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1. Role of Bacteria-Derived Exopolysaccharides in Inflammatory Bowel Disease with a Special Focus on Cyanobacterial Exopolysaccharides

2. How Do Polyphenol-Rich Foods Prevent Oxidative Stress and Maintain Gut Health?

3. Natural Compounds with Antifungal Properties against Candida albicans and Identification of Hinokitiol as a Promising Antifungal Drug

4. Anti-Malassezia Drug Candidates Based on Virulence Factors of Malassezia-Associated Diseases

5. Antifungal Properties of Hydrazine-Based Compounds against Candida albicans

6. Healthy Diet and Lifestyle Improve the Gut Microbiota and Help Combat Fungal Infection

7. Dissection of the anti-Candida albicans mannan immune response using synthetic oligomannosides reveals unique properties of β-1,2 mannotriose protective epitopes

8. How to boost the immune defence prior to respiratory virus infections with the special focus on coronavirus infections

10. Oleic Acid and Palmitic Acid from Bacteroides thetaiotaomicron and Lactobacillus johnsonii Exhibit Anti-Inflammatory and Antifungal Properties

11. Can Drinking Microfiltered Raw Immune Milk From Cows Immunized Against SARS-CoV-2 Provide Short-Term Protection Against COVID-19?

12. How Gut Bacterial Dysbiosis Can Promote Candida albicans Overgrowth during Colonic Inflammation

13. A decrease in anaerobic bacteria promotes Candida glabrata overgrowth while β-glucan treatment restores the gut microbiota and attenuates colitis

14. Two New Compounds Containing Pyridinone or Triazine Heterocycles Have Antifungal Properties against Candida albicans

15. Fungal Chitin Reduces Platelet Activation Mediated via TLR8 Stimulation

16. A Pilot Clinical Study on Post-Operative Recurrence Provides Biological Clues for a Role of Candida Yeasts and Fluconazole in Crohn’s Disease

17. Promising Drug Candidates and New Strategies for Fighting against the Emerging Superbug Candida auris

18. H89 Treatment Reduces Intestinal Inflammation and Candida albicans Overgrowth in Mice

19. How Fungal Glycans Modulate Platelet Activation via Toll-Like Receptors Contributing to the Escape of Candida albicans from the Immune Response

20. Modulation of intestinal inflammation by yeasts and cell wall extracts: strain dependence and unexpected anti-inflammatory role of glucan fractions.

21. S8.3b How fungal cell wall glycans modulate the activation of platelets ?

22. Dissection of the anti-Candida albicans mannan immune response using synthetic oligomannosides reveals unique properties of β-1,2 mannotriose protective epitopes

23. Promising Drug Candidates and New Strategies for Fighting against the Emerging Superbug Candida auris

24. H89 Treatment Reduces Intestinal Inflammation and Candida albicans Overgrowth in Mice

25. Uric acid levels are independent of anti-Saccharomyces cerevisiae antibodies (ASCA) in Crohn’s disease: A reappraisal of the role of S. cerevisiae in this setting

26. New Efficient Eco‐Friendly Supported Catalysts for the Synthesis of Amides with Antioxidant and Anti‐Inflammatory Properties

27. Pyroglutamide-Based P2X7 Receptor Antagonists Targeting Inflammatory Bowel Disease

28. Bacteroides thetaiotaomicron and Lactobacillus johnsonii modulate intestinal inflammation and eliminate fungi via enzymatic hydrolysis of the fungal cell wall

29. Could Intravenous Immunoglobulin Collected from Recovered Coronavirus Patients Protect against COVID-19 and Strengthen the Immune System of New Patients?

30. Role of mannose-binding lectin in intestinal homeostasis and fungal elimination

32. Remodeling of the Candida glabrata cell wall in the gastrointestinal tract affects the gut microbiota and the immune response

33. Distinct Effects of Integrins α X β 2 and α M β 2 on Leukocyte Subpopulations during Inflammation and Antimicrobial Responses

34. Role of TLR1, TLR2 and TLR6 in the modulation of intestinal inflammation and Candida albicans elimination

35. Correction: Corrigendum: Polymorphisms in the Mannose-Binding Lectin Gene are Associated with Defective Mannose-Binding Lectin Functional Activity in Crohn’s Disease Patients

36. Short fungal fractions of beta-1,3 glucans affect platelet activation

37. Distinct Effects of Integrins αXβ2 and αMβ2 on Leukocyte Subpopulations during Inflammation and Antimicrobial Responses

38. Integrin αXβ2 Is a Leukocyte Receptor for Candida albicans and Is Essential for Protection against Fungal Infections

39. Mannose-Binding Lectin Levels and Variation During Invasive Candidiasis

40. Murine Model of Dextran Sulfate Sodium-induced Colitis Reveals Candida glabrata Virulence and Contribution of -Mannosyltransferases

41. Saccharomyces boulardiidecreases inflammation and intestinal colonization byCandida albicansin a mouse model of chemically-induced colitis

42. Monitoring of bactericidal action of laser by in vivo imaging of bioluminescent E. coli in a cutaneous wound infection

43. La Mannose-binding lectine et l’homéostasie intestinale

44. Preliminary evidence for a serum disaccharide signature of invasive Candida albicans infection detected by MALDI Mass Spectrometry

45. Candida albicans airway exposure primes the lung innate immune response against Pseudomonas aeruginosa infection through innate lymphoid cell recruitment and interleukin-22-associated mucosal response

46. Mo1923 Polymorphisms in the Mannose Binding Lectin Gene Are Associated With the Defect of the Mannose Binding Lectin Functional Activity in Crohn's Disease Patients

47. Modulation of intestinal inflammation by yeasts and cell wall extracts: strain dependence and unexpected anti-inflammatory role of glucan fractions

48. Regulation of innate immune response to Candida albicans infections by αMβ2-Pra1p interaction

50. Yeasts: neglected pathogens

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