Single drug level measurements may therefore be of little diagnostic value. Since toxicity develops with a remarkable delay, early removal of the drug (by hemodialysis) could possibly prevent central nervous toxicity.

Acyclovir↗