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1. Application of optical tweezer technology reveals that PfEBA and PfRH ligands, not PfMSP1, play a central role in Plasmodium falciparum merozoite-erythrocyte attachment.

2. Disruption of Plasmodium falciparum kinetochore proteins destabilises the nexus between the centrosome equivalent and the mitotic apparatus.

3. Differential effects of translation inhibitors on Plasmodium berghei liver stage parasites.

4. Prodomain-driven enzyme dimerization: a pH-dependent autoinhibition mechanism that controls Plasmodium Sub1 activity before merozoite egress.

5. A single-pass type I membrane protein, mannose-specific L-type lectin, potentially involved in the adhesion and invasion of Cryptosporidium parvum.

6. Progeny counter mechanism in malaria parasites is linked to extracellular resources.

7. A Plasmodium membrane receptor platform integrates cues for egress and invasion in blood forms and activation of transmission stages.

8. CDC50 Orthologues in Plasmodium falciparum Have Distinct Roles in Merozoite Egress and Trophozoite Maturation.

9. Interactions between Babesia microti merozoites and rat kidney cells in a short-term in vitro culture and animal model.

10. Gliding motility of Plasmodium merozoites.

11. Isolation of viable Babesia bovis merozoites to study parasite invasion.

12. Neutrophils dominate in opsonic phagocytosis of P. falciparum blood-stage merozoites and protect against febrile malaria.

13. Plasmodium falciparum Guanylyl Cyclase-Alpha and the Activity of Its Appended P4-ATPase Domain Are Essential for cGMP Synthesis and Blood-Stage Egress.

14. Assessing the functional impact of PfRh5 genetic diversity on ex vivo erythrocyte invasion inhibition.

15. Plug for the parasitophorous duct: a solution of two conundra.

16. Phosphorylation of Rhoptry Protein RhopH3 Is Critical for Host Cell Invasion by the Malaria Parasite.

17. Phosphorylation-Dependent Assembly of a 14-3-3 Mediated Signaling Complex during Red Blood Cell Invasion by Plasmodium falciparum Merozoites.

18. The Effect of Increased Temperatures on Viability, Morphology, Infectivity, and Development of Eimeria tenella.

19. Nucleofection and In Vivo Propagation of Chicken Eimeria Parasites.

20. Testing possible causes of gametocyte reduction in temporally out-of-synch malaria infections.

21. Apicomplexan F-actin is required for efficient nuclear entry during host cell invasion.

22. The contribution of host cell-directed vs. parasite-directed immunity to the disease and dynamics of malaria infections.

23. Human Antibodies that Slow Erythrocyte Invasion Potentiate Malaria-Neutralizing Antibodies.

24. Antibodies against a Plasmodium falciparum RON12 inhibit merozoite invasion into erythrocytes.

25. Cutting Edge: FHR-1 Binding Impairs Factor H-Mediated Complement Evasion by the Malaria Parasite Plasmodium falciparum .

26. Concomitant in vitro development of Eimeria zuernii- and Eimeria bovis-macromeronts in primary host endothelial cells.

27. Comparisons of the topographic characteristics and electrical charge distributions among Babesia-infected erythrocytes and extraerythrocytic merozoites using AFM.

28. Re-evaluation of the life cycle of Eimeria maxima Tyzzer, 1929 in chickens (Gallus domesticus).

29. Calcium-dependent phosphorylation of Plasmodium falciparum serine repeat antigen 5 triggers merozoite egress.

30. Plasmodium falciparum dipeptidyl aminopeptidase 3 activity is important for efficient erythrocyte invasion by the malaria parasite.

31. An automated haematology analyzer XN-30 distinguishes developmental stages of falciparum malaria parasite cultured in vitro.

32. Insights into the early liver stage biology of Plasmodium .

33. Inhibition of merozoite invasion and transient de-sequestration by sevuparin in humans with Plasmodium falciparum malaria.

34. Analytical modeling of the mechanics of early invasion of a merozoite into a human erythrocyte.

35. Human Cyclophilin B forms part of a multi-protein complex during erythrocyte invasion by Plasmodium falciparum.

36. Molecular Signaling Involved in Entry and Exit of Malaria Parasites from Host Erythrocytes.

37. Exploitation of a newly-identified entry pathway into the malaria parasite-infected erythrocyte to inhibit parasite egress.

38. Strict tropism for CD71 + /CD234 + human reticulocytes limits the zoonotic potential of Plasmodium cynomolgi .

39. The Molecular Basis of Erythrocyte Invasion by Malaria Parasites.

40. Recent buzz in malaria research.

41. Generation of transgenic rodent malaria parasites by transfection of cell culture-derived merozoites.

42. The Plasmodium falciparum pseudoprotease SERA5 regulates the kinetics and efficiency of malaria parasite egress from host erythrocytes.

43. Molecular mechanisms that mediate invasion and egress of malaria parasites from red blood cells.

44. Sarcocystis neurona manipulation using culture-derived merozoites for bradyzoite and sporocyst production.

45. Progress in imaging methods: insights gained into Plasmodium biology.

46. A novel ENU-induced ankyrin-1 mutation impairs parasite invasion and increases erythrocyte clearance during malaria infection in mice.

47. Plasmodium Merozoite TRAP Family Protein Is Essential for Vacuole Membrane Disruption and Gamete Egress from Erythrocytes.

48. Identification of Plasmodium falciparum reticulocyte binding protein homologue 5-interacting protein, PfRipr, as a highly conserved blood-stage malaria vaccine candidate.

49. New Assays to Characterise Growth-Related Phenotypes of Plasmodium falciparum Reveal Variation in Density-Dependent Growth Inhibition between Parasite Lines.

50. RBC invasion and invasion-inhibition assays using free merozoites isolated after cold treatment of Babesia bovis in vitro culture.

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