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1. Pamoic acid is an inhibitor of HMGB1·CXCL12 elicited chemotaxis and reduces inflammation in murine models of Pseudomonas aeruginosa pneumonia

2. Mutual Effects of Single and Combined CFTR Modulators and Bacterial Infection in Cystic Fibrosis

3. Type-4 Phosphodiesterase (PDE4) Blockade Reduces NETosis in Cystic Fibrosis

4. NirA Is an Alternative Nitrite Reductase from Pseudomonas aeruginosa with Potential as an Antivirulence Target

5. Chronic infection by nontypeable Haemophilus influenzae fuels airway inflammation

6. Pseudomonas aeruginosa Elastase Contributes to the Establishment of Chronic Lung Colonization and Modulates the Immune Response in a Murine Model

7. The Small RNA ErsA Plays a Role in the Regulatory Network of Pseudomonas aeruginosa Pathogenicity in Airway Infections

8. Liposomes Loaded With Phosphatidylinositol 5-Phosphate Improve the Antimicrobial Response to Pseudomonas aeruginosa in Impaired Macrophages From Cystic Fibrosis Patients and Limit Airway Inflammatory Response

9. Collaborative Cross Mice Yield Genetic Modifiers for Pseudomonas aeruginosa Infection in Human Lung Disease

10. Genome-Based Approach Delivers Vaccine Candidates Against Pseudomonas aeruginosa

11. Conjugation of LasR Quorum-Sensing Inhibitors with Ciprofloxacin Decreases the Antibiotic Tolerance of P. aeruginosa Clinical Strains

12. The PAPI-1 pathogenicity island-encoded small RNA PesA influences Pseudomonas aeruginosa virulence and modulates pyocin S3 production.

13. Upregulation of TMEM16A Protein in Bronchial Epithelial Cells by Bacterial Pyocyanin.

14. Inactivation of thyA in Staphylococcus aureus Attenuates Virulence and Has a Strong Impact on Metabolism and Virulence Gene Expression

15. Host genetic background influences the response to the opportunistic Pseudomonas aeruginosa infection altering cell-mediated immunity and bacterial replication.

16. Affecting Pseudomonas aeruginosa phenotypic plasticity by quorum sensing dysregulation hampers pathogenicity in murine chronic lung infection.

17. Adaptation of Pseudomonas aeruginosa in Cystic Fibrosis airways influences virulence of Staphylococcus aureus in vitro and murine models of co-infection.

18. Cystic fibrosis-niche adaptation of Pseudomonas aeruginosa reduces virulence in multiple infection hosts.

19. Analysis of Pseudomonas aeruginosa cell envelope proteome by capture of surface-exposed proteins on activated magnetic nanoparticles.

20. Factors contributing to epidemic MRSA clones replacement in a hospital setting.

21. Modelling co-infection of the cystic fibrosis lung by Pseudomonas aeruginosa and Burkholderia cenocepacia reveals influences on biofilm formation and host response.

22. Positive signature-tagged mutagenesis in Pseudomonas aeruginosa: tracking patho-adaptive mutations promoting airways chronic infection.

23. Pseudomonas aeruginosa exploits lipid A and muropeptides modification as a strategy to lower innate immunity during cystic fibrosis lung infection.

24. β-sitosterol ameliorates inflammation and Pseudomonas aeruginosa lung infection in a mouse model

25. ΔF508-Cftrmutation in genetically diverse Collaborative Cross mice yields novel disease-relevant phenotypes for cystic fibrosis

26. Linking CFTR modulators to opportunistic bacterial infections in cystic fibrosis

27. New TMA (4,6,4'-Trimethyl angelicin) Analogues as Anti-Inflammatory Agents in the Treatment of Cystic Fibrosis Lung Disease

28. Rothia mucilaginosa is an anti-inflammatory bacterium in the respiratory tract of patients with chronic lung disease

29. Efficacy of selective histone deacetylase 6 inhibition in mouse models of Pseudomonas aeruginosa infection. A new glimpse for reducing inflammation and infection in cystic fibrosis

30. Chronic Pseudomonas aeruginosa Lung Infection Is IL-1R Independent, but Relies on MyD88 Signaling

31. Lung and Gut Microbiota Changes Associated with Pseudomonas aeruginosa Infection in Mouse Models of Cystic Fibrosis

33. The persistence of Nontypeable Haemophilus Influenzae fuels type 17 immunity in the lung

34. The commensal bacterium Rothia mucilaginosa has anti-inflammatory properties in vitro and in vivo, and negatively correlates with sputum pro-inflammatory markers in chronic airway disease

35. NirA Is an Alternative Nitrite Reductase from Pseudomonas aeruginosa with Potential as an Antivirulence Target

36. Chronic infection by nontypeable Haemophilus influenzae fuels airway inflammation

37. NirA is an alternative nitrite reductase fromPseudomonas aeruginosawith potential as an anti-virulence target

38. Chronic

39. The small RNA ErsA plays a role in the regulatory network of Pseudomonas aeruginosa pathogenicity in airways infection

40. The persistence of Nontypeable Haemophilus influenzae fuels airway inflammation

41. Pharmacological modulation of mitochondrial calcium uniporter controls lung inflammation in cystic fibrosis

42. The impact of host genetic background in the Pseudomonas aeruginosa respiratory infections

43. Inflammation and host-pathogen interaction: Cause and consequence in cystic fibrosis lung disease

44. 468: Impact of CFTR modulators on antibiotic susceptibility and virulence of Pseudomonas aeruginosa and Staphylococcus aureus

45. 674: ΔF508-CFTR mutation in genetically diverse collaborative cross mice expands CF disease-relevant phenotypes

46. WS01.3 Linking CFTR modulators to Pseudomonas aeruginosa infection

47. Myriocin treatment of CF lung infection and inflammation: complex analyses for enigmatic lipids

48. Aerosolized bovine lactoferrin reduces neutrophils and pro-inflammatory cytokines in mouse models of Pseudomonas aeruginosa lung infections

49. Lentiviral Vector Gene Therapy Protects XCGD Mice From Acute Staphylococcus aureus Pneumonia and Inflammatory Response

50. WS05.5 Unravelling the role of IL-17 receptor C during the development of airway chronic infections by Pseudomonas aeruginosa

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