Inhibition by anti-malarial drugs of haemoglobin denaturation and iron release in acidified red blood cell lysates – a possible mechanism of their anti-malarial effect?
- 1 May 1994
- journal article
- research article
- Published by Cambridge University Press (CUP) in Parasitology
- Vol. 108 (4), 371-381
- https://doi.org/10.1017/s0031182000075910
Abstract
SUMMARY: Intraerythrocytic malaria parasites ingest the cytosol of their host cell and digest it inside their acid food vacuoles. Acidified (pH 4–5·5, 37 °C) human red blood cell lysates were used to simulate this process, measuring the denaturation of haemoglobin (Hb) and the release of iron, in the absence or presence of exogenous protease. Spontaneous Hb denaturation and appearance of non-heme iron were observed upon lysate acidification, their rates decreasing with increasing pH, and increasing in the presence of protease. Both processes were inhibited by the quinoline-containing anti-malarial drugs (QCDs) chloroquine, quinine, mefloquine and amodiaquine at concentrations well below those expected in the acidic food vacuole of the parasite. Spectrophotometric analysis indicated that chloroquine complexes with heme in acid-denatured haemoglobin. Other weak bases as well as verapamil and diltiazem, known to reverse the resistance of malarial parasites to chloroquine, were without efifect indicating that the action of QCDs is specific. Based on our previous results and the present report, we suggest that iron release in acidified lysates is mediated through the formation of ferryl (Fe(IV)) radicals. QCDs possibly complex with this radical, as they do with heme, and prevent its contact with an adjacent heme molecule which is required for ring opening and iron release. These results may suggest that one of the anti-malarial effects of QCDs is to deprive the parasite of an adequate iron supply. Addition of iron to cultures ofPlasmodium falciparumwas expected to circumvent the deprivation of iron and reduce the anti-malarial eflfect of QCDs. However, adding iron as penetrating fructose or nitrilotriacetate complexes did not alter the parasite's susceptibility to chloroquine. Ascorbate markedly increased the release of iron in acidified lysates, and this effect was not reduced by chloroquine. Ascorbate was found to decrease parasite susceptibility to chloroquine, suggesting that iron deprivation may be an important factor in the anti-malarial action of QCDs.Keywords
This publication has 46 references indexed in Scilit:
- The combined effect of iron chelators and classical antimalarials on the in-vitro growth of Plasmodium falciparumJournal of Antimicrobial Chemotherapy, 1992
- Localization and characterization of hemoglobin-degrading aspartic proteinases from the malarial parasite Plasmodium falciparumBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1992
- Studies on the antimalarial mode of action of quinoline-containing drugs: Time-dependence and irreversibility of drug action, and interactions with compounds that alter the function of the parasite's food vacuoleLife Sciences, 1991
- Antimalarial drugs: Is the lysosomotropic hypothesis still valid?Parasitology Today, 1990
- Evaluation of experimental combined toxicity by use of dose–frequency curves: comparison with theoretical additivity as well as independenceCanadian Journal of Physiology and Pharmacology, 1990
- Gentamicin and amikacin repress the growth of Plasmodium falciparum in culture, probably by inhibiting a parasite acid phospolipaseLife Sciences, 1987
- A reappraisal of the effects of iron and desferrioxamine on the growth of Plasmodium falciparum‘in vitro’: the unimportance of serum ironBritish Journal of Haematology, 1986
- Effects of Chloroquine on the Feeding Mechanism of the Intraerythrocytic Human Malarial Parasite Plasmodium falciparum1The Journal of Protozoology, 1984
- A role for chloride in the autoxidation of hemoglobin under conditions similar to those in erythrocytesFEBS Letters, 1974
- The mechanisms of hemoglobin autoxidation evidence for proton-assisted nucleophilic displacement of superoxide by anionsBiochemical and Biophysical Research Communications, 1974