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PMID: 26090868 Published · ppublish English

In vivo selection for spine-derived highly metastatic lung cancer cells is associated with increased migration, inflammation and decreased adhesion.

Oncotarget ·Vol. 6 ·No. 26 ·2016-08-04

Cai Xiaopan, Luo Jian, Yang Xinghai, Deng Huayun, Zhang Jishen, Li Shichang, Wei Haifeng, Yang Cheng, Xu Leqin, Jin Rongrong, Li Zhenxi, Zhou Wang, Ding JianDong, Chu Jianjun, Jia Lianshun, Jia Qi, Tan Chengjun, Liu Mingyao, Xiao Jianru

Abstract

We developed a murine spine metastasis model by screening five metastatic non-small cell lung cancer cell lines (PC-9, A549, NCI-H1299, NCI-H460, H2030). A549 cells displayed the highest tendency towards spine metastases. After three rounds of selection in vivo, we isolated a clone named A549L6, which induced spine metastasis in 80% of injected mice. The parameters of the A549L6 cell spinal metastatic mouse models were consistent with clinical spine metastasis features. All the spinal metastatic mice developed symptoms of nerve compression after 40 days. A549L6 cells had increased migration, invasiveness and decreased adhesion compared to the original A549L0 cells. In contrast, there was no significant differences in cell proliferation, apoptosis and sensitivity to chemotherapeutic agents such as cisplatin. Comparative transcriptomic analysis and real-time PCR analysis showed that expression of signaling molecules regulating several tumor properties including migration (MYL9), metastasis (CEACAM6, VEGFC, CX3CL1, CST1, CCL5, S100A9, IGF1, NOTCH3), adhesion (FN1, CEACAM1) and inflammation (TRAF2, NFκB2 and RelB) were altered in A549L6 cells. We suggest that migration, adhesion and inflammation related genes contribute to spine metastatic capacity.

Keywords
A549 bone metastasis lung cancer spine metastasis
Article Info
Journal
Oncotarget
Abbr.
Oncotarget
Published
2016-08-04
Indexed
2015-09-22
Updated
2015-12-24
Language
English
Country/Region
United States
NLM ID
101532965
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