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PMID: 21939504 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Microvesicles secreted by macrophages shuttle invasion-potentiating microRNAs into breast cancer cells.

Molecular cancer ·Vol. 10 ·2011-09-22 ·Pages 117

Yang M, Chen J, Su F, Yu B, Su F, Lin L, Liu Y, Huang JD, Song E

Abstract

Tumor-associated macrophages (TAMs) are alternatively activated cells induced by interleukin-4 (IL-4)-releasing CD4+ T cells. TAMs promote breast cancer invasion and metastasis; however, the mechanisms underlying these interactions between macrophages and tumor cells that lead to cancer metastasis remain elusive. Previous studies have found microRNAs (miRNAs) circulating in the peripheral blood and have identified microvesicles, or exosomes, as mediators of cell-cell communication. Therefore, one alternative mechanism for the promotion of breast cancer cell invasion by TAMs may be through macrophage-secreted exosomes, which would deliver invasion-potentiating miRNAs to breast cancer cells. We utilized a co-culture system with IL-4-activated macrophages and breast cancer cells to verify that miRNAs are transported from macrophages to breast cancer cells. The shuttling of fluorescently-labeled exogenous miRNAs from IL-4-activated macrophages to co-cultivated breast cancer cells without direct cell-cell contact was observed. miR-223, a miRNA specific for IL-4-activated macrophages, was detected within the exosomes released by macrophages and was significantly elevated in the co-cultivated SKBR3 and MDA-MB-231 cells. The invasiveness of the co-cultivated breast cancer cells decreased when the IL-4-activated macrophages were treated with a miR-223 antisense oligonucleotide (ASO) that would inhibit miR-223 expression. Furthermore, results from a functional assay revealed that miR-223 promoted the invasion of breast cancer cells via the Mef2c-β-catenin pathway. We conclude that macrophages regulate the invasiveness of breast cancer cells through exosome-mediated delivery of oncogenic miRNAs. Our data provide insight into the mechanisms underlying the metastasis-promoting interactions between macrophages and breast cancer cells.

MeSH Terms
3' Untranslated Regions Breast Neoplasms/metabolism,pathology Cell Communication Cell Culture Techniques Cell Line, Tumor Coculture Techniques Exosomes/metabolism Female Genes, Reporter Humans Interleukin-4/pharmacology,physiology Luciferases, Renilla/biosynthesis,genetics MADS Domain Proteins/genetics,metabolism MEF2 Transcription Factors Macrophages/drug effects,metabolism MicroRNAs/genetics,metabolism Myogenic Regulatory Factors/genetics,metabolism Neoplasm Invasiveness RNA Interference beta Catenin/genetics,metabolism
Chemicals
3' Untranslated Regions MADS Domain Proteins MEF2 Transcription Factors MEF2C protein, human MIRN223 microRNA, human MicroRNAs Myogenic Regulatory Factors beta Catenin Interleukin-4 Luciferases, Renilla
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Yang Mei
Breast Tumor Center, Sun-Yat-Sen Memorial Hospital, Sun-Yat-Sen University, Guangzhou, PR China.
Chen Jingqi
Su Fang
Yu Bin
Su Fengxi
Lin Ling
Liu Yujie
Huang Jian-Dong
Song Erwei
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Article Info
Journal
Molecular cancer
Abbr.
Mol Cancer
ISSN
1476-4598
Published
2011-09-22
Epub
2011-00-22
Pages
117
Language
English
Region
England
NLM ID
101147698
PMCID
PMC3190352
Subset
IM
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