Early systemic bacterial dissemination and a rapid innate immune response characterize genetic resistance to plague of SEG mice

CE Demeure, C Blanchet, C Fitting… - Journal of Infectious …, 2012 - academic.oup.com
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

[PDF][PDF] Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice

CE Demeure, C Blanchet, C Fitting… - The Journal of …, 2011 - researchgate.net
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice.

CE Demeure, C Blanchet, C Fitting… - Journal of Infectious …, 2012 - search.ebscohost.com
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

[引用][C] Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice

CE DEMEURE, C BLANCHET… - The Journal of …, 2012 - pascal-francis.inist.fr
Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response
Characterize Genetic Resistance to Plague of SEG Mice CNRS Inist Pascal-Francis CNRS …

Early systemic bacterial dissemination and a rapid innate immune response characterize genetic resistance to plague of SEG mice.

CE Demeure, C Blanchet, C Fitting, C Fayolle, H Khun… - 2012 - cabidigitallibrary.org
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice

CE Demeure, C Blanchet, C Fitting… - Journal of Infectious …, 2012 - pasteur.hal.science
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

Early systemic bacterial dissemination and a rapid innate immune response characterize genetic resistance to plague of SEG mice.

CE Demeure, C Blanchet, C Fitting… - The Journal of …, 2011 - europepmc.org
Background Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

[PDF][PDF] Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice

CE Demeure, C Blanchet, C Fitting, C Fayolle, H Khun… - scholar.archive.org
Background: While laboratory mice are usually highly susceptible to Yersinia pestis, we 45
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

[PDF][PDF] Early Systemic Bacterial Dissemination and a Rapid Innate Immune Response Characterize Genetic Resistance to Plague of SEG Mice

CE Demeure, C Blanchet, C Fitting… - The Journal of …, 2011 - academia.edu
Background. Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …

Early systemic bacterial dissemination and a rapid innate immune response characterize genetic resistance to plague of SEG mice

CE Demeure, C Blanchet, C Fitting… - The Journal of …, 2012 - pubmed.ncbi.nlm.nih.gov
Background Although laboratory mice are usually highly susceptible to Yersinia pestis, we
recently identified a mouse strain (SEG) that exhibited an exceptional capacity to resist …