Literature DB >> 28588010

Micronuclei Frequency in Tumors Is a Predictive Biomarker for Genetic Instability and Sensitivity to the DNA Repair Inhibitor AsiDNA.

Wael Jdey1,2,3, Sylvain Thierry1,2, Tatiana Popova4, Marc-Henri Stern4, Marie Dutreix5,2.   

Abstract

Therapeutic strategies targeting DNA repair pathway defects have been widely explored, but often only benefit small numbers of patients. Here we characterized potential predictive biomarkers for treatment with AsiDNA, a novel first-in-class DNA repair inhibitor. We evaluated genetic instability and DNA repair defects by direct and indirect assays in 12 breast cancer cell lines to estimate the spontaneous occurrence of single-strand and double-strand breaks (DSB). For each cell line, we monitored constitutive PARP activation, spontaneous DNA damage by alkaline comet assay, basal micronuclei levels, the number of large-scale chromosomal rearrangements (LST), and the status of several DNA repair pathways by transcriptome and genome analysis. Sensitivity to AsiDNA was associated with a high spontaneous frequency of cells with micronuclei and LST and specific alterations in DNA repair pathways that essentially monitor DSB repair defects. A high basal level of micronuclei as a predictive biomarker for AsiDNA treatment was validated in 43 tumor cell lines from various tissues and 15 models of cell- and patient-derived xenografts. Micronuclei quantification was also possible in patient biopsies. Overall, this study identified genetic instability as a predictive biomarker for sensitivity to AsiDNA treatment. That micronuclei frequency can be measured in biopsies and does not reveal the same genetic instability as conventional genome assays opens new perspectives for refining the classification of tumors with genetic instability. Cancer Res; 77(16); 4207-16. ©2017 AACR. ©2017 American Association for Cancer Research.

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Year:  2017        PMID: 28588010     DOI: 10.1158/0008-5472.CAN-16-2693

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  9 in total

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Review 2.  Phagocytosis checkpoints as new targets for cancer immunotherapy.

Authors:  Mingye Feng; Wen Jiang; Betty Y S Kim; Cheng Cheng Zhang; Yang-Xin Fu; Irving L Weissman
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4.  Doxorubicin treatment modulates chemoresistance and affects the cell cycle in two canine mammary tumour cell lines.

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5.  Mitigation of Iron Irradiation-Induced Genotoxicity and Genomic Instability by Postexposure Dietary Restriction in Mice.

Authors:  Bing Wang; Takanori Katsube; Kaoru Tanaka; Masahiro Murakami; Mitsuru Nenoi
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6.  An anaphase surveillance mechanism prevents micronuclei formation from frequent chromosome segregation errors.

Authors:  Bernardo Orr; Filipe De Sousa; Ana Margarida Gomes; Olga Afonso; Luísa T Ferreira; Ana C Figueiredo; Helder Maiato
Journal:  Cell Rep       Date:  2021-11-09       Impact factor: 9.423

7.  Extracellular Acidification Induces Lysosomal Dysregulation.

Authors:  Bryce Ordway; Robert J Gillies; Mehdi Damaghi
Journal:  Cells       Date:  2021-05-13       Impact factor: 6.600

8.  Preclinical Studies Comparing Efficacy and Toxicity of DNA Repair Inhibitors, Olaparib, and AsiDNA, in the Treatment of Carboplatin-Resistant Tumors.

Authors:  Nirmitha I Herath; Nathalie Berthault; Sylvain Thierry; Wael Jdey; Marie-Christine Lienafa; Françoise Bono; Patricia Noguiez-Hellin; Jian-Sheng Sun; Marie Dutreix
Journal:  Front Oncol       Date:  2019-11-12       Impact factor: 6.244

9.  Nuclear Isoforms of Neurofibromin Are Required for Proper Spindle Organization and Chromosome Segregation.

Authors:  Charoula Peta; Emmanouella Tsirimonaki; Dimitris Samouil; Kyriaki Georgiadou; Dimitra Mangoura
Journal:  Cells       Date:  2020-10-23       Impact factor: 6.600

  9 in total

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