A mouse model reproducing the pathophysiology of neonatal group B streptococcal infection

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作者
Elva Bonifácio Andrade
Ana Magalhães
Ana Puga
Madalena Costa
Joana Bravo
Camila Cabral Portugal
Adília Ribeiro
Margarida Correia-Neves
Augusto Faustino
Arnaud Firon
Patrick Trieu-Cuot
Teresa Summavielle
Paula Ferreira
机构
[1] Universidade do Porto,ICBAS—Instituto de Ciências Biomédicas de Abel Salazar
[2] Universidade do Porto,i3S—Instituto de Investigação e Inovação em Saúde
[3] Universidade do Porto,IBMC—Instituto de Biologia Molecular e Celular
[4] Instituto Politécnico do Porto,ESS—Escola Superior de Saúde
[5] University of Porto,UMIB—Unit for Multidisciplinary Investigation in Biomedicine (Endocrine, Cardiovascular & Metabolic Research)
[6] University of Minho,Life and Health Sciences Research Institute (ICVS), School of Medicine
[7] ICVS/3B’s,Division of Infectious Diseases, Department of Medicine Solna
[8] PT Government Associate Laboratory,Institut Pasteur, Unité de Biologie des Bactéries Pathogènes à Gram
[9] Karolinska Institutet,positif
[10] 171 76,undefined
[11] Centre National de la Recherche Scientifique (CNRS ERL 6002),undefined
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摘要
Group B streptococcal (GBS) meningitis remains a devastating disease. The absence of an animal model reproducing the natural infectious process has limited our understanding of the disease and, consequently, delayed the development of effective treatments. We describe here a mouse model in which bacteria are transmitted to the offspring from vaginally colonised pregnant females, the natural route of infection. We show that GBS strain BM110, belonging to the CC17 clonal complex, is more virulent in this vertical transmission model than the isogenic mutant BM110∆cylE, which is deprived of hemolysin/cytolysin. Pups exposed to the more virulent strain exhibit higher mortality rates and lung inflammation than those exposed to the attenuated strain. Moreover, pups that survive to BM110 infection present neurological developmental disability, revealed by impaired learning performance and memory in adulthood. The use of this new mouse model, that reproduces key steps of GBS infection in newborns, will promote a better understanding of the physiopathology of GBS-induced meningitis.
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