Toll-like receptors stimulate human neutrophil function

Толл-подобные рецепторы стимулируют функции нейтрофилов человека
Fumitaka Hayashi, Terry K. Means, Andrew D. Luster
2003-07-01

CpG DNAGM-CSF primingToll-like receptorscytokine releasehuman neutrophils
The first immune cell to arrive at the site of infection is the neutrophil. Upon arrival, neutrophils quickly initiate microbicidal functions, including the production of antimicrobial products and proinflammatory cytokines that serve to contain infection. This allows the acquired immune system enough time to generate sterilizing immunity and memory. Neutrophils detect the presence of a pathogen through germ line-encoded receptors that recognize microbe-associated molecular patterns. In vertebrates, the best characterized of these receptors are Toll-like receptors (TLRs). We have determined the expression and function of TLRs in freshly isolated human neutrophils. Neutrophils expressed TLR1, 2, 4, 5, 6, 7, 8, 9, and 10-all the TLRs except TLR3. Granulocyte-macrophage colony-stimulating factor (GM-CSF) treatment increased TLR2 and TLR9 expression levels. The agonists of all TLRs expressed in neutrophils triggered or primed cytokine release, superoxide generation, and L-selectin shedding, while inhibiting chemotaxis to interleukin-8 (IL-8) and increasing phagocytosis of opsonized latex beads. The response to the TLR9 agonist nonmethylated CpG-motif-containing DNA (CpG DNA) required GM-CSF pretreatment, which also enhanced the response to the other TLR agonists. Finally, using quantitative polymerase chain reaction (QPCR), we demonstrate a chemokine expression profile that suggests that TLR-stimulated neutrophils recruit innate, but not acquired, immune cells to sites of infection.
1
Agonists for expressed TLRs triggered or primed cytokine release, superoxide generation, L-selectin shedding, and phagocytosis of opsonized latex beads.
2
CpG DNA-induced responses through TLR9 required GM-CSF pretreatment, and TLR-stimulated neutrophils expressed chemokines suggesting recruitment of innate rather than adaptive immune cells.
3
Freshly isolated human neutrophils expressed TLR1, TLR2, TLR4, TLR5, TLR6, TLR7, TLR8, TLR9, and TLR10, but not TLR3.
4
GM-CSF increased neutrophil TLR2 and TLR9 expression and enhanced responses to multiple TLR agonists.
5
TLR stimulation inhibited neutrophil chemotaxis toward IL-8, while promoting other antimicrobial and inflammatory functions.

freshly isolated human neutrophils

Toll-like receptor expression and stimulation of neutrophil antimicrobial, cytokine-release, adhesion, chemotaxis, phagocytic, and immune-cell-recruitment functions

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2003-07-01
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Fumitaka Hayashi
Terry K. Means
Andrew D. Luster
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