Treatment of primaquine-resistant Plasmodium vivax malaria.
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Biomedical subjects
Publications and source records attributed to D A Warrell.
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Cerebral malaria is the most important manifestation of severe Plasmodium falciparum infection. The clinical picture in South East Asian adults differs from that in African children. The children are more likely to have abnormal brain stem reflexes, signs suggestive of cerebral herniation, and raised CSF opening pressure, and to suffer persistent neurological sequelae. The mortality remains high at about 20%. The diagnosis must be considered in all patients with fever and impaired consciousness who may have been exposed to the infection. The pathophysiology of cerebral malaria may involve mechanical obstruction of the cerebral circulation by parasitized erythrocytes which have adhered to the vascular endothelium. Cytokines such as tumor necrosis factor may also contribute. The most important element of treatment is early, optimal chemotherapy with quinine, but artemisinine derivatives may prove even more effective.
Three Brazilian polyspecific Bothrops antivenoms were compared using standard W.H.O. rodent in vivo and in vitro assays of their ability to neutralize the principal venom activities of pooled whole Bothrops jararaca venom. On a volume basis, the antivenoms were equally effective in neutralizing lethal activity in mice, and there were only minor differences in their ability to neutralize venom-induced haemorrhage, necrosis and procoagulant activity. Antivenom efficacy in neutralizing defibrinogenation varied. However, when equal amounts of antivenom IgG were compared, it was found that the FUNED antivenom best neutralized lethality, haemorrhage, necrosis and fibrinogen clotting activity. Vital Brazil and FUNED antivenoms were equally effective in neutralizing plasma coagulant activity but Vital Brazil antivenom was the more effective in neutralizing defibrinogenation.
1. H.p.l.c. methods are described for the measurement of pyrimethamine and sulphadoxine in small volumes of plasma dried on filter paper strips. 2. Pyrimethamine/sulphadoxine (Fansidar, Hoffman LaRoche) was given by mouth and by intramuscular injection to children with uncomplicated falciparum malaria but with high parasitaemia (n = 8 for both routes; pyrimethamine 1.25 mg kg-1, sulphadoxine 25 mg kg-1). 3. Plasma concentrations of pyrimethamine and sulphadoxine associated with synergistic effects against pyrimethamine-resistant strains of Plasmodium falciparum in vitro were achieved within 1 h of administration and were maintained beyond the end of sampling. 4. After both oral and parenteral administration the plasma concentrations of both compounds were lower than those predicted by data from healthy subjects. 5. Areas under the plasma concentration-time curves of sulphadoxine after oral and i.m. administration did not differ significantly, although maximum plasma drug concentrations were higher after the i.m. route (P = 0.03). 6. The AUC values of pyrimethamine did not differ significantly between the two routes of administration. However, after i.m. administration AUC(0,24 h) values were smaller (P = 0.03), and the time to maximum plasma drug concentration (tmax) was longer (P = 0.004) than when the drug was given orally.
1. A method is described for the measurement of phenobarbitone (PB) by reversed phase high performance liquid chromatography (h.p.l.c.) from small samples of whole blood dried onto filter paper strips. 2. The disposition of PB given prophylactically to young children with severe malaria on parenteral quinine is contrasted with that in aparasitaemic Kenyan children on no antimalarial drugs. There were no differences in the disposition of PB between the two groups. 3. Peak blood PB concentrations were equal to or greater than 15 mg l-1 in 27% of the patients on quinine and 23% of those not on quinine; a concentration of 10 mg l-1 was achieved or exceeded by 100% and 92% of each group, respectively, and was maintained for 39 +/- 24 h (mean +/- s.d.), and 33 +/- 21 h, respectively. 4. In an open, dose-finding study, the progress of young children with cerebral malaria given prophylactic PB (10 mg kg-1), was contrasted with that of controls given no seizure prophylaxis. 5. The drug had no apparent effect on depth or duration of coma, but neither was the incidence of seizures reduced. 6. A controlled trial of prophylactic PB in young children with cerebral malaria is needed, but a larger dose than 10 mg kg-1 should be studied.
The effect of the three main Brazilian polyspecific antivenoms on venom clearance was assessed in 118 moderately envenomed victims of bites by Bothrops species (mainly B. jararaca) in Sao Paulo State, Brazil. Serum samples taken from patients at intervals during their stay in the hospital and at followup approximately four weeks later were tested by enzyme immunoassay for the presence of whole venom and therapeutic antivenom. Results indicated that in patients treated with the standard regimen of either four (40 ml) or eight (80 ml) ampules of each antivenom, venom was cleared from the circulation within four days of antivenom administration. However, high concentrations of antivenom persisted for approximately 10 days and remained detectable until 30-50 days after administration. This suggests that patients may be being treated with excessive amounts of antivenom in Brazil. This practice increases the national cost of antivenom therapy and may contribute to the high frequency of antivenom reactions. Clinically, there was no obvious difference in the efficacy between the three antivenoms.
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Opening lumbar cerebrospinal fluid (CSF) pressure was measured with a paediatric spinal fluid manometer in 26 of 61 Kenyan children (mean age 39 months) with cerebral malaria. In all cases pressure was above normal (mean [SD]22.6 [7.4] cm CSF, range 10.5-36). Clinical features of our patients suggest that intracranial hypertension is important in the pathogenesis of cerebral malaria in children, especially as a cause of death. We suggest that raised intracranial pressure is secondary to increased cerebral blood volume. Lowering intracranial pressure may significantly reduce the mortality and morbidity of cerebral malaria. The potential risks and benefits of lumbar puncture should be considered carefully in patients with suspected cerebral malaria.
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Thirty-four patients envenomed by Bothrops jararaca in Brazil were studied. Of these, 20 (59%) had incoagulable blood associated with local and/or systemic bleeding and 10 of the 20 were thrombocytopenic. Among 14 patients with coagulable blood, 6 (43%) had bleeding symptoms and 3 (21%) were thrombocytopenic. High levels of von Willebrand factor (vWF), plasminogen activator inhibitor type 1 (PAI-1) and tissue type plasminogen activator (t-PA) antigens were also recorded in some patients with systemic bleeding with or without incoagulable blood. These substances may have been released from endothelial cells. Admission serum venom antigen levels were similar in both groups. The study indicated that systemic haemorrhage may occur in patients with coagulable blood and thrombocytopenia and that coagulopathy is not therefore the primary cause of haemorrhage.
A young woman was bitten on the shoulder by a female Steatoda nobilis spider, in Worthing on the south coast of England. She noticed intense radiating pain, local sweating (indicating parasympathetic stimulation) and feverishness. This immigrant species from the Canary Islands has established itself along the south coast of England in recent years. Like the related Mediterranean species S. paykulliana, S. nobilis may be of medical importance and deserves further study.
The pharmacokinetics and effectiveness of three dosage regimens of quinine were studied in a group of 59 children with severe malaria. The children were randomized to receive high-dose intravenous or intramuscular quinine (20 mg salt/kg loading, then 10 mg salt/kg every 12 hr), or low-dose intravenous quinine (10 mg salt/kg loading, then 5 mg salt/kg every 12 hr). In the group receiving the high-dose intravenous regimen, mean high and low quinine concentrations were consistently greater than 10 and 6.5 mg/l, respectively. Peak concentrations as well as the time required to achieve them were similar in the intramuscular and high-dose intravenous groups. The low-dose intravenous quinine regimen resulted in mean peak concentrations greater than 6 mg/l and mean low concentrations greater than 3.5 mg/l. All blood concentrations exceeded the 99% in vitro inhibitory concentration (EC99) of 0.89 mg/l or less of quinine for 60 isolates of Plasmodium falciparum, which were taken from children with malaria during the same period. Judged by a number of clinical criteria, the response was better in patients receiving the high-dose than the low-dose intravenous regimen. The time taken to clear parasites with both the high-dose intravenous and intramuscular regimens were significantly shorter than those obtained in the low-dose group. We have also shown for the first time that the rate of parasite clearance can be directly related to the area under the quinine concentration versus time curve. This applied to all three quinine regimens (r = 0.4252, P less than 0.02; n less than or equal to 35). Five patients, two on the low-dose regimen, two on the intramuscular regimen, and one on the high-dose regimen, developed hypoglycemia after admission, but in these cases, insulin concentrations were correspondingly low. No significant quinine toxicity was observed in any of the cases. The high-dose intravenous quinine regimen described here may be optimal for treatment of severe falciparum malaria in areas of chloroquine resistance in Africa. Our data provide no justification for reducing the dose of quinine in the treatment of severe malaria in Africa. The intramuscular regimen could provide a satisfactory alternative in areas where intravenous administration might be delayed or is impossible.
Three patients bitten by the world's largest species of venomous snake, the king cobra (Ophiophagus hannah), were observed in Myanmar (Burma). All three were involved in the famous snake dance in Yangon (Rangoon) Zoological Gardens. One patient showed no signs of envenoming despite a sustained bite, another developed only signs of local envenoming, but in a third there was severe neurotoxic envenoming requiring mechanical ventilation for 64 1/2 hours, episodes of hypotension and massive swelling of the bitten limb. This patient showed some signs of recovery before delayed treatment with specific antivenom. It is possible that all three patients had some immunity to king cobra venom resulting from traditional 'immunization' achieved by scratching venom into the skin. The literature on king cobra bites is reviewed and recommendations given for antivenom and ancillary treatments.
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The pharmacokinetics of 3 monospecific antivenoms were compared in patients envenomed by the Malayan pit viper, Calloselasma rhodostoma. There was a biphasic decline in serum concentrations following intravenous administration. The initial rapid decline was attributable to the formation of venom-antivenom complexes, as the fall in antivenom during this phase was positively correlated with the initial venom concentration (P = 0.045). The total apparent volume of distribution for each antivenom was 1.5-3 times larger than that of the central compartment, which suggests some tissue distribution in addition to complex formation. This was marked for antivenom from the Government Pharmaceutical Organization of Thailand which contained mostly F(ab)2 fragments. The terminal elimination half time was shorter for Twyford antivenom of caprine origin. Systemic clearance was lower for Thai Red Cross antivenom. In 8 of the 26 patients who experienced recurrence of non-clotting blood after initial response to antivenom, serial measurements of plasma venom and antivenom concentrations revealed that recurrence of venom antigenemia and non-clotting blood bore no direct relation to the elimination half-life of the antivenom used, but non-clotting blood recurred when serum antivenom levels fell below 10-20% of the total given. There is no substitute for close monitoring of envenomed patients so that indications for further antivenom can be detected promptly.
During the last 15 years, at least 35 patients with severe falciparum malaria or babesiosis have recovered following treatment by exchange of up to 10 l of blood. In a patient treated in Manchester, a parasitaemia of 2.10 X 10(6) microliters (42 per cent) was virtually eliminated over eight hours by a 3.5 litre exchange blood transfusion. However, the equipment and amounts of compatible blood required for total exchange are rarely available in areas endemic for malaria and the risks of the procedure, including transfusion-related infections, are high. Partial exchange transfusion with one to two litres of blood carried out over two to seven hours, reduced Plasmodium falciparum parasitaemias of 0.33-1.48 X 10(6)/microliters (13-38 per cent) to 0.11-0.81 X 10(6) (4-17 per cent) in six Thai patients who were receiving intravenous quinine. The reduction in parasitaemia ranged from 0.13-0.67 X 10(6) microliters (9-12 per cent) within six hours. During the same period, parasitaemia in 13 patients with cerebral malaria treated with chemotherapy alone showed little reduction from initial levels of 0.20-1.74 X 10(6)/microliters (11-42 per cent). One of the patients who were treated with exchange transfusion died with intractable hypotension before the procedure could be completed and two others developed oliguric renal failure which was controlled by peritoneal dialysis. Partial exchange transfusion is a promising and practical alternative to total exchange where facilities are limited. It deserves further assessment in the rural tropics.
Three monoclonal antibodies (WPN1, WPN2 and WPN3) raised against a partially purified fraction of Russell's viper venom (RVV) were characterized. All three monoclonal antibodies reacted with crude RVV when tested by ELISA, but only two (WPN1, WPN2) neutralized its hyaluronidase activity. WPN1 was the more potent and was effective at an antigen: antibody ratio of 1:3. Furthermore, WPN1 was shown to recognize only the 14,000 MW component of crude RVV. This has been identified in a previous study to be hyaluronidase. This antibody was also found to recognize some components of Calloselasma rhodostoma venom which also possesses potent hyaluronidase activity. The potential therapeutic role of antibodies that neutralize the hyaluronidase component of snake venoms should be investigated further.