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The Hsp27-Mediated IkB alpha-NF kappa B Signaling Axis Promotes Radiation-Induced Lung Fibrosis

Title
The Hsp27-Mediated IkB alpha-NF kappa B Signaling Axis Promotes Radiation-Induced Lung Fibrosis
Authors
Kim, Jee-YounJeon, SeulgiYoo, Young JoJin, HeeWon, Hee YeonYoon, KyeongheeHwang, Eun SookLee, Yoon-JinNa, YounghwaCho, JaehoLee, Yun-Sil
Ewha Authors
황은숙이윤실
SCOPUS Author ID
황은숙scopus; 이윤실scopus
Issue Date
2019
Journal Title
CLINICAL CANCER RESEARCH
ISSN
1078-0432JCR Link

1557-3265JCR Link
Citation
CLINICAL CANCER RESEARCH vol. 25, no. 17, pp. 5364 - 5375
Publisher
AMER ASSOC CANCER RESEARCH
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Purpose: Lung fibrosis is a major side effect experienced by patients after lung cancer radiotherapy. However, effective protection strategies and underlying treatment targets remain unclear. In an effort to improve clinical outcomes, pharmacologic treatment of fibrosis is becoming increasingly popular; however, no ideal therapeutic strategy is yet available. Experimental Design: We used a mouse model to irradiate high focal (90 or 75 Gy) to 3-mm volume of the left lung. Lung tissues of mice were subjected to microarray, mRNA expression, and immunohistochemical analysis. Correlations of radiation (IR)-induced epithelial-mesenchymal transition (EMT) were validated in lung cell lines using appropriate treatments to activate or inhibit selected pathways. Results: The expression of Hsp27 was increased during IR-induced lung fibrosis in a mouse model. Inhibition of functional Hsp27 using shRNA and a synthetic small molecule inhibitor (J2) in lung cells alleviated IR-mediated EMT. The activation of NFkB pathways via direct interaction between Hsp27 and IkB alpha resulted in increased expressions of Twist, IL-1 beta, and IL-6 and facilitated IR-mediated EMT, which was identified as an underlying mechanism of Hsp27-mediated fibrosis after IR. J2 also inhibited IR-induced lung fibrosis in an orthotopic lung cancer model, and IR-induced lung fibrotic tissues from patients showed higher expression of Hsp27 than unirradiated lungs. Conclusions: Collectively, IkB alpha-NF kappa B signaling activation by Hsp27, which resulted in the facilitation of Twist, IL1 beta, and IL6 expression, is involved in the EMT process that is tightly connected to the development of IR-induced lung fibrosis. Our findings also suggest that inhibition of Hsp27 has the potential to become a valuable therapeutic strategy for IR-induced lung fibrosis.
DOI
10.1158/1078-0432.CCR-18-3900
Appears in Collections:
약학대학 > 약학과 > Journal papers
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