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3. Analysis tools to quantify dissemination of pathology in zebrafish larvae

4. Shigella sonnei

5. Exploitation of host chemokine signalling by pathogenic mycobacteria

6. Robotic injection of zebrafish embryos for high-throughput screening in disease models

7. ILKAP Promotes the Metastasis of Hepatocellular Carcinoma Cells by Inhibiting β-Catenin Degradation and Enhancing the WNT Signaling Pathway.

8. RUNDC1 negatively mediates the fusion of autophagosomes with lysosomes via regulating SNARE complex assembly.

9. Transcriptional profiling of zebrafish identifies host factors controlling susceptibility to Shigella flexneri.

10. Shigella Serotypes Associated With Carriage in Humans Establish Persistent Infection in Zebrafish.

11. RUNDC1 inhibits autolysosome formation and survival of zebrafish via clasping ATG14-STX17-SNAP29 complex.

12. Acquisition of a large virulence plasmid (pINV) promoted temperature-dependent virulence and global dispersal of O96:H19 enteroinvasive Escherichia coli .

13. Septins promote caspase activity and coordinate mitochondrial apoptosis.

14. Zebrafish null mutants of Sept6 and Sept15 are viable but more susceptible to Shigella infection.

15. P1 Bacteriophage-Enabled Delivery of CRISPR-Cas9 Antimicrobial Activity Against Shigella flexneri .

16. Editorial: Zebrafish Models for Human Disease Studies.

17. Editorial: Nucleic Acid-Associated Inflammation.

18. Disruption of Cxcr3 chemotactic signaling alters lysosomal function and renders macrophages more microbicidal.

19. In vivo biomolecular imaging of zebrafish embryos using confocal Raman spectroscopy.

20. Shigella sonnei.

21. Deficiency in the autophagy modulator Dram1 exacerbates pyroptotic cell death of Mycobacteria-infected macrophages.

22. Chemokine Receptors and Phagocyte Biology in Zebrafish.

23. Analysis tools to quantify dissemination of pathology in zebrafish larvae.

24. Frontline Science: Antagonism between regular and atypical Cxcr3 receptors regulates macrophage migration during infection and injury in zebrafish.

25. Shigella sonnei O-Antigen Inhibits Internalization, Vacuole Escape, and Inflammasome Activation.

26. Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence.

29. Macrophages target Salmonella by Lc3-associated phagocytosis in a systemic infection model.

30. RNAseq Profiling of Leukocyte Populations in Zebrafish Larvae Reveals a cxcl11 Chemokine Gene as a Marker of Macrophage Polarization During Mycobacterial Infection.

31. Shigella -Induced Emergency Granulopoiesis Protects Zebrafish Larvae from Secondary Infection.

32. Zebrafish Infection: From Pathogenesis to Cell Biology.

33. Septins restrict inflammation and protect zebrafish larvae from Shigella infection.

34. Functional analysis reveals no transcriptional role for the glucocorticoid receptor β-isoform in zebrafish.

35. The chemokine receptor CXCR4 promotes granuloma formation by sustaining a mycobacteria-induced angiogenesis programme.

36. The inflammatory chemokine Cxcl18b exerts neutrophil-specific chemotaxis via the promiscuous chemokine receptor Cxcr2 in zebrafish.

37. Modeling Infectious Diseases in the Context of a Developing Immune System.

38. Septins and Bacterial Infection.

39. The CXCR3-CXCL11 signaling axis mediates macrophage recruitment and dissemination of mycobacterial infection.

40. Macrophage-pathogen interactions in infectious diseases: new therapeutic insights from the zebrafish host model.

41. Robotic injection of zebrafish embryos for high-throughput screening in disease models.

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