scholarly journals Tissue-Specific Patterning of Host Innate Immune Responses by Staphylococcus aureus α-Toxin

2014 ◽  
Vol 6 (5) ◽  
pp. 619-631 ◽  
Author(s):  
Russell E.N. Becker ◽  
Bryan J. Berube ◽  
Georgia R. Sampedro ◽  
Andrea C. DeDent ◽  
Juliane Bubeck Wardenburg
2020 ◽  
Vol 20 (1) ◽  
Author(s):  
Aizat Iman Abdul Hamid ◽  
Laurence Nakusi ◽  
Mickael Givskov ◽  
Young-Tae Chang ◽  
Claire Marquès ◽  
...  

2018 ◽  
Vol 24 (10) ◽  
pp. 1079-1091 ◽  
Author(s):  
Panjit Chieosilapatham ◽  
Shigaku Ikeda ◽  
Hideoki Ogawa ◽  
Francois Niyonsaba

Cathelicidins form one of the major families of antimicrobial peptides and have been identified in many vertebrates, including humans. LL-37, the only human member of the cathelicidin family, is detected in most sites of the human body that is normally exposed to microbes, including the epithelial lining of the skin, gastrointestinal tract, genitourinary tract and lungs. This peptide is also expressed by a variety of epithelial cells and immune cells, such as neutrophils, monocytes and mast cells. LL-37 has emerged as a key component of innate immunity due to its direct antimicrobial activity against a broad spectrum of invading pathogens. It also exhibits diverse immunomodulatory functions by activating both pro- and anti-inflammatory mediators; inducing cell migration, proliferation and differentiation; and regulating apoptosis of epithelial cells and neutrophils. Given that the phenotypic and functional properties of immune compartments are different and significantly impacted by the anatomical sites, tissue-specific factors of host origin and microbial communities play important roles in the regulation of LL-37. This review summarizes the expression and biological functions of LL-37 and discusses its significant roles in the innate immune system based on its anatomical distribution.


2004 ◽  
Vol 11 (3) ◽  
pp. 463-472 ◽  
Author(s):  
Douglas D. Bannerman ◽  
Max J. Paape ◽  
Jai-Wei Lee ◽  
Xin Zhao ◽  
Jayne C. Hope ◽  
...  

ABSTRACTStaphylococcus aureusandEscherichia coliare among the most prevalent species of gram-positive and gram-negative bacteria, respectively, that induce clinical mastitis. The innate immune system comprises the immediate host defense mechanisms to protect against infection and contributes to the initial detection of and proinflammatory response to infectious pathogens. The objective of the present study was to characterize the different innate immune responses to experimental intramammary infection withE. coliandS. aureusduring clinical mastitis. The cytokine response and changes in the levels of soluble CD14 (sCD14) and lipopolysaccharide-binding protein (LBP), two proteins that contribute to host recognition of bacterial cell wall products, were studied. Intramammary infection with eitherE. coliorS. aureuselicited systemic changes, including decreased milk output, a febrile response, and induction of the acute-phase synthesis of LBP. Infection with either bacterium resulted in increased levels of interleukin 1β (IL-1β), gamma interferon, IL-12, sCD14, and LBP in milk. High levels of the complement cleavage product C5a and the anti-inflammatory cytokine IL-10 were detected at several time points followingE. coliinfection, whereasS. aureusinfection elicited a slight but detectable increase in these mediators at a single time point. Increases in IL-8 and tumor necrosis factor alpha were observed only in quarters infected withE. coli. Together, these data demonstrate the variability of the host innate immune response toE. coliandS. aureusand suggest that the limited cytokine response toS. aureusmay contribute to the well-known ability of the bacterium to establish chronic intramammary infection.


Antibiotics ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 96
Author(s):  
Md Saruar Bhuiyan ◽  
Jhih-Hang Jiang ◽  
Xenia Kostoulias ◽  
Ravali Theegala ◽  
Graham J. Lieschke ◽  
...  

Daptomycin is an important antibiotic for the treatment of infections caused by Staphylococcus aureus. The emergence of daptomycin resistance in S. aureus is associated with treatment failure and persistent infections with poor clinical outcomes. Here, we investigated host innate immune responses against clinically derived, daptomycin-resistant (DAP-R) and -susceptible S. aureus paired isolates using a zebrafish infection model. We showed that the control of DAP-R S. aureus infections was attenuated in vivo due to cross-resistance to host cationic antimicrobial peptides. These data provide mechanistic understanding into persistent infections caused by DAP-R S. aureus and provide crucial insights into the adaptive evolution of this troublesome pathogen.


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