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M Akkawi

Publications and source records attributed to M Akkawi.

3 recordsLinked to original sources

Investigations of B- and beta-hematin.

The preparation from ferriprotoporphyrin IX (FP) in aqueous acid medium of the related pigments beta- and B-hematin [see G. Blauer and M. Akkawi, Biochem. Mol. Biol. Int. 35, 231 (1995)] is presented under different conditions. Both pigments are characterized by infrared spectra which differ in the range of 1600-1700 cm-1 in their strong bands with absorption peaks measured at 1648 +/- 2 cm-1 for B-hematin and at 1663 +/- 1 cm-1 for beta-hematin. The pH dependence of B-hematin formation at 37 degrees C and at different concentrations of acetic acid and FP exhibits a maximum yield near pH 4. The formation of beta-hematin at 70 degrees C shows high yield in 6 M acetic acid or in the presence of 0.028 M trichloroacetate at pH 4.6. The dependence of the yield of the pigments on the time and temperature of incubation, concentration of FP, and the presence of different electrolytes was investigated. Both B- and beta-hematin are either insoluble or very slightly soluble in different solvents at room temperature, and appear to dissociate into regular FP in strongly alkaline aqueous medium. In the presence of different quinoline-based drugs, the formation of both B- and beta-hematin at pH 4-5 is inhibited. Under certain conditions, the effect of added carboxylic acids on pigment formation is suggested to be due, at least in part, to the prevention of initial hydrogen bonding among FP carboxyl groups. For both B- and beta-hematin, branched and cyclic macromolecular structures are proposed involving linkages between an FP iron and a side-chain carboxylate group of another FP, in addition to hydrogen bonds between FP carboxyl groups. B- and beta-hematin are assumed to differ in molecular weight and the extent of bond formation. Possible mechanisms for beta-hematin production from B-hematin and certain relations between the synthetic pigments and the malaria pigment are suggested.

Amodiaquine

B-hematin.

Very rapid production in vitro of a particular type of hematin (B-hematin) with high yield at physiological pH and temperature is presently reported, using a simple chemical system including an organic acid in the absence of any enzyme. B-hematin is characterized by infrared spectra and solubility properties. The antimalarial drug chloroquine practically prevents formation of this hematin under the conditions used. It has recently been suggested that the purified malaria pigment hemozoin is identical with beta-hematin, a form of ferriprotoporphyrin IX sparingly soluble in different solvents which is prepared under non-physiological conditions. Relations between B- and beta-hematin and possible mechanisms of hemozoin formation and antimalarial drug action, are discussed.

Acetates

Further evidence for the interaction of the antimalarial drug amodiaquine with ferriprotoporphyrin IX.

Evidence for complex formation of the antimalarial drug amodiaquine (AD) with ferriprotoporphyrin IX (FP) in aqueous medium is presented, in addition to previous preliminary data. A mole ratio of one between the complex components is determined for the insoluble complex at pH 6.7-6.8. Mössbauer data obtained at pH 7-8 and at higher concentrations in the millimolar range confirm the interactions existing between the complex components. These data are considered to aid in removing previous objections to a mechanism of antimalarial action involving complexes of FP with AD and related drugs.

Amodiaquine