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Tumor cell-derived microparticles polarize M2 tumor-associated macrophages for tumor progression.


ABSTRACT: Despite identification of macrophages in tumors (tumor-associated macrophages, TAM) as potential targets for cancer therapy, the origin and function of TAM in the context of malignancy remain poorly characterized. Here, we show that microparticles (MPs), as a by-product, released by tumor cells act as a general mechanism to mediate M2 polarization of TAM. Taking up tumor MPs by macrophages is a very efficient process, which in turn results in the polarization of macrophages into M2 type, not only leading to promoting tumor growth and metastasis but also facilitating cancer stem cell development. Moreover, we demonstrate that the underlying mechanism involves the activation of the cGAS/STING/TBK1/STAT6 pathway by tumor MPs. Finally, in addition to murine tumor MPs, we show that human counterparts also possess consistent effect on human M2 polarization. These findings provide new insights into a critical role of tumor MPs in remodeling of tumor microenvironment and better understanding of the communications between tumors and macrophages.

SUBMITTER: Ma R 

PROVIDER: S-EPMC4839324 | biostudies-other | 2016 Apr

REPOSITORIES: biostudies-other

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Tumor cell-derived microparticles polarize M2 tumor-associated macrophages for tumor progression.

Ma Ruihua R   Ji Tiantian T   Chen Degao D   Dong Wenqian W   Zhang Huafeng H   Yin Xiaonan X   Ma Jingwei J   Liang Xiaoyu X   Zhang Yi Y   Shen Guanxin G   Qin Xiaofeng X   Huang Bo B  

Oncoimmunology 20160218 4


Despite identification of macrophages in tumors (tumor-associated macrophages, TAM) as potential targets for cancer therapy, the origin and function of TAM in the context of malignancy remain poorly characterized. Here, we show that microparticles (MPs), as a by-product, released by tumor cells act as a general mechanism to mediate M2 polarization of TAM. Taking up tumor MPs by macrophages is a very efficient process, which in turn results in the polarization of macrophages into M2 type, not onl  ...[more]

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