Literature DB >> 24405297

Sulforaphane induces DNA damage and mitotic abnormalities in human osteosarcoma MG-63 cells: correlation with cell cycle arrest and apoptosis.

José Miguel P Ferreira de Oliveira1, Catarina Remédios, Helena Oliveira, Pedro Pinto, Francisco Pinho, Sónia Pinho, Maria Costa, Conceição Santos.   

Abstract

Osteosarcoma is a recalcitrant bone malignancy with poor responsiveness to treatments; therefore, new chemotherapeutic compounds are needed. Sulforaphane (SFN) has been considered a promising chemotherapeutic compound for several types of tumors by inducing apoptosis and cytostasis, but its effects (e.g., genotoxicity) in osteosarcoma cells remains exploratory. In this work, the MG-63 osteosarcoma cell line was exposed to SFN up to 20 μM for 24 and 48 h. SFN induced G2/M phase arrest and decreased nuclear division index, associated with disruption of cytoskeletal organization. Noteworthy, SFN induced a transcriptome response supportive of G2/M phase arrest, namely a decrease in Chk1- and Cdc25C-encoding transcripts, and an increase in Cdk1-encoding transcripts. After 48-h exposure, SFN at a dietary concentration (5 μM) contributed to genomic instability in the MG-63 cells as confirmed by increased number of DNA breaks, clastogenicity, and nuclear and mitotic abnormalities. The increased formation of nucleoplasmic bridges, micronuclei, and apoptotic cells positively correlated with loss of viability. These results suggest that genotoxic damage is an important step for SFN-induced cytotoxicity in MG-63 cells. In conclusion, SFN shows potential to induce genotoxic damage at low concentrations and such potential deserves further investigation in other tumor cell types.

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Year:  2014        PMID: 24405297     DOI: 10.1080/01635581.2014.864777

Source DB:  PubMed          Journal:  Nutr Cancer        ISSN: 0163-5581            Impact factor:   2.900


  21 in total

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2.  Establishment and analysis of osteosarcoma cell sublines with different metastatic characteristics.

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4.  miR-574-3p acts as a tumor promoter in osteosarcoma by targeting SMAD4 signaling pathway.

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5.  Sulforaphane suppresses the growth of glioblastoma cells, glioblastoma stem cell-like spheroids, and tumor xenografts through multiple cell signaling pathways.

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6.  The isothiocyanate sulforaphane inhibits mTOR in an NRF2-independent manner.

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Review 7.  Cytotoxic and Antitumor Activity of Sulforaphane: The Role of Reactive Oxygen Species.

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8.  Sulforaphane induces oxidative stress and death by p53-independent mechanism: implication of impaired glutathione recycling.

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Review 10.  The Role of Sulforaphane in Epigenetic Mechanisms, Including Interdependence between Histone Modification and DNA Methylation.

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Journal:  Int J Mol Sci       Date:  2015-12-12       Impact factor: 5.923

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