Activation of Integrin β1 Mediates the Increased Malignant Potential of Ovarian Cancer Cells Exerted by Inflammatory Cytokines
- 作者: Yang Z.1, Zhou X.2, Liu Y.3, Gong C.4, Wei X.5, Zhang T.6, Ma D.7, Gao Q.8
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- 期: 卷 14, 编号 7 (2014)
- 页面: 955-962
- 栏目: Oncology
- URL: https://genescells.com/1871-5206/article/view/695114
- DOI: https://doi.org/10.2174/1871520614666140613123108
- ID: 695114
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Epithelial ovarian cancer (EOC) is a highly lethal gynecological malignancy since it could not be discovered until at late stage. Identifying the molecular phenotype alteration during the development and progression of ovarian cancer is an urgent demand for the targeted intervention therapy. Recently, inflammation and Integrin beta 1(ITGB1), a subunit of heterodimeric transmembrane receptors family, had been pointed out to be involved in promoting ovarian tumorigenesis and cancer progression, respectively. However, the relationship between ITGB1 and the inflammatory mediators in ovarian cancer progression remains obscure. In the present study, ITGB1 was observed to be frequently upregulated in ovarian cancer, overexpression of ITGB1 led to a more invasive and mesenchymal phenotype. Furthermore, our results also provided evidence concerning the role of inflammatory cytokines (IL-6, TGF-β1 and SDF-1) in ITGB1 expression as well as in the malignant potential of ovarian cancer cells. Consistently, sh-RNA mediated knocking down of ITGB1 evidently reduced tumor growth and peritoneal dissemination in in vivo Nod-scid SKOV3 orthotopic xenograft mice. Overall, the present data suggested that ITGB1 upregulation was involved in the regulation of tumorigenesis and disease exacerbation exerted by inflammatory cytokines as IL-6, TGF-β1 and SDF-1, and suggested that targeting ITGB1 and the underlying inflammatory modulator was an attractive strategy for therapeutic intervention during ovarian carcinogenesis.
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作者简介
Zongyuan Yang
aff1
Email: info@benthamscience.net
Xiaoshui Zhou
aff2
Email: info@benthamscience.net
Yi Liu
aff3
Email: info@benthamscience.net
Cheng Gong
aff4
Email: info@benthamscience.net
Xiao Wei
aff5
Email: info@benthamscience.net
Taoran Zhang
aff6
Email: info@benthamscience.net
Ding Ma
aff7
Email: info@benthamscience.net
Qinglei Gao
aff8
Email: info@benthamscience.net
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