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    Mouse thyroid side population (SP) cells consist of a minor population of mouse thyroid cells that may have multipotent thyroid stem cell characteristics. However the nature of thyroid SP cells remains elusive, particularly in relation to thyroid cancer. Stanniocalcin (STC) 1 and 2 are secreted glycoproteins known to regulate serum calcium and phosphate homeostasis. In recent years, the relationship of STC1/2 expression to cancer has been described in various tissues. Microarray analysis was carried out to determine genes up- and down-regulated in thyroid SP cells as compared with non-SP cells. Among genes up-regulated, stanniocalcin 1 (STC1) was chosen for study because of its expression in various thyroid cells by Western blotting and immunohistochemistry. Gene expression analysis revealed that genes known to be highly expressed in cancer cells and/or involved in cancer invasion/metastasis were markedly up-regulated in SP cells from both intact as well as partial thyroidectomized thyroids. Among these genes, expression of STC1 was found in five human thyroid carcinoma-derived cell lines as revealed by analysis of mRNA and protein, and its expression was inversely correlated with the differentiation status of the cells. Immunohistochemical analysis demonstrated higher expression of STC1 in the thyroid tumor cell line and thyroid tumor tissues from humans and mice. These results suggest that SP cells contain a population of cells that express genes also highly expressed in cancer cells including Stc1, which warrants further study on the role of SP cells and/or STC1 expression in thyroid cancer.

    Citation

    Suguru Hayase, Yoshihito Sasaki, Tsutomu Matsubara, Daekwan Seo, Masaaki Miyakoshi, Tsubasa Murata, Takashi Ozaki, Kennichi Kakudo, Kensuke Kumamoto, Kris Ylaya, Sheue-yann Cheng, Snorri S Thorgeirsson, Stephen M Hewitt, Jerrold M Ward, Shioko Kimura. Expression of stanniocalcin 1 in thyroid side population cells and thyroid cancer cells. Thyroid : official journal of the American Thyroid Association. 2015 Apr;25(4):425-36

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    PMID: 25647164

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