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Hyaluronan Fragments Act as an Endogenous Danger Signal by Engaging TLR2

The Journal of ImmunologyPublished 1 July 2006Open access
Kara Scheibner, Michael A. Lutz, Sada Boodoo, Matthew J. Fenton, Jonathan D. Powell, Maureen R. Horton
Citations698
SJR quartileQ1
SJR score1.43
SNIP0.82
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TL;DR

It is demonstrated that LMW HA activates the innate immune response via TLR-2 in a MyD88-, IL-1R-associated kinase-, TNFR-associated factor-6-, protein kinase Cζ-, and NF-κB-dependent pathway and can act as an adjuvant promoting Ag-specific T cell responses in vivo in wild-type mice.

Abstract

Upon tissue injury, high m.w. hyaluronan (HA), a ubiquitously distributed extracellular matrix component, is broken down into lower m.w. (LMW) fragments, which in turn activate an innate immune response. In doing so, LMW HA acts as an endogenous danger signal alerting the immune system of a breach in tissue integrity. In this report, we demonstrate that LMW HA activates the innate immune response via TLR-2 in a MyD88-, IL-1R-associated kinase-, TNFR-associated factor-6-, protein kinase Czeta-, and NF-kappaB-dependent pathway. Furthermore, we show that intact high m.w. HA can inhibit TLR-2 signaling. Finally, we demonstrate that LMW HA can act as an adjuvant promoting Ag-specific T cell responses in vivo in wild-type but not TLR-2(null) mice.

Keywords

Immunology and MicrobiologyMedicineBiochemistry, Genetics and Molecular Biology