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1. Poxviruses package viral redox proteins in lateral bodies and modulate the host oxidative response

2. Vaccinia Virus Arrests and Shifts the Cell Cycle

3. Acrylamide inhibits vaccinia virus through vimentin‐independent <scp>anti‐viral</scp> granule formation

4. Vaccinia virus subverts xenophagy through phosphorylation and nuclear targeting of p62

5. Influenza- and MCMV-induced memory CD8 T cells control respiratory vaccinia virus infection despite residence in distinct anatomical niches

6. Modulation of Early Host Innate Immune Response by an Avipox Vaccine Virus’ Lateral Body Protein

7. Modulation of early host innate immune response by a Fowlpox virus (FWPV) lateral body protein

8. Acrylamide Inhibits Vaccinia Virus Through Vimentin-independent Anti-Viral Granule Formation

9. The zebrafish as a novel model for the in vivo study of Toxoplasma gondii replication and interaction with macrophages

10. Proteotype profiling unmasks a viral signalling network essential for poxvirus assembly and transcriptional competence

11. Inertial picobalance reveals fast mass fluctuations in mammalian cells

12. Image-Based Quantitation of Host Cell–Toxoplasma gondii Interplay Using HRMAn: A Host Response to Microbe Analysis Pipeline

13. In vivo control of Toxoplasma gondii by zebrafish macrophages

14. SnapShot: Enveloped Virus Entry

15. High-Content Analyses of Vaccinia Plaque Formation

16. Vaccinia virus hijacks EGFR signalling to enhance virus spread through rapid and directed infected cell motility

17. Quantitative PCR-Based Assessment of Vaccinia Virus RNA and DNA in Infected Cells

18. An Artificial Intelligence Workflow for Defining Host-Pathogen Interactions

19. Phosphatidylserine is a global immunosuppressive signal in efferocytosis, infectious disease, and cancer

20. Cloak and Dagger: Alternative Immune Evasion and Modulation Strategies of Poxviruses

21. Viral apoptotic mimicry

22. Vaccinia Virus Infection Requires Maturation of Macropinosomes

23. Biogenesis of the Vaccinia Virus Membrane: Genetic and Ultrastructural Analysis of the Contributions of the A14 and A17 Proteins

24. Proteotype profiling unmasks a viral signaling network essential for poxvirus assembly and transcriptional competence

25. Vaccinia extracellular virions enter cells by macropinocytosis and acid-activated membrane rupture

26. Apoptotic mimicry: phosphatidylserine-mediated macropinocytosis of vaccinia virus

27. Vaccinia Virus Uses Macropinocytosis and Apoptotic Mimicry to Enter Host Cells

28. Infectio: a Generic Framework for Computational Simulation of Virus Transmission between Cells

29. VEGF induces signalling and angiogenesis by directing VEGFR2 internalisation through macropinocytosis

30. Genetic and Cell Biological Characterization of the Vaccinia Virus A30 and G7 Phosphoproteins

31. La machinerie cellulaire de dégradation des protéines de l’hôte participe à la libération du génome des poxvirus

32. Viral Apoptotic Mimicry Party: P.S. Bring Your Own Gas6

33. Simultaneous analysis of large-scale RNAi screens for pathogen entry

34. Next generation approaches to study virus entry and infection

35. Imaging InlC Secretion to Investigate Cellular Infection by the Bacterial Pathogen Listeria monocytogenes

36. siRNA screen of early poxvirus genes identifies the AAA+ ATPase D5 as the virus genome-uncoating factor

37. Tracking viral genomes in host cells at single-molecule resolution

38. Virus entry by endocytosis

39. Vaccinia virus entry is followed by core activation and proteasome-mediated release of the immunomodulatory effector VH1 from lateral bodies

40. Virus interactions with endocytic pathways in macrophages and dendritic cells

41. VEGF induces signalling and angiogenesis by directing VEGFR2 internalisation through macropinocytosis

42. A facile protocol for the immobilisation of vesicles, virus particles, bacteria, and yeast cells

43. RNAi screening reveals proteasome- and Cullin3-dependent stages in vaccinia virus infection

44. Cooperative vaccinia infection demonstrated at the single-cell level using FluidFM

45. Direct identification of ligand-receptor interactions on living cells and tissues

46. Poxvirus host cell entry

47. Vaccinia virus strains use distinct forms of macropinocytosis for host-cell entry

49. Virus entry by macropinocytosis

50. Subversion of CtBP1-controlled macropinocytosis by human adenovirus serotype 3

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