Literature DB >> 15777703

Comparison of Plasmodium falciparum growth in sickle cells in low oxygen environment and candle-jar.

Augustine U Orjih1.   

Abstract

The first successful in vitro cultivation of Plasmodium falciparum in sickle cells in a gas mixture containing 3% oxygen, 4% carbon dioxide and 93% nitrogen has been reported recently, contradicting earlier claims that the parasite does not multiply continuously in sickle cell trait (HbAS) and sickle cell anemia (HbSS) erythrocytes at low oxygen tension. The present study extends that report by growing three P. falciparum strains in erythrocytes from four different sickle cell trait and four sickle cell anemia donors. Because P. falciparum is known to grow normally in sickle cells when incubated in a candle-jar estimated to contain 15-18% oxygen, we have also compared the growth at 3% oxygen with that in a candle-jar. For convenience, we also refer to the 3% oxygen and the candle-jar as low and high oxygen environment, respectively. The three P. falciparum strains were first grown continuously in low oxygen environment for at least 1 month in erythrocytes from one HbAS carrier. These stock cultures were then used to infect erythrocytes from additional three HbAS carriers and four HbSS patients. Results of the experiments showed that parasite growth and hemozoin production in HbAS erythrocytes in low oxygen environment were comparable to those obtained in the candle-jar. There was growth retardation in HbSS erythrocytes in low oxygen environment, but some of the parasites survived and eventually produced high parasitemia levels. Continuous cultivation of different P. falciparum strains in HbAS erythrocytes is necessary for investigation of possible molecular differences between malaria parasites in sickle cells and those in HbAA erythrocytes.

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Year:  2005        PMID: 15777703     DOI: 10.1016/j.actatropica.2005.02.001

Source DB:  PubMed          Journal:  Acta Trop        ISSN: 0001-706X            Impact factor:   3.112


  3 in total

1.  Resistance to Plasmodium falciparum in sickle cell trait erythrocytes is driven by oxygen-dependent growth inhibition.

Authors:  Natasha M Archer; Nicole Petersen; Martha A Clark; Caroline O Buckee; Lauren M Childs; Manoj T Duraisingh
Journal:  Proc Natl Acad Sci U S A       Date:  2018-06-26       Impact factor: 11.205

Review 2.  Sickle cell disease in Africa: burden and research priorities.

Authors:  J Makani; T N Williams; K Marsh
Journal:  Ann Trop Med Parasitol       Date:  2007-01

3.  Hemozoin accumulation in Garnham bodies of Plasmodium falciparum gametocytes.

Authors:  Augustine U Orjih
Journal:  Parasitol Res       Date:  2012-08-28       Impact factor: 2.289

  3 in total

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