4.6 Article

Specific Lipopolysaccharide Serotypes Induce Differential Maternal and Neonatal Inflammatory Responses in a Murine Model of Preterm Labor

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AMERICAN JOURNAL OF PATHOLOGY
卷 185, 期 9, 页码 2390-2401

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.ajpath.2015.05.015

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资金

  1. Wellcome Trust [DSRR_P24225]
  2. Arthur Haffenden Fund
  3. Medical Research Council Career Development Award [MR/L009226/1]
  4. MRC [MR/L009226/1] Funding Source: UKRI
  5. Medical Research Council [MR/L009226/1] Funding Source: researchfish
  6. National Institute for Health Research [CL-2015-21-005, ACF-2011-21-020] Funding Source: researchfish

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Intrauterine inflammation is recognized as a key mediator of both normal and preterm birth but is also associated with neonatal neurological injury. Lipopolysaccharide (LPS) is often used to stimulate inflammatory pathways in animal models of infection/inflammation-induced preterm labor; however, inconsistencies in maternal and neonatal responses to LPS are frequently reported. We hypothesized that LPS serotype-specific responses may account for a portion of these inconsistencies. Four different Escherichia coli LPS serotypes (0111:B4, 055:B5, 0127:B8, and 0128:B12) were administered to CD1 mice via intrauterine injection at gestational day 16. Although control animals delivered at term 60 +/- 15 hours postinjection (p.i.), those administered with 0111:B4 delivered 7 +/- 2 hours p.i., 055:B5 delivered 10 +/- 3 hours p.i., 0127:B8 delivered 16 +/- 10 hours p.i., and 0128:B12 delivered 17 +/- 2 hours p.i. (means +/- SD). A correlation between the onset of preterm Labor and myometrial activation of the inflammatory transcription factor, activator protein 1, but not NF-kappa B was observed. Specific LPS serotypes induced differential activation of downstream contractile and inflammatory pathways in myometrium and neonatal pup brain. Our findings demonstrate functional disparity in inflammatory pathway activation in response to differing LPS serotypes. Selective use of LPS serotypes may represent a useful tool for targeting specific inflammatory response mechanisms in these models.

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