Author:
Iwase Katsumi,Nagasaka Akio,Kato Kanefusa,Ohtani Susumu,Tsujimura Toru,Inagaki Asako,Jimbo Shin,Nakai Akira,Masunaga Rumi,Hamada Michiko,Mano Toshiki,Kotake Motoko,Miura Kaoru
Abstract
The intracellular localization of Cu/Zn- and Mn-superoxide dismutases (SOD), which catalyze the dismutation of superoxide radicals (O2−) to O2 and H2O2, was studied in the thyroid tissue of various thyroid disorders by an immunohistochemical technique. The concentrations of both SODs in those tissues were measured also by a sandwich enzyme immunoassay technique.
Copper/zinc-SOD in thyroid tissues were identified by immunocytochemical staining in most cases of papillary carcinoma and in some cases of other thyroid disorders. In normal follicular cells this enzyme is localized in the perinuclear cytoplasm, whereas in thyroid tumor or hyperplastic follicular cells it exists homogenously in cytoplasm. Manganese-SOD stained strongly in papillary carcinoma and papillary-growing cells in the thyroid tissue of adenoma and Graves' disease. The concentrations of Cu/Zn- and Mn-SOD in thyroid tumor tissues and hyperplastic follicular disorders were significantly higher than those in normal thyroid tissue when they were compared as a function of protein or deoxyribonucleic acid contents. The ratio of Mn-SOD to Cu/Zn-SOD was significantly higher only in papillary carcinoma, except for other thyroid disorders, as compared with that in the normal thyroid. In conclusion. SOD seems to be related to cell proliferation and differentiation in the thyroid follicular cell because Cu/Zn-SOD changes its localization in tumor and hyperplastic follicular cells and because the Mn-SOD concentration is increased in papillary carcinoma or papillary-growing cells.
Subject
Endocrinology,General Medicine,Endocrinology, Diabetes and Metabolism
Cited by
14 articles.
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