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1. Structural Assessment of Chlamydia trachomatis Major Outer Membrane Protein (MOMP)-Derived Vaccine Antigens and Immunological Profiling in Mice with Different Genetic Backgrounds.

2. Safety and efficacy of C. muridarum vaccines adjuvanted with CpG-1826 and four concentrations of Montanide-ISA-720-VG.

3. Safety and efficacy of C. muridarum vaccines adjuvanted with CpG-1826 and four concentrations of Montanide-ISA-720-VG

4. Evaluation of Four Adjuvant Combinations, IVAX-1, IVAX-2, CpG-1826+Montanide ISA 720 VG and CpG-1018+Montanide ISA 720 VG, for Safety and for Their Ability to Elicit Protective Immune Responses in Mice against a Respiratory Challenge with Chlamydia muridarum.

5. The Polymorphic Membrane Protein G Has a Neutral Effect and the Plasmid Glycoprotein 3 an Antagonistic Effect on the Ability of the Major Outer Membrane Protein to Elicit Protective Immune Responses against a Chlamydia muridarum Respiratory Challenge

6. Structural Assessment of Chlamydia trachomatis Major Outer Membrane Protein (MOMP)-Derived Vaccine Antigens and Immunological Profiling in Mice with Different Genetic Backgrounds

7. Rapid bacterial detection and antibiotic susceptibility testing in whole blood using one-step, high throughput blood digital PCR

8. Evaluation in mice of cell-free produced CT584 as a Chlamydia vaccine antigen

9. A Simple DNAzyme‐Based Fluorescent Assay for Klebsiella pneumoniae

10. Autophagy Limits Inflammasome During Chlamydia pneumoniae Infection

11. Evaluation of Four Adjuvant Combinations, IVAX-1, IVAX-2, CpG-1826+Montanide ISA 720 VG and CpG-1018+Montanide ISA 720 VG, for Safety and for Their Ability to Elicit Protective Immune Responses in Mice against a Respiratory Challenge with Chlamydia muridarum

12. The Polymorphic Membrane Protein G Has a Neutral Effect and the Plasmid Glycoprotein 3 an Antagonistic Effect on the Ability of the Major Outer Membrane Protein to Elicit Protective Immune Responses against a Chlamydia muridarum Respiratory Challenge

14. Chlamydia trachomatis Type III Secretion Proteins Regulate Transcription.

15. Mast cells play an important role in chlamydia pneumoniae lung infection by facilitating immune cell recruitment into the airway.

16. Formulation of the microbicide INP0341 for in vivo protection against a vaginal challenge by Chlamydia trachomatis.

17. Chlamydia pneumoniae Infection in Mice Induces Chronic Lung Inflammation, iBALT Formation, and Fibrosis

18. Chlamydia pneumoniae infection in mice induces chronic lung inflammation, iBALT formation, and fibrosis.

20. Pre-clinical pharmacokinetics and anti-chlamydial activity of salicylidene acylhydrazide inhibitors of bacterial type III secretion

21. In vitro anti-HIV-1 activity of salicylidene acylhydrazide compounds

22. Chlamydia pneumoniae Infection Induced Allergic Airway Sensitization Is Controlled by Regulatory T-Cells and Plasmacytoid Dendritic Cells

23. The NOD/RIP2 Pathway Is Essential for Host Defenses Against Chlamydophila pneumoniae Lung Infection

24. Evaluation of Four Adjuvant Combinations, IVAX-1, IVAX-2, CpG-1826+Montanide ISA 720 VG and CpG-1018+Montanide ISA 720 VG, for Safety and for Their Ability to Elicit Protective Immune Responses in Mice against a Respiratory Challenge with Chlamydia muridarum

25. Autophagy Limits Inflammasome During Chlamydia pneumoniae Infection

28. Formulation of the microbicide INP0341 for in vivo protection against a vaginal challenge by Chlamydia trachomatis.

29. Chlamydia pneumoniae infection in mice induces chronic lung inflammation, iBALT formation, and fibrosis.

30. Plasmacytoid dendritic cells play a role for effective innate immune responses during Chlamydia pneumoniae infection in mice.

31. Rapid bacterial detection and antibiotic susceptibility testing in whole blood using one-step, high throughput blood digital PCR.

32. Rapid bacterial detection and antibiotic susceptibility testing in whole blood using one-step, high throughput blood digital PCR

33. Chlamydia pneumoniae infection induced allergic airway sensitization is controlled by regulatory T-cells and plasmacytoid dendritic cells.

34. Interaction between components of the type III secretion system of Chlamydiaceae

36. The NOD/RIP2 pathway is essential for host defenses against Chlamydophila pneumoniae lung infection.

38. A Simple DNAzyme-Based Fluorescent Assay for Klebsiella pneumoniae

42. Pre-clinical pharmacokinetics and anti-chlamydial activity of salicylidene acylhydrazide inhibitors of bacterial type III secretion

43. TLR/MyD88 and Liver X Receptor α Signaling Pathways Reciprocally Control Chlamydia pneumoniae-Induced Acceleration of Atherosclerosis

44. Reversal of the Antichlamydial Activity of Putative Type III Secretion Inhibitors by Iron

45. Chlamydia trachomatis Type III Secretion Proteins Regulate Transcription

46. Mast cells play an important role in chlamydia pneumoniae lung infection by facilitating immune cell recruitment into the airway

47. Differential Expression of mRNA Encoding Cytokines and Chemokines in the Reproductive Tract after Infection of Mice with Chlamydia trachomatis

48. Efficiency of naphthalene biodegradation byPseudomonas putida G7 in soil

49. Temporal Expression of Type III Secretion Genes of Chlamydia pneumoniae

50. Formulation of the microbicide INP0341 for in vivo protection against a vaginal challenge by Chlamydia trachomatis

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