chondroitin-sulfates and bleomycetin

chondroitin-sulfates has been researched along with bleomycetin* in 1 studies

Other Studies

1 other study(ies) available for chondroitin-sulfates and bleomycetin

ArticleYear
Pingyangmycin inhibits glycosaminoglycan sulphation in both cancer cells and tumour tissues.
    Journal of cellular and molecular medicine, 2020, Volume: 24, Issue:6

    Pingyangmycin is a clinically used anticancer drug and induces lung fibrosis in certain cancer patients. We previously reported that the negatively charged cell surface glycosaminoglycans are involved in the cellular uptake of the positively charged pingyangmycin. However, it is unknown if pingyangmycin affects glycosaminoglycan structures. Seven cell lines and a Lewis lung carcinoma-injected C57BL/6 mouse model were used to understand the cytotoxicity of pingyangmycin and its effect on glycosaminoglycan biosynthesis. Stable isotope labelling coupled with LC/MS method was used to quantify glycosaminoglycan disaccharide compositions from pingyangmycin-treated and untreated cell and tumour samples. Pingyangmycin reduced both chondroitin sulphate and heparan sulphate sulphation in cancer cells and in tumours. The effect was persistent at different pingyangmycin concentrations and at different exposure times. Moreover, the cytotoxicity of pingyangmycin was decreased in the presence of soluble glycosaminoglycans, in the glycosaminoglycan-deficient cell line CHO745, and in the presence of chlorate. A flow cytometry-based cell surface FGF/FGFR/glycosaminoglycan binding assay also showed that pingyangmycin changed cell surface glycosaminoglycan structures. Changes in the structures of glycosaminoglycans may be related to fibrosis induced by pingyangmycin in certain cancer patients.

    Topics: A549 Cells; Animals; Antibiotics, Antineoplastic; Bleomycin; Cell Line, Tumor; CHO Cells; Chondroitin Sulfates; Cricetulus; Glycosaminoglycans; HCT116 Cells; Heparitin Sulfate; HT29 Cells; Humans; Mass Spectrometry; Mice; Mice, Inbred C57BL; Neoplasms; Pulmonary Fibrosis

2020