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10.1016/j.bbamem.2015.02.012

http://scihub22266oqcxt.onion/10.1016/j.bbamem.2015.02.012
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C4540701!4540701!25701234
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suck abstract from ncbi


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pmid25701234      Biochim+Biophys+Acta 2015 ; 1848 (11 0 0): 3101-11
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  • On the in vivo significance of bacterial resistance to antimicrobial peptides #MMPMID25701234
  • Bauer ME; Shafer WM
  • Biochim Biophys Acta 2015[Nov]; 1848 (11 0 0): 3101-11 PMID25701234show ga
  • Antimicrobial peptides (AMPs) are at the front-line of host defense during infection and play critical roles both in reducing the microbial load early during infection and in linking innate to adaptive immunity. However, successful pathogens have developed mechanisms to resist AMPs. Although considerable progress has been made in elucidating AMP-resistance mechanisms of pathogenic bacteria in vitro, less is known regarding the in vivo significance of such resistance. Nevertheless, progress has been made in this area, largely by using murine models and, in two instances, human models of infection. Herein, we review progress on the use of in vivo infection models in AMP research and discuss the AMP resistance mechanisms that have been established by in vivo studies to contribute to microbial infection. We posit that in vivo infection models are essential tools for investigators to understand the significance to pathogenesis of genetic changes that impact levels of bacterial susceptibility to AMPs.
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