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1. Chagas Disease Diagnosis with Trypanosoma cruzi -Exclusive Epitopes in GFP.

2. Cigarette smoke exposure impairs early-stage recovery from lengthening contraction-induced muscle injury in male mice.

3. Protocol for separation of fungal extracellular vesicles using ultracentrifugation from solid medium cultures.

4. Comprehensive characterization of extracellular vesicles produced by environmental (Neff) and clinical (T4) strains of Acanthamoeba castellanii .

5. Proteomics reveals that the antifungal activity of fenbendazole against Cryptococcus neoformans requires protein kinases.

6. Corrected and republished from: "Extracellular Vesicle Formation in Cryptococcus deuterogattii Impacts Fungal Virulence".

8. The ecotin-like peptidase inhibitor of Trypanosoma cruzi prevents TMPRSS2-PAR2-TLR4 crosstalk downmodulating infection and inflammation.

9. Analysis of Cryptococcus Extracellular Vesicles.

10. Organoselenium Has a Potent Fungicidal Effect on Cryptococcus neoformans and Inhibits the Virulence Factors.

11. Cryptococcus neoformans releases proteins during intracellular residence that affect the outcome of the fungal-macrophage interaction.

12. Adipocytes control food intake and weight regain via Vacuolar-type H + ATPase.

13. Extracellular Vesicle Formation in Cryptococcus deuterogattii Impacts Fungal Virulence and Requires the NOP16 Gene.

14. Screening of the Pandemic Response Box Reveals an Association between Antifungal Effects of MMV1593537 and the Cell Wall of Cryptococcus neoformans , Cryptococcus deuterogattii , and Candida auris .

15. Extracellular Vesicles Regulate Biofilm Formation and Yeast-to-Hypha Differentiation in Candida albicans.

16. Bone marrow granulocytes downregulate IL-1β and TNF production and the microbicidal activity of inflammatory macrophages.

17. Exosomes as mediators of intercellular crosstalk in metabolism.

18. Analysis of Cryptococcal Extracellular Vesicles: Experimental Approaches for Studying Their Diversity Among Multiple Isolates, Kinetics of Production, Methods of Separation, and Detection in Cultures of Titan Cells.

19. Hepatocyte-derived exosomes from early onset obese mice promote insulin sensitivity through miR-3075.

20. Cryptococcus extracellular vesicles properties and their use as vaccine platforms.

21. Population genomic analysis of Cryptococcus Brazilian isolates reveals an African type subclade distribution.

22. MiR-690, an exosomal-derived miRNA from M2-polarized macrophages, improves insulin sensitivity in obese mice.

23. Small Molecule Analysis of Extracellular Vesicles Produced by Cryptococcus gattii : Identification of a Tripeptide Controlling Cryptococcal Infection in an Invertebrate Host Model.

24. Phytotoxic Tryptoquialanines Produced In Vivo by Penicillium digitatum Are Exported in Extracellular Vesicles.

25. Biogenesis of Fungal Extracellular Vesicles: What Do We Know?

26. Protective effect of fungal extracellular vesicles against murine candidiasis.

27. Pathogenic Delivery: The Biological Roles of Cryptococcal Extracellular Vesicles.

28. Fenbendazole Controls In Vitro Growth, Virulence Potential, and Animal Infection in the Cryptococcus Model.

29. Loss of mitochondrial energetics is associated with poor recovery of muscle function but not mass following disuse atrophy.

30. Dietary sulfur amino acid restriction upregulates DICER to confer beneficial effects.

31. Adipocyte PU.1 knockout promotes insulin sensitivity in HFD-fed obese mice.

32. Polysaccharide diversity in VNI isolates of Cryptococcus neoformans from Roraima, Northern Brazil.

33. A Novel Protocol for the Isolation of Fungal Extracellular Vesicles Reveals the Participation of a Putative Scramblase in Polysaccharide Export and Capsule Construction in Cryptococcus gattii .

34. The Overlooked Glycan Components of the Cryptococcus Capsule.

35. Sarcolipin Signaling Promotes Mitochondrial Biogenesis and Oxidative Metabolism in Skeletal Muscle.

36. Golgi Reassembly and Stacking Protein (GRASP) Participates in Vesicle-Mediated RNA Export in Cryptococcus Neoformans.

37. Both brown adipose tissue and skeletal muscle thermogenesis processes are activated during mild to severe cold adaptation in mice.

38. Skeletal Muscle Thermogenesis and Its Role in Whole Body Energy Metabolism.

39. Role of SERCA Pump in Muscle Thermogenesis and Metabolism.

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