Literature DB >> 15331177

Multiple bystander effect of irradiated megacolonies of melanoma cells on non-irradiated neighbours.

Waldemar M Przybyszewski1, Maria Widel, Agnieszka Szurko, Bozena Lubecka, Lukasz Matulewicz, Zbigniew Maniakowski, Renata Polaniak, Ewa Birkner, Joanna Rzeszowska-Wolny.   

Abstract

The multicellular megacolonies of human melanoma Me45 line growing on one part of the bottom of culture flasks were irradiated with 5 Gy (60Co), whereas megacolonies growing on the second part of the bottom were shielded. The bystander effect of radiation-traversed cells on non-traversed cells was studied during postradiation co-cultivation. Activity of superoxide dismutase (Mn and CuZn subunits), glutathione peroxidase (GSH-Pox) and malondialdehyde (MDA) concentration as a biochemical markers of bystander effect were monitored for a period of 72 h. The DNA damage was measured by the comet assay. Micronucleus induction, mitotic index and cellular death as apoptosis or necrosis were simultaneously estimated, based on morphologic criteria. The bystander effect of irradiated cells on their neighbours was observed as a slight increase of MDA concentration, comparable decrease of GSH-Pox activity, and some fluctuation of mitochondrial and cytoplasmic isoenzymes of SOD. DNA strand breaks and rejoining measured by comet assay as mean tail length, demonstrated clearly the bystander effect for nontraversed radiation cells, additionally verified by tail moment. There was also a significant increase of micronucleation and apoptosis generated by radiation traversed cells in shielded neighbours. Furthermore, significantly higher increase of necrosis in shielded neighbour cells compared to radiation traversed cells was observed. Proliferative activity showed a suppression in both, radiation traversed and shielded neighbour cells in all measured time points. The behaviour of used parameters points to the radical nature of modificators secreted by radiation traversed cells inducing bystander toxic damage in shielded neighbour cells.

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Year:  2004        PMID: 15331177     DOI: 10.1016/j.canlet.2004.03.046

Source DB:  PubMed          Journal:  Cancer Lett        ISSN: 0304-3835            Impact factor:   8.679


  4 in total

Review 1.  Profiles of Radioresistance Mechanisms in Prostate Cancer.

Authors:  Luksana Chaiswing; Heidi L Weiss; Rani D Jayswal; Daret K St Clair; Natasha Kyprianou
Journal:  Crit Rev Oncog       Date:  2018

Review 2.  Redox-modulated phenomena and radiation therapy: the central role of superoxide dismutases.

Authors:  Aaron K Holley; Lu Miao; Daret K St Clair; William H St Clair
Journal:  Antioxid Redox Signal       Date:  2014-02-14       Impact factor: 8.401

3.  Assessment of nitrosative stress and lipid peroxidation activity in asymptomatic exposures to medical radiation: The bystander effect of ionizing radiation.

Authors:  Marwan S M Al-Nimer; Nida H Ali
Journal:  Int J Appl Basic Med Res       Date:  2012-01

4.  A kinetic-based model of radiation-induced intercellular signalling.

Authors:  Stephen J McMahon; Karl T Butterworth; Colman Trainor; Conor K McGarry; Joe M O'Sullivan; Giuseppe Schettino; Alan R Hounsell; Kevin M Prise
Journal:  PLoS One       Date:  2013-01-22       Impact factor: 3.240

  4 in total

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