20 results on '"Olson, Rachel M."'
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2. Standardized Method for Aerosol Challenge of Rodents with Yersinia pestis for Modeling Primary Pneumonic Plague
3. Protection Induced by Oral Vaccination with a Recombinant Yersinia pseudotuberculosis Delivering Yersinia pestis LcrV and F1 Antigens in Mice and Rats against Pneumonic Plague
4. Fractionation Techniques to Examine Effector Translocation
5. Nucleotide Receptors Mediate Protection Against Neonatal Sepsis and Meningitis Caused by Alpha-Hemolysin Expressing Escherichia coli K1
6. Nucleotide receptors mediate protection against neonatal sepsis and meningitis caused by alpha‐hemolysin expressing Escherichia coli K1
7. Modification of the Pulmonary MyD88 Inflammatory Response Underlies the Role of the Yersinia pestis Pigmentation Locus in Primary Pneumonic Plague
8. Activation of Heme Oxygenase Expression by Cobalt Protoporphyrin Treatment Prevents Pneumonic Plague Caused by Inhalation of Yersinia pestis
9. Shift from primary pneumonic to secondary septicemic plague by decreasing the volume of intranasal challenge with Yersinia pestis in the murine model
10. Yersinia pestis Exploits Early Activation of MyD88 for Growth in the Lungs during Pneumonic Plague
11. Induction of Type I Interferon through a Noncanonical Toll-Like Receptor 7 Pathway during Yersinia pestis Infection
12. Usurping bacterial virulence factors as self-delivery vehicles for therapeutic use
13. Macrophage LTB4 drives efficient phagocytosis of Borrelia burgdorferi via BLT1 or BLT2
14. Macrophage Polarization during Murine Lyme Borreliosis
15. Macrophage LTB4drives efficient phagocytosis of Borrelia burgdorferivia BLT1 or BLT2
16. Modification of the Pulmonary MyD88 Inflammatory Response Underlies the Role of the Yersinia pestisPigmentation Locus in Primary Pneumonic Plague
17. Yersinia pestisExploits Early Activation of MyD88 for Growth in the Lungs during Pneumonic Plague
18. Standardized Method for Aerosol Challenge of Rodents with Yersinia pestis for Modeling Primary Pneumonic Plague.
19. Macrophage LTB 4 drives efficient phagocytosis of Borrelia burgdorferi via BLT1 or BLT2.
20. Fractionation Techniques to Examine Effector Translocation.
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