Chemokine-mediated rapid turnover of myeloid-derived suppressor cells in tumor-bearing mice

Yasushi Sawanobori(The University of Tokyo), Satoshi Ueha(The University of Tokyo), Makoto Kurachi(The University of Tokyo), Takeshi Shimaoka(The University of Tokyo), James E. Talmadge(University of Nebraska Medical Center), Jun Abe(The University of Tokyo), Yusuke Shono(The University of Tokyo), Masahiro Kitabatake(The University of Tokyo), Kazuhiro Kakimi(The University of Tokyo), Naofumi Mukaida(Kanazawa University), Kouji Matsushima(The University of Tokyo)
Blood
March 29, 2008
Cited by 366

Abstract

Tumor growth is associated with aberrant myelopoiesis, including the accumulation of CD11b(+)Gr-1(+) myeloid-derived suppressor cells (MDSCs) that have the potential to promote tumor growth. However, the identity, growth, and migration of tumor-associated MDSCs remain undefined. We demonstrate herein that MDSCs at tumor site were composed primarily of bone marrow-derived CD11b(+)Gr-1(hi)Ly-6C(int) neutrophils and CD11b(+)Gr-1(int/dull)Ly-6C(hi) macrophages. Unexpectedly, in vivo bromodeoxyuridine (BrdU) labeling and parabiosis experiments revealed that tumor-infiltrating macrophages were replenished more rapidly than neutrophils. CCR2 deficiency caused striking conversion of infiltrating cellular dominance from macrophages to neutrophils in the tumor with the excessive production of CXCR2 ligands and granulocyte-colony stimulating factor in the tumor without affecting tumor growth. Overall, our data established the identity and dynamics of MDSCs in a tumor-bearing host mediated by chemokines and elucidated unexpected effects of the paucity of macrophages on tumor development.


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