Particulate matter promotes cancer metastasis through increased HBEGF expression in macrophages

Author:

Park Seung-Ho,Yoon Sung-Jin,Choi Song,Jung Jaeeun,Park Jun-Young,Park Young-Ho,Seo Jinho,Lee Jungwoon,Lee Moo-Seung,Lee Seon-JinORCID,Son Mi-YoungORCID,Cho Young-Lai,Kim Jang-Seong,Lee Hyo JinORCID,Jeong Jinyoung,Kim Dae-SooORCID,Park Young-JunORCID

Abstract

AbstractAlthough many cohort studies have reported that long-term exposure to particulate matter (PM) can cause lung cancer, the molecular mechanisms underlying the PM-induced increase in cancer metastasis remain unclear. To determine whether PM contributes to cancer metastasis, cancer cells were cultured with conditioned medium from PM-treated THP1 cells, and the migration ability of the treated cancer cells was assessed. The key molecules involved were identified using RNA-seq analysis. In addition, metastatic ability was analyzed in vivo by injection of cancer cells into the tail vein and intratracheal injection of PM into the lungs of C57BL/6 mice. We found that PM enhances the expression of heparin-binding EGF-like growth factor (HBEGF) in macrophages, which induces epithelial-to-mesenchymal transition (EMT) in cancer cells, thereby increasing metastasis. Macrophage stimulation by PM results in activation and subsequent nuclear translocation of the aryl hydrocarbon receptor and upregulation of HBEGF. Secreted HBEGF activates EGFR on the cancer cell surface to induce EMT, resulting in increased migration and invasion in vitro and increased metastasis in vivo. Therefore, our study reveals a critical PM-macrophage-cancer cell signaling axis mediating EMT and metastasis and provides an effective therapeutic approach for PM-induced malignancy.

Funder

Korea Research Institute of Bioscience and Biotechnology

Ministry of Trade, Industry and Energy

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Subject

Clinical Biochemistry,Molecular Biology,Molecular Medicine,Biochemistry

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