Literature DB >> 20153123

DNA repair alterations in children with pediatric malignancies: novel opportunities to identify patients at risk for high-grade toxicities.

Claudia E Rübe1, Andreas Fricke, Ruth Schneider, Karin Simon, Martin Kühne, Jochen Fleckenstein, Stefan Gräber, Norbert Graf, Christian Rübe.   

Abstract

PURPOSE: To evaluate, in a pilot study, the phosphorylated H2AXH2AX) foci approach for identifying patients with double-strand break (DSB) repair deficiencies, who may overreact to DNA-damaging cancer therapy. METHODS AND MATERIALS: The DSB repair capacity of children with solid cancers was analyzed compared with that of age-matched control children and correlated with treatment-related normal-tissue responses (n = 47). Double-strand break repair was investigated by counting γH2AX foci in blood lymphocytes at defined time points after irradiation of blood samples.
RESULTS: Whereas all healthy control children exhibited proficient DSB repair, 3 children with tumors revealed clearly impaired DSB repair capacities, and 2 of these repair-deficient children developed life-threatening or even lethal normal-tissue toxicities. The underlying mutations affecting regulatory factors involved in DNA repair pathways were identified. Moreover, significant differences in mean DSB repair capacity were observed between children with tumors and control children, suggesting that childhood cancer is based on genetic alterations affecting DSB repair function.
CONCLUSIONS: Double-strand break repair alteration in children may predispose to cancer formation and may affect children's susceptibility to normal-tissue toxicities. Phosphorylated H2AX analysis of blood samples allows one to detect DSB repair deficiencies and thus enables identification of children at risk for high-grade toxicities. 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20153123     DOI: 10.1016/j.ijrobp.2009.08.052

Source DB:  PubMed          Journal:  Int J Radiat Oncol Biol Phys        ISSN: 0360-3016            Impact factor:   7.038


  23 in total

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