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CCR1 Plays a Critical Role in Modulating Pain through Hematopoietic and Non-Hematopoietic Cells
Author(s) -
Nuruddeen D. Lewis,
Akalushi Muthukumarana,
Steven E. Fogal,
Laura Corradini,
Dimitria E. Stefanopoulos,
Prathima Adusumalli,
Josephine Pelletier,
Mark Panzenbeck,
Karen Berg,
Melissa Canfield,
Brian N. Cook,
Hossein Razavi,
Daniel Kuzmich,
Shawn Anderson,
Devan Allard,
Paul C. Harrison,
Christine Grimaldi,
Donald Souza,
Christian Harcken,
Ryan M. Fryer,
Louise K. Modis,
Maryanne L. Brown
Publication year - 2014
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0105883
Subject(s) - ccr1 , chemokine , inflammation , chemokine receptor , haematopoiesis , immune system , medicine , immunology , chemistry , pharmacology , microbiology and biotechnology , biology , stem cell
Inflammation is associated with immune cells infiltrating into the inflammatory site and pain. CC chemokine receptor 1 (CCR1) mediates trafficking of leukocytes to sites of inflammation. However, the contribution of CCR1 to pain is incompletely understood. Here we report an unexpected discovery that CCR1-mediated trafficking of neutrophils and CCR1 activity on non-hematopoietic cells both modulate pain. Using a genetic approach (CCR1 −/− animals) and pharmacological inhibition of CCR1 with selective inhibitors, we show significant reductions in pain responses using the acetic acid-induced writhing and complete Freund's adjuvant-induced mechanical hyperalgesia models. Reductions in writhing correlated with reduced trafficking of myeloid cells into the peritoneal cavity. We show that CCR1 is highly expressed on circulating neutrophils and their depletion decreases acetic acid-induced writhing. However, administration of neutrophils into the peritoneal cavity did not enhance acetic acid-induced writhing in wild-type (WT) or CCR1 −/− mice. Additionally, selective knockout of CCR1 in either the hematopoietic or non-hematopoietic compartments also reduced writhing. Together these data suggest that CCR1 functions to significantly modulate pain by controlling neutrophil trafficking to the inflammatory site and having an unexpected role on non-hematopoietic cells. As inflammatory diseases are often accompanied with infiltrating immune cells at the inflammatory site and pain, CCR1 antagonism may provide a dual benefit by restricting leukocyte trafficking and reducing pain.

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