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LITERATURE CITED

  • 1
    Cowman AF,Crabb BS. Invasion of red blood cells by malaria parasites. Cell 2006; 124: 755766.
  • 2
    Maier AG,Duraisingh MT,Reeder JC,Patel SS,Kazura JW,Zimmerman PA,Cowman AF. Plasmodium falciparum erythrocyte invasion through glycophorin C and selection for Gerbich negativity in human populations. Nat Med 2003; 9: 8792.
  • 3
    Gomez-Escobar N,Amambua-Ngwa A,Walther M,Okebe J,Ebonyi A,Conway DJ. Erythrocyte invasion and merozoite ligand gene expression in severe and mild Plasmodium falciparum malaria. J Infect Dis 2010; 201: 444452.
  • 4
    Bei AK,Membi CD,Rayner JC,Mubi M,Ngasala B,Sultan AA,Premji Z,Duraisingh MT. Variant merozoite protein expression is associated with erythrocyte invasion phenotypes in Plasmodium falciparum isolates from Tanzania. Mol Biochem Parasitol 2007; 153: 6671.
  • 5
    Jennings CV,Ahouidi AD,Zilversmit M,Bei AK,Rayner J,Sarr O,Ndir O,Wirth DF,Mboup S,Duraisingh MT. Molecular analysis of erythrocyte invasion in Plasmodium falciparum isolates from Senegal. Infect Immun 2007; 75: 35313538.
  • 6
    Baum J,Pinder M,Conway DJ. Erythrocyte invasion phenotypes of Plasmodium falciparum in The Gambia. Infect Immun 2003; 71: 18561863.
  • 7
    Lobo CA,de Frazao K,Rodriguez M,Reid M,Zalis M,Lustigman S. Invasion profiles of Brazilian field isolates of Plasmodium falciparum: Phenotypic and genotypic analyses. Infect Immun 2004; 72: 58865891.
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    Lobo CA,Rodriguez M,Struchiner CJ,Zalis MG,Lustigman S. Associations between defined polymorphic variants in the PfRH ligand family and the invasion pathways used by P. falciparum field isolates from Brazil. Mol Biochem Parasitol 2006; 149: 246251.
  • 9
    Okoyeh JN,Pillai CR,Chitnis CE. Plasmodium falciparum field isolates commonly use erythrocyte invasion pathways that are independent of sialic acid residues of glycophorin A. Infect Immun 1999; 67: 57845791.
  • 10
    Dharia NV,Sidhu AB,Cassera MB,Westenberger SJ,Bopp SE,Eastman RT,Plouffe D,Batalov S,Park DJ,Volkman SK, Wirth DF, Zhou Y, Fidock DA, Winzeler EA. Use of high-density tiling microarrays to identify mutations globally and elucidate mechanisms of drug resistance in Plasmodium falciparum. Genome Biol 2009; 10: R21.
  • 11
    Mu J,Myers RA,Jiang H,Liu S,Ricklefs S,Waisberg M,Chotivanich K,Wilairatana P,Krudsood S,White NJ, Udomsangpetch R, Cui L, Ho M, Ou F, Li H, Song J, Li G, Wang X, Seila S, Sokunthea S, Socheat D, Sturdevant DE, Porcella SF, Fairhurst RM, Wellems TE, Awadalla P, Su XZ. Plasmodium falciparum genome-wide scans for positive selection, recombination hot spots and resistance to antimalarial drugs. Nat Genet 2010; 42: 268271.
  • 12
    Grimberg BT,Erickson JJ,Sramkoski RM,Jacobberger JW,Zimmerman PA. Monitoring Plasmodium falciparum growth and development by UV flow cytometry using an optimized Hoechst-thiazole orange staining strategy. Cytometry Part A 2008; 73A: 546554.
  • 13
    Izumiyama S,Omura M,Takasaki T,Ohmae H,Asahi H. Plasmodium falciparum: Development and validation of a measure of intraerythrocytic growth using SYBR Green I in a flow cytometer. Exp Parasitol 2009; 121: 144150.
  • 14
    Chandramohanadas R,Davis PH,Beiting DP,Harbut MB,Darling C,Velmourougane G,Lee MY,Greer PA,Roos DS,Greenbaum DC. Apicomplexan parasites co-opt host calpains to facilitate their escape from infected cells. Science 2009; 324: 794797.
  • 15
    Reed MB,Caruana SR,Batchelor AH,Thompson JK,Crabb BS,Cowman AF. Targeted disruption of an erythrocyte binding antigen in Plasmodium falciparum is associated with a switch toward a sialic acid-independent pathway of invasion. Proc Natl Acad Sci USA 2000; 97: 75097514.
  • 16
    Duraisingh MT,Triglia T,Ralph SA,Rayner JC,Barnwell JW,McFadden GI,Cowman AF. Phenotypic variation of Plasmodium falciparum merozoite proteins directs receptor targeting for invasion of human erythrocytes. EMBO J 2003; 22: 10471057.
  • 17
    Bei AK,Desimone TM,Badiane AS,Ahouidi AD,Dieye T,Ndiaye D,Sarr O,Ndir O,Mboup S,Duraisingh MT. A flow cytometry-based assay for measuring invasion of red blood cells by Plasmodium falciparum. Am J Hematol 2010; 85: 234237.
  • 18
    Parish CR. Fluorescent dyes for lymphocyte migration and proliferation studies. Immunol Cell Biol 1999; 77: 499508.
  • 19
    Binks RH,Conway DJ. The major allelic dimorphisms in four Plasmodium falciparum merozoite proteins are not associated with alternative pathways of erythrocyte invasion. Mol Biochem Parasitol 1999; 103: 123127.
  • 20
    Fu Y,Tilley L,Kenny S,Klonis N. Dual labeling with a far red probe permits analysis of growth and oxidative stress in P. falciparum-infected erythrocytes. Cytometry Part A 2010; 77A: 253263.
  • 21
    Bennett TN,Paguio M,Gligorijevic B,Seudieu C,Kosar AD,Davidson E,Roepe PD. Novel, rapid, and inexpensive cell-based quantification of antimalarial drug efficacy. Antimicrob Agents Chemother 2004; 48: 18071810.
  • 22
    Smilkstein M,Sriwilaijaroen N,Kelly JX,Wilairat P,Riscoe M. Simple and inexpensive fluorescence-based technique for high-throughput antimalarial drug screening. Antimicrob Agents Chemother 2004; 48: 18031806.
  • 23
    Baum J,Maier AG,Good RT,Simpson KM,Cowman AF. Invasion by P. falciparum merozoites suggests a hierarchy of molecular interactions. PLoS Pathog 2005; 1: e37.
  • 24
    Grimberg BT,Jaworska MM,Hough LB,Zimmerman PA,Phillips JG. Addressing the malaria drug resistance challenge using flow cytometry to discover new antimalarials. Bioorg Med Chem Lett 2009; 19: 54525457.
  • 25
    Kabanova S,Kleinbongard P,Volkmer J,Andree B,Kelm M,Jax TW. Gene expression analysis of human red blood cells. Int J Med Sci 2009; 6: 156159.
  • 26
    Rayner JC,Vargas-Serrato E,Huber CS,Galinski MR,Barnwell JW. A Plasmodium falciparum homologue of Plasmodium vivax reticulocyte binding protein (PvRBP1) defines a trypsin-resistant erythrocyte invasion pathway. J Exp Med 2001; 194: 15711581.