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10.3389/fmicb.2017.00276

http://scihub22266oqcxt.onion/10.3389/fmicb.2017.00276
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suck abstract from ncbi


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pmid28298903
      Front+Microbiol 2017 ; 8 (ä): 276
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  • Apoptosis, Toll-like, RIG-I-like and NOD-like Receptors Are Pathways Jointly Induced by Diverse Respiratory Bacterial and Viral Pathogens #MMPMID28298903
  • Martínez I ; Oliveros JC ; Cuesta I ; de la Barrera J ; Ausina V ; Casals C ; de Lorenzo A ; García E ; García-Fojeda B ; Garmendia J ; González-Nicolau M ; Lacoma A ; Menéndez M ; Moranta D ; Nieto A ; Ortín J ; Pérez-González A ; Prat C ; Ramos-Sevillano E ; Regueiro V ; Rodriguez-Frandsen A ; Solís D ; Yuste J ; Bengoechea JA ; Melero JA
  • Front Microbiol 2017[]; 8 (ä): 276 PMID28298903 show ga
  • Lower respiratory tract infections are among the top five leading causes of human death. Fighting these infections is therefore a world health priority. Searching for induced alterations in host gene expression shared by several relevant respiratory pathogens represents an alternative to identify new targets for wide-range host-oriented therapeutics. With this aim, alveolar macrophages were independently infected with three unrelated bacterial (Streptococcus pneumoniae, Klebsiella pneumoniae, and Staphylococcus aureus) and two dissimilar viral (respiratory syncytial virus and influenza A virus) respiratory pathogens, all of them highly relevant for human health. Cells were also activated with bacterial lipopolysaccharide (LPS) as a prototypical pathogen-associated molecular pattern. Patterns of differentially expressed cellular genes shared by the indicated pathogens were searched by microarray analysis. Most of the commonly up-regulated host genes were related to the innate immune response and/or apoptosis, with Toll-like, RIG-I-like and NOD-like receptors among the top 10 signaling pathways with over-expressed genes. These results identify new potential broad-spectrum targets to fight the important human infections caused by the bacteria and viruses studied here.
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