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H K Webster

Publications and source records attributed to H K Webster.

At least 37 records · Page 2Linked to original sources

Chemistry of artemisinin: an overview.

The endoperoxide sesquiterpene lactone, artemisinin, and its derivatives have become increasingly important as antimalarial drugs with impressive activity against multidrug resistant forms of Plasmodium falciparum. Artemisinin has a novel structure among known antimalarial compounds with a unique 1,2,4-trioxane ring that is essential for activity. This paper gives an overview of the chemistry of artemisinin and comments on future prospects for artemisinin and its derivatives.

Antimalarials↗

Safety, immunogenicity and limited efficacy study of a recombinant Plasmodium falciparum circumsporozoite vaccine in Thai soldiers.

Thai soldiers were vaccinated with a recombinant protein derived from the central repeat region of the circumsporozoite (CS) protein of Plasmodium falciparum conjugated to Toxin A (detoxified) of Pseudomonas aeruginosa (R32Tox-A) to evaluate its safety, immunogenicity and efficacy. In a randomized, double-blind manner, 199 volunteers received either R32Tox-A or a control vaccine at 0, 8 and 16 weeks. Immunization was performed in a malaria non-transmission area, after completion of which volunteers were deployed to an endemic border area and monitored closely to allow early detection and treatment of infection. The vaccine was found to be safe and to elicit antibody responses in all vaccinees. Peak CS antibody (IgG) concentrations in malaria-experienced vaccinees exceeded those in malaria-naive vaccinees (mean 40.6 versus 16.1 micrograms ml-1; p = 0.005) as well as those induced by previous CS protein-derived vaccines and observed in association with natural infections. A log-rank comparison of time to falciparum malaria revealed no differences between vaccinated and non-vaccinated subjects. Secondary analyses revealed that CS antibody levels were lower in vaccinee malaria cases than in non-cases, 3 and 5 months after the third dose of vaccine (p = 0.06 and p = 0.014, respectively). Because antibody levels had fallen substantially before peak malaria transmission occurred, the question of whether high levels of CS antibody are protective remains to be resolved.

Adult↗

Qualitative and semiquantitative polymerase chain reaction to predict Plasmodium falciparum treatment failure.

Multidrug-resistant falciparum malaria is increasing in most malaria-endemic areas. Rapid methods for predicting treatment failure would aid management and control of drug-resistant infections. In this study, Plasmodium falciparum DNA clearance was examined by qualitative and semiquantitative polymerase chain reaction (PCR). Thai patients with acute falciparum malaria were prospectively followed by light microscopy and by PCR of P. falciparum DNA eluted from filter paper blood samples. A 206-bp P. falciparum sequence was amplified and detected radiometrically and by high-performance liquid chromatography. Clearance of P. falciparum DNA was significantly delayed in treatment failures compared with that in successfully treated patients (P = .02). Semiquantitative PCR levels did not drop to < 50% of pretreatment levels until day 3 or later in treatment failures compared with day 1 or earlier for successfully treated parasitemia-matched controls (P = .005). These results suggest that qualitative and semiquantitative PCR may be useful as a method for monitoring response to therapy.

Adolescent↗

Oxidative activation of proguanil and dapsone acetylation in Thai soldiers.

The prevalence of putative poor metaboliser (PM) phenotypes of proguanil oxidation in Caucasian populations is 3-10%. The PM frequency in Oriental populations is unknown. In this study the plasma metabolic ratios of proguanil and dapsone to their principal metabolites cycloguanil and monoacetyldapsone were determined in Thai soldiers receiving antifolate drug combinations for malaria prophylaxis. The distribution ratio of proguanil to cycloguanil (PROG/CYC) was highly skewed with no evidence of bimodality. Assuming subjects with a PROG/CYC ratio greater than 10 are PMs from studies in Caucasians, the incidence of PMs in the soldiers would be 18% (30 of 170). The mean PROG/CYC ratio for PMs in the Thai soldiers was 31.2 +/- 28.9 (n = 30) compared with 25.5 +/- 2.5 (n = 3) in a study of Caucasians. The corresponding values for putative EMs were 5.4 +/- 2.1 (n = 140) and 2.4 +/- 0.2 (n = 134). Similar to other Oriental populations, Thais were found to be predominantly (76%, 173 of 228) rapid acetylators of dapsone.

Acetylation↗

Polyclonal expansion of peripheral gamma delta T cells in human Plasmodium falciparum malaria.

Plasmodium falciparum malaria in humans is associated with an increase in the percentage and absolute number of gamma delta T cells in the peripheral blood. This increase begins during the acute infection phase and persists for at least 4 weeks during convalescence. In the present study, 25 to 30% of the gamma delta T cells expressed HLA-DR antigens in vivo and in some patients they proliferated in response to further stimulation by purified human interleukin 2 in vitro. However, there was no in vitro proliferative response to various malarial antigens, including a 75-kDa heat shock protein and a 72-kDa glucose-regulated protein of P. falciparum during the acute infection phase. Cytofluorographic studies showed that although an increase of V delta 1- gamma delta T cells was largely responsible for the expansion of the total number of gamma delta T cells, there was also a proportional increase in V delta 1+ cells. These results were confirmed with anchored PCR and by DNA sequencing to characterize at the molecular level the set of T-cell receptor (TCR) delta mRNAs expressed in the peripheral blood of two patients with high levels of gamma delta T cells. In each case, most of the TCR delta mRNA transcripts corresponded to nonproductively rearranged delta genes (unrearranged J delta or near J delta spliced to C delta). In those sequences which did represent productively rearranged genes, most of the transcripts originated from a V delta 2/J delta 1 joining, as in normal individuals. A minority of transcripts originated from a V delta 1/J delta 1 rearrangement, and one originated from a V alpha 4/J delta 1 rearrangement. Polyclonal activation of gamma delta T cells was inferred from the extensive junctional diversity seen in the delta mRNAs analyzed. Expansion of a heterogeneous set of both V delta 1(-)- and V delta 1(+)-bearing T cells suggests that the elevated levels of gamma delta T cells seen during acute P. falciparum malaria arose from immune responses to multiple distinct parasite antigens or unidentified host factors.

Adult↗

Evaluation of WR250417 (a proguanil analog) for causal prophylactic activity in the Plasmodium cynomolgi-Macaca mulatta model.

The Plasmodium cynomolgi-Macaca mulatta model has been used to test the antimalarial activity of new drugs for both radical cure and casual prophylaxis. The proguanil analog WR250417 (also known as PS-15) was evaluated for causal prophylactic activity in rhesus monkeys infected with P. cynomolgi bastianelli. Four monkeys were orally dosed with 40 mg/kg/day of WR250417 over three days (-1, 0, and +1). Sporozoite-induced infection of P. cynomolgi was initiated on day 0 with 1 x 10(6) sporozoites to each monkey. Compound WR250417 extended the prepatent period from an average of 8.5 days for controls (n = 2) to a mean of 18.3 days (range 18-19 days, n = 4) for drug-treated monkeys. Analysis of plasma drug concentrations by high-performance liquid chromatography showed that the monkeys converted the WR250417 to its putative principal active metabolite WR99210 (a dihydrotriazine). These findings demonstrate that WR250417 and its principal metabolite do not prevent primary infection by P. cynomolgi.

Administration, Oral↗

Lymphocyte responses to Plasmodium falciparum ring-infected erythrocyte surface antigen (Pf155/RESA) peptides in individuals with naturally acquired Plasmodium falciparum malaria.

Antibody titers and lymphocyte responses to synthetic peptides corresponding to repeated amino acid sequences of the 3' and 5' regions of Pf155/ring-infected erythrocyte surface antigen (RESA) were studied in two groups of Thai subjects, soldiers (Rangers), and villagers who differed in their history of malaria exposure. The frequency of Pf155/RESA seropositivity was similar in the two groups while the frequency of high titer antibody was significantly greater in villagers than in Rangers. Lymphocyte responsiveness in vitro to all Pf155/RESA peptides was infrequent for both groups although half of the subjects studied responded to crude Plasmodium falciparum asexual blood stage malaria antigen (MA). Among responders, Pf155/RESA peptides elicited lymphocyte responses in which proliferation and interferon-gamma (IFN-gamma) production were not associated, whereas with MA, the two responses were associated. The MA-stimulated lymphocyte proliferation and IFN-gamma production for both groups of volunteers appeared to be independent of antibody titer. In this study, antibody, but not lymphocyte, responses to Pf155/RESA peptides were shown to reflect differences in prior exposure and levels of acquired immunity to falciparum malaria.

Adult↗

New, antimalarial, tricyclic 1,2,4-trioxanes: evaluations in mice and monkeys.

We have concluded initial preclinical studies with synthetic trioxanes numbered 3-9 and have compared them with artemisinin (numbered 1) using CD-1 mice infected with Plasmodium berghei. Based on their antimalarial effectiveness in mice, two of these synthetic trioxanes were selected for evaluation in Aotus monkeys infected with multidrug-resistant (MDR) P. falciparum. Trioxane numbered 8 (12 and 48 mg/kg), trioxane numbered 9 (12 and 48 mg/kg) and arteether (numbered 2, 48 mg/kg) were administered intramuscularly in three 12-hr doses to A. lemurinus lemurinus (Panamanian owl monkeys) infected with the Vietnam Smith/RE strain of P. falciparum and monitored for parasitemia. Trioxane numbered 8 at 12 mg/kg cleared parasitemia in two monkeys, but recrudescence occurred in one animal. Treatment of the recrudescent infection with 48 mg/kg was curative. Infections in two monkeys treated initially with 48 mg/kg were cured (six-month follow-up). Trioxane numbered 9 produced a similar outcome: 12 mg/kg suppressed parasitemia in two monkeys but was not curative; however, 48 mg/kg cured infections in all four monkeys treated. These preliminary observations show synthetic trioxanes numbered 8 and 9 to be as effective as arteether (numbered 2) against MDR in P. falciparum in the Aotus monkey.

Animals↗

Proguanil plus sulfamethoxazole is not causally prophylactic in the Macaca mulatta--Plasmodium cynomolgi model.

New drugs for causal prophylaxis of malaria are needed. A proguanil/sulfamethoxazole combination was investigated using a rhesus monkey model (Macaca mulatta infected with Plasmodium cynomolgi) to determine whether causal prophylaxis could be achieved. When a five-day regimen of proguanil (40 mg/kg/day) combined with sulfamethoxazole (100 mg/kg/day) was used, infection of all animals (6 of 6) was observed, with an extended prepatent period (median 40 days). Two control animals became infected on days 9 and 23 following sporozoite inoculation. Plasma concentrations indicated that proguanil and sulfamethoxazole were adequately absorbed and metabolized to cycloguanil and N4-acetylsulfamethoxazole, respectively. Analysis of liver biopsy specimens demonstrated that the drugs were present two days following sporozoite inoculation but were not detectable one week later. Proguanil plus sulfamethoxazole does not eliminate exoerythrocytic-stage parasites in the rhesus monkey--P. cynomolgi model.

Animals↗

Comparison of capillary whole blood, venous whole blood, and plasma concentrations of mefloquine, halofantrine, and desbutyl-halofantrine measured by high-performance liquid chromatography.

Whole blood mefloquine, halofantrine, and desbutyl-halofantrine concentrations were measured by high-performance liquid chromatography in capillary blood, venous blood, and venous plasma samples from patients along the Thai/Burmese border with falciparum malaria who were treated with either mefloquine (25 mg/kg) or halofantrine (24 mg/kg or 72 mg/kg). The limits of detection for mefloquine, halofantrine, and desbutyl-halofantrine were 50, 15, and 10 ng/ml, respectively, with 200 microliters whole blood samples. There was a good linear correlation (r > 0.9) between capillary and venous blood and between whole blood and plasma for all three compounds. Mefloquine concentrations in venous and capillary blood were very similar (mean ratio 1.02, 95% confidence intervals [CI] 0.95-1.09, n = 60), but were 1.15 times higher (95% CI 1.03-1.29) in whole blood than in plasma (n = 22). The halofantrine and desbutyl-halofantrine concentrations were 1.27 (1.12-1.45, n = 23) and 1.34 (1.16-1.55, n = 24) times higher in venous compared to capillary blood, while halofantrine but not desbutyl-halofantrine concentrations were lower in whole blood than in plasma (mean ratios: halofantrine: 0.83 [0.72, 0.94], n = 39 and desbutyl-halofantrine: 1.05 [0.96-1.15], n = 41). Measurement of mefloquine, halofantrine, or desbutyl-halofantrine in capillary blood is an accurate and practical alternative to venous blood sampling, and is particularly useful for sampling with children, and under field conditions when technical facilities are limited.

Adolescent↗

Plasmodium falciparum pigment induces monocytes to release high levels of tumor necrosis factor-alpha and interleukin-1 beta.

We show that high levels of tumor necrosis factor-alpha (TNF-alpha) activity were consistently detected when monocytes were cocultured with Plasmodium falciparum schizont stage-parasitized erythrocytes that subsequently ruptured. Isolated pigment recovered from ruptured schizonts was found to specifically induce monocyte release of high levels of TNF-alpha and interleukin-1 beta (IL-1 beta). Particulate free-culture supernatant that contained various soluble parasite macromolecules induced relatively low levels of TNF-alpha and IL-1 beta. When isolated pigment was treated with protease, the monokine inducing-activity was abolished. Isolated pigment prepared from different natural isolates of P. falciparum stimulated variable levels of monokine production. We propose that in vivo, malaria pigment from parasites sequestered in the host microvasculature is a physiologically relevant moiety that interacts with monocytes and stimulates the release of TNF-alpha and IL-1 beta. These observations suggest that malaria pigment may be a virulence factor in the monokine-mediated induction of organ-specific and systemic pathophysiology in falciparum malaria.

Animals↗

Alteration in cytoadherence and rosetting of Plasmodium falciparum-infected thalassemic red blood cells.

Hemoglobinopathies have a protective role in malaria that appears to be related to alterations in red blood cell (RBC) properties. Thalassemic RBCs infected with Plasmodium falciparum showed greatly reduced cytoadherence and rosetting properties as well as impaired growth and multiplication. A significant decrease in the levels of falciparum antigens associated with the membrane of infected beta-thalassemic RBCs was observed at trophozoite/schizont stage, but not young ring stage. This reduction was shown when a cytoadherence inhibitory monoclonal antibody, but not a noninhibitory pooled immune serum, was used. These observations suggest that protection against malaria in thalassemia is caused by both reduced parasitemias and altered adherence properties of the infected thalassemic RBCs that promote enhanced clearance of the parasite from the circulation.

Animals↗

Halofantrine versus mefloquine in treatment of multidrug-resistant falciparum malaria.

The continuing spread of multidrug resistance in Plasmodium falciparum malaria makes the search for alternative treatments ever more urgent. We have investigated the relative efficacy of halofantrine and mefloquine in two paired randomised trials on the Thai-Burmese border, a multidrug-resistant area. In the first trial, 198 patients with acute uncomplicated falciparum malaria were randomly assigned either the standard halofantrine regimen (24 mg/kg) or mefloquine (25 mg/kg). The cumulative failure rates by day 28 were 35% with halofantrine and 10% with mefloquine (p = 0.0002). In the second study of 437 patients, a higher dose of halofantrine (8 mg/kg every 8 h for 3 days = 72 mg/kg) was both more effective and better tolerated than mefloquine 25 mg/kg; the failure rates were 3% and 8% (p = 0.03), respectively, or 1% vs 6% after adjustment for possible reinfections (p = 0.009). The rate of failure was higher after retreatment than after primary treatment in all study groups. Halofantrine 72 mg/kg was especially effective in the retreatment of these recrudescent infections; the failure rate was 44% with mefloquine and 15% with high-dose halofantrine (relative risk 3.0 [95% CI 1.2-7.3], p = 0.008). Thus, high-dose halofantrine is better tolerated and more effective than mefloquine for the treatment of uncomplicated falciparum malaria in this area. However, evidence of possible cardiotoxicity will need to be investigated fully before a role can be established for halofantrine in the treatment of multidrug-resistant malaria.

Acute Disease↗

Two-color flow cytometric analysis of intraerythrocytic malaria parasite DNA and surface membrane-associated antigen in erythrocytes infected with Plasmodium falciparum.

A method for fixation of Plasmodium falciparum infected erythrocytes and solubilization of the erythrocyte membrane with detergent was developed. This method was applied to two-color flow cytometric analysis of both intraerythrocytic (IE) malaria DNA and parasite-derived antigen on the erythrocyte surface membrane. Infected erythrocytes were fixed with 0.025% glutaraldehyde followed by treatment with 1% saponin to gain access to intramembranous components and allow antibody to interact with antigen. DNA of IE parasite was subsequently stained with propidium iodide. Using this procedure cell morphology was well preserved with excellent parasite DNA staining. Using anti-malaria antibodies which recognize ring-infected erythrocyte surface antigen (Pf155/RESA), we observed that glutaraldehyde-fixed saponin treated infected erythrocytes exhibited a variable immunofluorescence intensity as assessed by both flow cytometry and fluorescence microscopy. Ring-infected cells displayed strong immunofluorescence staining, whereas a weak signal was detected on cells containing schizonts. Simultaneous measurement of parasite DNA and antigen in the infected erythrocyte membrane can facilitate the study of antigen expression in the cell membrane in association with development of IE parasites.

Animals↗

Malaria in splenectomized patients: report of four cases and review.

The spleen plays a central role in host defense against malaria in animals. Its role in human malaria is less well established. The spleen may contribute to protection against human malaria by mediating humoral or cellular immune responses or by clearing both rheologically and immunologically altered host erythrocytes. This report describes Plasmodium falciparum and Plasmodium vivax infections that occurred after splenectomy in one nonimmune and three partially immune Thai adults. The clinical course was uncomplicated for all four patients, and parasite clearance was delayed only in the nonimmune patient. In three patients with falciparum malaria, humoral and cellular immune responses to blood-stage antigens during the acute infection and convalescence were similar to those of individuals whose spleens were intact. These findings suggest that the spleen may not be essential for the processes leading to parasite clearance in partially immune, splenectomized patients. Further studies on the course of malarial infections in splenectomized patients are crucial for clarifying the role of the spleen in host defense against human malaria.

Adult↗

Detection of Plasmodium vivax by polymerase chain reaction in a field study.

Detection and typing of Plasmodium vivax by the polymerase chain reaction (PCR) was evaluated in a prospective blinded comparative field study in Thailand. PCR amplification of the circumsporozoite (CS) gene was compared with microscopy for the detection of P. vivax in blood samples from 174 Thai Rangers and 50 malaria-free Bangkok residents. For PCR analysis, filter paper specimens collected by finger prick were randomly processed and blindly interpreted for the presence of the CS gene of P. vivax. The VK210 and VK247 CS variants of P. vivax were detected by specific fluorescein or radiolabeled oligoprobes. Autoradiography with 32P-labeled probes and enhanced chemoluminescent detection with fluorescein-labeled probes identified 91% and 96%, respectively, of 119 microscopically confirmed infections; both systems detected < 100 parasites/microL. Compared with microscopy, the specificity of PCR and radiometric or enhanced chemoluminescent detection was 96% and 90%, respectively. The ease of collection and transport of filter-paper specimens combined with the sensitive and specific detection of allelic genes of P. vivax by PCR suggests that this method may prove to be a valuable tool for epidemiologic and heterogeneity studies of P. vivax.

Animals↗

Plasmodium coatneyi ring-infected erythrocyte surface antigens.

Plasmodium coatneyi produced ring-infected erythrocyte surface antigen (RESA) during infection of the rhesus monkey. This antigen was immunogenic and elicited an antibody response that was not persistent but was boosted by repeated infections in a manner similar to that seen in P. falciparum infections in humans. Preliminary data showed that the appearance and increasing titer of antibodies to P. coatneyi RESA-like antigen were associated with prolongation of intervals from inoculation to patency and with control of parasitemia. Studies using both immunofluorescence assay and Western blot analysis showed that P. coatneyi-immune rhesus serum cross-reacted with P. falciparum antigens, but P. falciparum immune human serum did not recognize P. coatneyi antigens in either assay. These results show that P. coatneyi expresses RESA-like antigen that elicits an antibody response similar to that observed for human antibody to P. falciparum RESA. However, antibodies to P. coatneyi did not cross-react with P. falciparum RESA in erythrocyte membrane immunofluorescence assay and dot immunoblot analysis, suggesting that different immunogenic epitopes are present on the two molecules. Our observations support the use of this primate model in RESA-based vaccine development.

Animals↗