4.6 Article

CXCL2 synthesized by oral squamous cell carcinoma is involved in cancer-associated bone destruction

期刊

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2012.06.132

关键词

Oral cancer; CXCL2; Osteoclast; Bone resorption; RANKL

资金

  1. Japan Society for the Promotion of Science [22249061, 21659420, 23659854]
  2. Ministry of Health, Labour, and Welfare [21040101]
  3. Global Center of Excellence (GCOE) Program
  4. International Research Center for Molecular Science in Tooth and Bone Diseases, Tokyo Medical and Dental University
  5. Grants-in-Aid for Scientific Research [23659854, 21659420, 23390417, 22249061] Funding Source: KAKEN

向作者/读者索取更多资源

To explore the mechanism of bone destruction associated with oral cancer, we identified factors that stimulate osteoclastic bone resorption in oral squamous cell carcinoma. Two clonal cell lines, HSC3-C13 and HSC3-C17, were isolated from the maternal oral cancer cell line, HSC3. The conditioned medium from HSC3-C13 cells showed the highest induction of Rankl expression in the mouse stromal cell lines ST2 and UAMS-32 as compared to that in maternal HSC3 cells and HSC3-C17 cells, which showed similar activity. The conditioned medium from HSC3-C13 cells significantly increased the number of osteoclasts in a co-culture with mouse bone marrow cells and UAMS-32 cells. Xenograft tumors generated from these clonal cell lines into the periosteal region of the parietal bone in athymic mice showed that HSC3-C13 cells caused extensive bone destruction and a significant increase in osteoclast numbers as compared to HSC3-C17 cells. Gene expression was compared between HSC3-C13 and HSC3-C17 cells by using microarray analysis, which showed that CXCL2 gene was highly expressed in HSC3-C13 cells as compared to HSC3-C17 cells. Immunohistochemical staining revealed the localization of CXCL2 in human oral squamous cell carcinomas. The increase in osteoclast numbers induced by the HSC3-C13-conditioned medium was dose-dependently inhibited by addition of anti-human CXCL2-neutralizing antibody in a co-culture system. Recombinant CXCL2 increased the expression of Rankl in UAMS-32 cells. These results indicate that CXCL2 is involved in bone destruction induced by oral cancer. This is the first report showing the role of CXCL2 in cancer-associated bone destruction. (C) 2012 Elsevier Inc. All rights reserved.

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