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Antimelanomic Effects of High- and Low-Molecular Weight Bioactive Subfractions Isolated from the Mossy Maze Mushroom, Cerrena unicolor (Agaricomycetes)

Małgorzata StatkiewiczDepartment of Genetics, Maria Sktodowska-Curie Memorial Cancer Centre and Institute of Oncology, Warsaw, PolandAnna MatuszewskaDepartment of Biochemistry, Maria Curie-Sktodowska University, Lublin, PolandMagdalena JaszekDepartment of Biochemistry, Maria Curie-Sktodowska University, Lublin, PolandGrzegorz JanuszDepartment of Biochemistry, Maria Curie-Sktodowska University, Lublin, PolandMonika Osińska‐JaroszukDepartment of Biochemistry, Maria Curie-Sktodowska University, Lublin, PolandJustyna SulejDepartment of Biochemistry, Maria Curie-Sklodowska University, Lublin, PolandDawid StefaniukDepartment of Biochemistry, Institute of Biology and Biochemistry, Maria Curie-Sklodowska University, Akademicka 19, Lublin, PolandMichał MikułaDepartment of Genetics, Maria Sktodowska-Curie Memorial Cancer Centre and Institute of Oncology, Warsaw, PolandJerzy OstrowskiDepartment of Genetics, Maria Sktodowska-Curie Memorial Cancer Centre and Institute of Oncology, Warsaw, Poland
2017en
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Three bioactive fractions isolated from Cerrena unicolor cultures-crude endopolysaccharide (c-EPS), laccase, and a subfraction of low-molecular weight secondary metabolites-were used to determine potential cytotoxic effects on the mouse melanoma B16-F10 cell line (American Type Culture Collection CRL-6475). The results obtained prove that all examined fractions exhibited activity against the investigated tumor cells. In addition, an evident immunomodulatory effect of the c-EPS fraction was observed. Our results show that the levels of 2 cytokines (tumor necrosis factor-a and chemokine ligand 2) in mouse inner medullary collecting duct mIMCD-3 cells (American Type Culture Collection CRL-2123) stimulated by c-EPS were significantly higher. A lipopolysaccharide model was used at the same concentration (10 μg/mL) as a positive control.

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