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Journal Abstract Search


153 related items for PubMed ID: 9169761

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  • 2. Functional characterization of Plasmodium berghei PSOP25 during ookinete development and as a malaria transmission-blocking vaccine candidate.
    Zheng W, Liu F, He Y, Liu Q, Humphreys GB, Tsuboi T, Fan Q, Luo E, Cao Y, Cui L.
    Parasit Vectors; 2017 Jan 05; 10(1):8. PubMed ID: 28057055
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  • 3. An antibody against an Anopheles albimanus midgut myosin reduces Plasmodium berghei oocyst development.
    Lecona-Valera AN, Tao D, Rodríguez MH, López T, Dinglasan RR, Rodríguez MC.
    Parasit Vectors; 2016 May 10; 9(1):274. PubMed ID: 27165123
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  • 4. [Studies on the antigens of invasive stages of Plasmodium yoelii and Plasmodium berghei].
    Jin LQ, Luo JM, Fu YC, Xu SE, Guo Y, Xie LC, Tsuboi T, Torii M.
    Zhongguo Ji Sheng Chong Xue Yu Ji Sheng Chong Bing Za Zhi; 2003 May 10; 21(5):272-4. PubMed ID: 15108514
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  • 7. Identification of novel Plasmodium gallinaceum zygote- and ookinete-expressed proteins as targets for blocking malaria transmission.
    Langer RC, Li F, Vinetz JM.
    Infect Immun; 2002 Jan 10; 70(1):102-6. PubMed ID: 11748169
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  • 8. The effect of transmission-blocking antibody ingested in primary and secondary bloodfeeds, upon the development of Plasmodium berghei in the mosquito vector.
    Ranawaka G, Alejo-Blanco R, Sinden RE.
    Parasitology; 1993 Sep 10; 107 ( Pt 3)():225-31. PubMed ID: 8233585
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  • 9. Expression of the Plasmodium berghei ookinete protein Pbs21 in a baculovirus-insect cell system produces an efficient transmission blocking immunogen.
    Margos G, Kurtenbach K, Posnett E, Barker GC, Matsuoka H, Paton MG, Sinden RE.
    Parasite Immunol; 1995 Apr 10; 17(4):167-76. PubMed ID: 7624157
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  • 10. Characterization of the modes of action of anti-Pbs21 malaria transmission-blocking immunity: ookinete to oocyst differentiation in vivo.
    Ranawaka GR, Fleck SL, Blanco AR, Sinden RE.
    Parasitology; 1994 Nov 10; 109 ( Pt 4)():403-11. PubMed ID: 7800408
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