Literature DB >> 15876151

Radiation-induced senescence-like terminal growth arrest in thyroid cells.

Alexei Podtcheko1, Hiroyuki Namba, Vladimir Saenko, Akira Ohtsuru, Dmitriy Starenki, Serik Meirmanov, Iryna Polona, Tatiana Rogounovitch, Shunichi Yamashita.   

Abstract

Premature senescence may play an important role as an acute, drug-, or ionizing radiation (IR)-inducible growth arrest program along with interphase apoptosis and mitotic catastrophe. The aim of the study was to evaluate whether IR can induce senescence-like phenotype (SLP) associated with terminal growth arrest in the thyroid cells, and if so, to evaluate impact of terminal growth arrest associated with SLP in intrinsic radiosensitivity of various thyroid carcinomas. The induction of SLP in thyroid cells were identified by: (1) senescence associated beta-galactosidase (SA-beta-Gal) staining method, (2) dual-flow cytometric analysis of cell proliferation and side light scatter using vital staining with PKH-2 fluorescent dye, (3) double labeling for 5-bromodeoxyuridine and SA- beta-Gal, (4) Staining for SA-beta-Gal with consequent antithyroglobulin immunohistochemistry. IR induced SLP associated with terminal growth arrest in four thyroid cancer cells lines and in primary thyrocytes in time- and dose-dependent manner. Analysis of relationship between induction of SLP and radiosensitivity revealed a trend in which more radioresistant cell lines strongly tended to show lower specific SLP yields (r = -0.93, p = 0.068). We find out that SA-beta-Gal staining is detectable in irradiated ARO xenotransplants, but not in control tumors. We, therefore, conclude that induction of SLP with terminal growth arrest contribute to the elimination of clonogenic populations after IR.

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Year:  2005        PMID: 15876151     DOI: 10.1089/thy.2005.15.306

Source DB:  PubMed          Journal:  Thyroid        ISSN: 1050-7256            Impact factor:   6.568


  4 in total

1.  Ionizing radiation induces cellular senescence of articular chondrocytes via negative regulation of SIRT1 by p38 kinase.

Authors:  Eun-Hee Hong; Su-Jae Lee; Jae-Sung Kim; Kee-Ho Lee; Hong-Duck Um; Jae-Hong Kim; Song-Ja Kim; Jong-Il Kim; Sang-Gu Hwang
Journal:  J Biol Chem       Date:  2009-11-03       Impact factor: 5.157

Review 2.  Cellular Senescence in the Treatment of Ovarian Cancer.

Authors:  Zehua Wang; Haiou Liu; Congjian Xu
Journal:  Int J Gynecol Cancer       Date:  2018-06       Impact factor: 3.437

Review 3.  Radiation signatures in childhood thyroid cancers after the Chernobyl accident: possible roles of radiation in carcinogenesis.

Authors:  Keiji Suzuki; Norisato Mitsutake; Vladimir Saenko; Shunichi Yamashita
Journal:  Cancer Sci       Date:  2015-01-16       Impact factor: 6.716

4.  Tumor Cell-Accelerated Senescence Is Associated With DNA-PKcs Status and Telomere Dysfunction Induced by Radiation.

Authors:  Miaomiao Zhang; Xiaopeng Guo; Yue Gao; Dong Lu; Wenjian Li
Journal:  Dose Response       Date:  2018-04-23       Impact factor: 2.658

  4 in total

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