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1. A synthetic peptide mimic kills Candida albicans and synergistically prevents infection

2. Shining a light on Candida-induced epithelial damage with a luciferase reporter

3. Bet-hedging antimicrobial strategies in macrophage phagosome acidification drive the dynamics of Cryptococcus neoformans intracellular escape mechanisms.

4. Uncharted territories in the discovery of antifungal and antivirulence natural products from bacteria

5. Inositol Metabolism Regulates Capsule Structure and Virulence in the Human Pathogen Cryptococcus neoformans

6. The capsule of Cryptococcus neoformans

7. Variation in Cell Surface Hydrophobicity among Cryptococcus neoformans Strains Influences Interactions with Amoebas

8. Study of Microbial Extracellular Vesicles: Separation by Density Gradients, Protection Assays and Labelling for Live Tracking

9. The Buoyancy of Cryptococcus neoformans Is Affected by Capsule Size

10. Ecological Niche-Inspired Genome Mining Leads to the Discovery of Crop-Protecting Nonribosomal Lipopeptides Featuring a Transient Amino Acid Building Block

11. P003 Synthetic antifungal peptide mimic kills Candida albicans by targeting protein glycosylation and synergistically prevents infection

12. S9.3d Antivirulence drug discovery to disarm Candida albicans with metabolites from myxobacteria

13. Uncharted territories in the discovery of antifungal and antivirulence natural products from bacteria

14. Bet-hedging antimicrobial strategies in macrophage phagosome acidification drive the dynamics ofCryptococcus neoformansintracellular escape mechanisms

15. Inositol Metabolism Regulates Capsule Structure and Virulence in the Human Pathogen Cryptococcus neoformans

16. The capsule of Cryptococcus neoformans

17. Variation in Cell Surface Hydrophobicity among <named-content content-type='genus-species'>Cryptococcus neoformans</named-content> Strains Influences Interactions with Amoebas

18. Study of Microbial Extracellular Vesicles:Separation by Density Gradients, Protection Assays and Labelling for Live Tracking

19. Variation in cell surface hydrophobicity among Cryptococcus neoformans strains influences interactions with amoeba

20. The structural unit of melanin in the cell wall of the fungal pathogen Cryptococcus neoformans

21. Listeria monocytogenes virulence factors, including listeriolysin O, are secreted in biologically active extracellular vesicles

22. The Buoyancy of

23. The buoyant cell density ofCryptococcus neoformansis affected by capsule size

24. The capsule of

25. Listeria monocytogenes virulence factors are secreted in biologically active Extracellular Vesicles

26. Microbial melanins for radioprotection and bioremediation

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