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Biomedical subjects

W Wernsdorfer

Publications and source records attributed to W Wernsdorfer.

17 recordsLinked to original sources

Quantum phase interference and parity effects in magnetic molecular clusters

An experimental method based on the Landau-Zener model was developed to measure very small tunnel splittings in molecular clusters of eight iron atoms, which at low temperature behave like a nanomagnet with a spin ground state of S = 10. The observed oscillations of the tunnel splittings as a function of the magnetic field applied along the hard anisotropy axis are due to topological quantum interference of two tunnel paths of opposite windings. Transitions between quantum numbers M = -S and (S - n), with n even or odd, revealed a parity effect that is analogous to the suppression of tunneling predicted for half-integer spins. This observation is direct evidence of the topological part of the quantum spin phase (Berry phase) in a magnetic system.

Journal Article

A randomized, double-blind, comparative trial of a new oral combination of artemether and benflumetol (CGP 56697) with mefloquine in the treatment of acute Plasmodium falciparum malaria in Thailand.

CGP 56697, a new oral fixed combination of artemether and benflumetol, was tested in a double-blinded, randomized trial in 252 adult patients treated either with CGP 56697 (4 x 4 tablets each containing 20 mg of artemether and 120 mg of benflumetol, given at 0, 8, 24, and 48 hr), or with mefloquine (three tablets of 250 mg at initial diagnosis, followed by two tablets of 250 mg at 8 hr). Baseline data of the two groups were comparable. The 28-day cure rate with CGP 56697 was lower than with mefloquine (69.3% versus 82.4%; P = 0.002). However, CGP 56697 was more effective than mefloquine in parasite clearance time (43 hr versus 66 hr; P < 0.001) fever clearance time (32 hr versus 54 hr; P < 0.005), and gametocyte clearance time (152 hr versus 331 hr; P < 0.001). This study revealed that CGP 56697 is effective against multidrug-resistant Plasmodium falciparum malaria in Thailand, but higher doses will probably be needed to improve the cure rate.

Adolescent

Effect of pentoxifylline on cytokine patterns in the therapy of complicated Plasmodium falciparum malaria.

The effect of pentoxifylline (PTX) was tested for its capacity to modulate cytokine responses during therapy of severe Plasmodium falciparum malaria in a placebo-controlled, randomized study in 45 adult patients in Bangkok, Thailand. The patients received standard antimalarial treatment with artesunate (120 mg intravenously given immediately, then 60 mg every 12 hr for a total dose of 600 mg). The patients received either low-dose PTX (20 mg/kg/day, n = 15), high-dose PTX (40 mg/kg/day, n = 15), or placebo (n = 15) as continuous infusion for the first three days of antimalarial treatment. Tumor necrosis factor (TNF) and interleukin-6 (IL-6) plasma levels were markedly elevated in all patients prior to treatment. After 6 hr of high-dose PTX treatment, TNF and IL-6 levels significantly decreased while an increase in TNF and IL-6 levels was seen after 6 hr of low-dose PTX or placebo treatment (P < 0.01). After 12 and 24 hr of high-dose PTX infusion, TNF-receptor plasma concentrations were lower than in low-dose PTX- or placebo-treated patients (P < 0.01), whereas no differences between the groups with regard to IL-6 receptor levels were observed. We conclude that 40 mg/kg/day of PTX reduces plasma levels of TNF, IL-6, and TNF-receptor in patients with severe malaria. Whether this reduction improves clinical outcome remains to be determined.

Antimalarials

Follow-up of the susceptibility of Plasmodium falciparum to antimalarials in Gabon.

The sensitivity of Plasmodium falciparum to chloroquine, mefloquine, quinine, quinidine, halofantrine, artemisinin, and sulfadoxine/pyrimethamine was investigated in Lambarene, Gabon in 1994. The development of in vitro susceptibility has been traced from 1983 or 1992 to 1994 for chloroquine, mefloquine, halofantrine, and quinine. Standard in vitro microtests according to World Health Organization methodology were performed. Of 33 isolates tested for susceptibility to chloroquine, 31 were resistant, one was borderline, and one isolate was sensitive (mean 50% effective concentration [EC50] = 1.38 micromol/L of blood). With mefloquine, all isolates were fully inhibited below the threshold of resistance (mean EC50 = 0.51 micrmol/L of blood). Of 32 isolates tested with quinine, six had borderline resistance (mean EC50 = 0.54 micromol/L of blood medium mixture). Susceptibility to quinidine was higher with a mean EC50 of 0.15 micromol/L of blood medium mixture. With halofantrine, 26 of 32 isolates matured at 3 nmol/L of blood medium mixture (mean EC50 = 1.64 nmol/L of blood medium mixture), indicating a steep decrease in susceptibility in comparison with 1992. For artemisinin, the mean EC50 was 97.92 nmol/L of blood medium mixture. Sulfadoxine/pyrimethamine showed five of 16 resistant isolates with a mean EC50 of 2.46 nmol/L of blood medium mixture. Whereas chloroquine resistance remained stable with a tendency to decrease, susceptibility to mefloquine and quinine was slightly decreased. A significant increase in the mean EC50 and EC90 in comparison with our previous data from Gabon was found for halofantrine.

Animals

The effect of artemisinin on granulocyte function assessed by flow cytometry.

The effect of dihydroartemisinin, artemisinin and artesunate (0.1, 0.5, 5 and 50 mg/L) on phagocytic function and release of reactive oxygen products by neutrophils was studied by flow cytometry. Incubation with dihydroartemisinin, artemisinin and artemether resulted in a decreased capacity to phagocytose Escherichia coli (0.1-50 mg/L: 62-40%, 66-32% and 59-47% of the control values, respectively; P < 0.001 for all). Conversely, the derivatives enhanced the intracellular generation of reactive oxygen intermediates (0.1-50 mg/L: 146-140%, 174-197% and 188-136% of the control values, respectively; P < 0.001 for all). Artemisia derivatives enhance the reactive oxygen response of neutrophils but depress their phagocytic ability at therapeutic blood levels.

Adult

Efficacy of artemisinin and mefloquine combinations against Plasmodium falciparum. In vitro simulation of in vivo pharmacokinetics.

The activity of artemisinin in combination with mefloquine was tested in vitro against a chloroquine-sensitive (F32) strain of Plasmodium falciparum. A method of repetitive dosing and extending the culture observation period to 28-30 days was used to mimic the in vivo pharmacokinetic situation. Plasmodium falciparum was exposed to artemisinin from 10(-8) to 10(-5) M, mefloquine from 3 x 10(-9) to 10(-5) M and their combinations. The exposure time for artemisinin was 3 hours twice daily and for mefloquine 24 hours. The drug-dosing duration was 3 days. Neither artemisinin nor mefloquine alone provided radical clearance of P. falciparum, even when maximum concentrations (10(-5) M) were applied. The antiparasitic activity of artemisinin and mefloquine were significantly higher when dosed alone. Effective concentrations for different degrees of inhibition (EC 50, 90 and 99) of both artemisinin and mefloquine respectively were significantly lower when used in combination. At concentrations normally reached in vivo, this effect was clearly synergistic (P = 0.016) Our in vitro model of intermittent dosing of artemisinin and mefloquine combinations for 3 days provides significant evidence of positive interaction between the two compounds. Lower combination concentrations around the MIC-values for the individual compounds showed synergistic effect, and high concentrations showed additive effect. This indicates that such drug combinations may provide radical clearance at concentrations lower than those required for single-drug treatment.

Animals

Pyronaridine.

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Adult

Soluble intercellular adhesion molecule-1 (ICAM-1), endothelial leukocyte adhesion molecule-1 (ELAM-1), and tumor necrosis factor receptor (55 kDa TNF-R) in patients with acute Plasmodium falciparum malaria.

Adhesion of Plasmodium falciparum-infected erythrocytes to vascular endothelium is in part mediated by ICAM-1 and ELAM-1 (E-selectin), which can be induced via the 55-kDa TNF-receptor (TNF-R55kDa). We have studied serum levels of soluble ICAM-1 (sICAM-1), ELAM-1 (sELAM-1), and soluble TNF-R55kDa (sTNF-R55kDa) in 37 patients with uncomplicated P. falciparum infection and in 17 control subjects in Bangkok, Thailand. The serum levels of sICAM-1 were markedly elevated in patients prior to treatment (601 +/- 239 ng/ml versus 160 +/- 47 ng/ml in healthy controls). In addition, elevated levels of sELAM-1 (53.6 +/- 23.1 ng/ml versus 21.5 +/- 10.1 ng/ml) and sTNF-R55kDa (4.7 +/- 3.2 ng/ml versus 1.0 +/- 0.4 ng/ml) were observed (P < 0.05 for all). Soluble ELAM-1 reached normal levels on Day 3, and sTNF-R55kDa on Day 14, while sICAM-1 was still significantly elevated 28 days after treatment was started (P < 0.05 for all). A correlation between sTNF-R55kDa (P < 0.05) and sELAM-1 (P < 0.05), respectively, with parasitemia prior to antimalarial treatment was found. These results suggest that a TNF-mediated expression of adhesion molecules induced by the asexual stage of malaria parasites serves as an immune-evasion mechanism.

Acute Disease

Serum laminin in malaria.

AIM: To determine serum laminin concentrations in patients with uncomplicated Plasmodium falciparum malaria. METHODS: An enzyme linked immunosorbent assay (ELISA) was used to determine serum laminin concentrations in 54 patients with acute uncomplicated P falciparum malaria during and after treatment, and in 17 control subjects in Bangkok, Thailand. RESULTS: Raised concentrations of soluble laminin were observed in patients (mean (SD) concentration 628 (225) ng/ml), compared with normal controls (490 (116) ng/ml), during the acute phase of the disease. During treatment, serum laminin concentrations decreased and returned to normal within three days. Serum laminin concentrations were correlated with parasite counts before treatment, and with the serum concentration of soluble intercellular adhesion molecule-1 (ICAM-1), soluble E-selectin, and soluble tumour necrosis factor receptor at 55 kilodaltons. CONCLUSIONS: These findings are compatible with an increased production or release of laminin in P falciparum malaria, which could indicate a role for the subendothelial basement membrane in the pathogenesis of the disease.

Acute Disease

Plasma concentrations of sulfadoxine in healthy and malaria infected Thai subjects.

The disposition of sulfadoxine was studied in the presence of pyrimethamine in 18 healthy Thai subjects who had been suffering from falciparum malaria in the 6 months prior to the study, and in 12 Thai patients with acute malaria. The volunteers were administered an oral dose of 500 mg sulfadoxine + 25 mg pyrimethamine (1 Fansidar tablet). They were classified retrospectively as responders (Group I, n = 8) or nonresponders (Group II, n = 10) according to previous response to treatment with Fansidar. The patients were treated with 3 Fansidar tablets corresponding to 1500 mg sulfadoxine and 75 mg pyrimethamine. Five of them were completely cured. Seven patients showed R I or R II resistance. In all cases blood samples were collected up to 288 h post dose. The resultant plasma was analyzed for active (i.e. unchanged) and total sulfadoxine using a modified Bratton-Marshall method. In the healthy volunteers the plasma concentration time course of total sulfadoxine was similar for responding and nonresponding subjects. However, in nonresponders active sulfadoxine tended to show shorter half-lives (harmonic means were 212 h vs 267 h, respectively). Furthermore, significantly higher amounts of metabolites (mainly N4-acetylsulfadoxine) were present in plasma of nonresponders. In contrast to these findings, in malaria patients, plasma concentrations of active and total sulfadoxine were even higher in nonresponders as compared to the subjects who could be successfully cured. Furthermore, in this case there was no increase of the amount of metabolites in plasma.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Evaluation of an in vitro test method for the assessment of sensitivity of Plasmodium falciparum to pyrimethamine and sulfadoxine.

Twenty three Plasmodium falciparum isolates collected from two highly pyrimethamine/sulfadoxine-resistant areas of Thailand were evaluated for their in vitro responses to pyrimethamine, sulfadoxine and combinations of these two drugs in various conditions. The test procedure was based on inhibition of parasite multiplication and of schizont formation, using the recommended modified RPMI medium 1640 with PABA 0.5 mug per litre and folic acid 10 mug per litre (LPLF). The optimum blood/medium ratios and inoculum sizes for parasite multiplication and for schizont formation were 1:19, 100 mul/well and 1:9, 50 mul/well, respectively. The appropriate incubation period was 48 hours. It was found that inhibition of either parasite multiplication or schizont formation could be used as the endpoint for evaluating the antiplasmodial action of pyrimethamine and combined pyrimethamine/sulfadoxine in vitro for field investigations; however, inhibition of only parasite multiplication should be used for determination of sulfadoxine activity. The actions of pyrimethamine in the combination pyrimethamine/sulfadoxine in ratios of 1:80 and 1:200 were similar. In vitro testing using combined pyrimethamine/sulfadoxine should be more precise than pyrimethamine alone for monitoring parasite susceptibility to the combined drug (Fansidar).

Animals