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PUBMED FOR HANDHELDS

Journal Abstract Search


118 related items for PubMed ID: 20868687

  • 21.
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  • 22. Development of artemether and lumefantrine co-loaded nanostructured lipid carriers: physicochemical characterization and in vivo antimalarial activity.
    Parashar D, Aditya NP, Murthy RS.
    Drug Deliv; 2016; 23(1):123-9. PubMed ID: 24786480
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  • 23.
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  • 24. The chemotherapy of rodent malaria, XXVI. The potential value of WR 122,455 (a 9-phenanthrenemethanol) against drug-resistant malaria parasites.
    Peters W, Porter M.
    Ann Trop Med Parasitol; 1976 Sep; 70(3):271-81. PubMed ID: 788658
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  • 25. Antimalarial efficacy and drug interactions of the novel semi-synthetic endoperoxide artemisone in vitro and in vivo.
    Vivas L, Rattray L, Stewart LB, Robinson BL, Fugmann B, Haynes RK, Peters W, Croft SL.
    J Antimicrob Chemother; 2007 Apr; 59(4):658-65. PubMed ID: 17337512
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  • 29. The differing impact of chloroquine and pyrimethamine/sulfadoxine upon the infectivity of malaria species to the mosquito vector.
    Hogh B, Gamage-Mendis A, Butcher GA, Thompson R, Begtrup K, Mendis C, Enosse SM, Dgedge M, Barreto J, Eling W, Sinden RE.
    Am J Trop Med Hyg; 1998 Feb; 58(2):176-82. PubMed ID: 9502601
    [Abstract] [Full Text] [Related]

  • 30. Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether-lumefantrine drug pressure on Plasmodium falciparum populations in Senegal.
    Mbaye A, Dieye B, Ndiaye YD, Bei AK, Muna A, Deme AB, Yade MS, Diongue K, Gaye A, Ndiaye IM, Ndiaye T, Sy M, Diallo MA, Badiane AS, Ndiaye M, Seck MC, Sy N, Koita O, Krogstad DJ, Nwakanma D, Ndiaye D.
    Malar J; 2016 Aug 25; 15(1):433. PubMed ID: 27562216
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  • 31.
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  • 32. Absence of kelch13 artemisinin resistance markers but strong selection for lumefantrine-tolerance molecular markers following 18 years of artemisinin-based combination therapy use in Mpumalanga Province, South Africa (2001-2018).
    Raman J, Kagoro FM, Mabuza A, Malatje G, Reid A, Frean J, Barnes KI.
    Malar J; 2019 Aug 22; 18(1):280. PubMed ID: 31438951
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  • 33.
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  • 35. The effect of lopinavir/ritonavir on the antimalarial activity of artemether or artemether/lumefantrine in a mouse model of Plasmodium berghei.
    Abiodun OO, Akinbo J, Ojurongbe O.
    J Chemother; 2015 Feb 22; 27(1):25-8. PubMed ID: 24621166
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  • 36. Experimentally Engineered Mutations in a Ubiquitin Hydrolase, UBP-1, Modulate In Vivo Susceptibility to Artemisinin and Chloroquine in Plasmodium berghei.
    Simwela NV, Hughes KR, Roberts AB, Rennie MT, Barrett MP, Waters AP.
    Antimicrob Agents Chemother; 2020 Jun 23; 64(7):. PubMed ID: 32340987
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  • 37.
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  • 38. Changes in schizogony and drug response in two lines of rodent Plasmodium, P. berghei NK 65 and P. berghei ANKA.
    Biarnais T, Landau I, Richard-Lenoble D.
    Parasite; 2002 Mar 23; 9(1):51-7. PubMed ID: 11938696
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  • 39. In vitro activities of benflumetol against 158 Senegalese isolates of Plasmodium falciparum in comparison with those of standard antimalarial drugs.
    Pradines B, Tall A, Fusai T, Spiegel A, Hienne R, Rogier C, Trape JF, Le Bras J, Parzy D.
    Antimicrob Agents Chemother; 1999 Feb 23; 43(2):418-20. PubMed ID: 9925550
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  • 40. [Development of a piperaquine-resistant line of Plasmodium berghei K 173 strain].
    Li GD.
    Yao Xue Xue Bao; 1985 Jun 23; 20(6):412-7. PubMed ID: 3913275
    [No Abstract] [Full Text] [Related]


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