Tumour‐derived exosome SNHG17 induced by oestrogen contributes to ovarian cancer progression via the CCL13–CCR2–M2 macrophage axis

Author:

Liang Haiyan1ORCID,Geng Shuo1,Wang Yadong2,Fang Qing3,Xin Yongfeng4,Li Yanqing5

Affiliation:

1. Department of Obstetrics and Gynecology China‐Japan Friendship Hospital Beijing China

2. Scientific Research Department GeneX Health Co., Ltd Beijing China

3. Institute of Clinical Medicine China‐Japan Friendship Hospital Beijing China

4. Department of Gynecology The People's Hospital of DaLaTe Ordos Inner Mongolia China

5. Department of Gynecology Hebei Provincial Hospital of Traditional Chinese Medicine Wuhan Hebei China

Abstract

AbstractOestrogen is known to be strongly associated with ovarian cancer. There was much work to show the importance of lncRNA SNHG17 in ovarian cancer. However, no study has revealed the molecular regulatory mechanism and functional effects between oestrogen and SNHG17 in the development and metastasis of ovarian cancer. In this study, we found that SNHG17 expression was significantly increased in ovarian cancer and positively correlated with oestrogen treatment. Oestrogen could promote M2 macrophage polarization as well as ovarian cancer cells SKOV3 and ES2 cell exosomal SNHG17 expression. When exposure to oestrogen, exosomal SNHG17 promoted ovarian cancer cell proliferation, migration, invasion and epithelial‐mesenchymal transition (EMT) in vitro, and tumour growth and lung metastasis in vivo by accelerating M2‐like phenotype of macrophages. Mechanically, exosomal SNHG17 could facilitate the release of CCL13 from M2 macrophage via the PI3K‐Akt signalling pathway. Moreover, CCL13‐CCR2 axis was identified to be involved in ovarian cancer tumour behaviours driven by oestrogen. There results demonstrate a novel mechanism that exosomal SNHG17 exerts an oncogenic effect on ovarian cancer via the CCL13–CCR2–M2 macrophage axis upon oestrogen treatment, of which SNHG17 may be a potential biomarker and therapeutic target for ovarian cancer responded to oestrogen.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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