Analysis of copy number variations induced by ultrashort electron beam radiation in human leukocytes in vitro
暂无分享,去创建一个
T. Liehr | R. Aroutiounian | B. Grigoryan | T. Harutyunyan | Ahmed Al-Rikabi | G. Hovhannisyan | A. Weise | A. Sargsyan
[1] S. Horvath,et al. Genetic and epigenetic changes in clonal descendants of irradiated human fibroblasts , 2018, Experimental cell research.
[2] I. P. Pinto,et al. Small de novo CNVs as biomarkers of parental exposure to low doses of ionizing radiation of caesium-137 , 2018, Scientific Reports.
[3] T. Shaikh. Copy Number Variation Disorders , 2017, Current Genetic Medicine Reports.
[4] G. Tsakanova,et al. Dose-rate effect of ultrashort electron beam radiation on DNA damage and repair in vitro , 2017, Journal of radiation research.
[5] J. Pajic,et al. Micronuclei as a marker for medical screening of subjects continuously occupationally exposed to low doses of ionizing radiation , 2017, Biomarkers : biochemical indicators of exposure, response, and susceptibility to chemicals.
[6] P. Nguyen,et al. DNA damage-associated biomarkers in studying individual sensitivity to low-dose radiation from cardiovascular imaging. , 2016, European heart journal.
[7] Daniele Panetta,et al. Radiobiological Effectiveness of Ultrashort Laser-Driven Electron Bunches: Micronucleus Frequency, Telomere Shortening and Cell Viability , 2016, Radiation Research.
[8] C. Richter,et al. Radiobiological influence of megavoltage electron pulses of ultra-high pulse dose rate on normal tissue cells , 2016, Radiation and environmental biophysics.
[9] Z. Zhang,et al. Copy number variations in spermatogenic failure patients with chromosomal abnormalities and unexplained azoospermia. , 2015, Genetics and molecular research : GMR.
[10] J. Dolling,et al. Chromosome Damage Caused by Accidental Chronic Whole-Body Gamma Radiation Exposure in Thailand , 2015, Dose-response : a publication of International Hormesis Society.
[11] Bradley P. Coe,et al. Global diversity, population stratification, and selection of human copy-number variation , 2015, Science.
[12] Q. Wang,et al. Effects of ionising radiation on micronucleus formation and chromosomal aberrations in Chinese radiation workers. , 2015, Radiation protection dosimetry.
[13] C. Richter,et al. Radiobiological response to ultra-short pulsed megavoltage electron beams of ultra-high pulse dose rate , 2015, International journal of radiation biology.
[14] T. Liehr,et al. Influence of aflatoxin B1 on copy number variants in human leukocytes in vitro , 2015, Molecular Cytogenetics.
[15] M. Hurles,et al. The genome-wide effects of ionizing radiation on mutation induction in the mammalian germline , 2015, Nature Communications.
[16] J. R. MacDonald,et al. A copy number variation map of the human genome , 2015, Nature Reviews Genetics.
[17] K. Satyamoorthy,et al. Copy number variations are progressively associated with the pathogenesis of colorectal cancer in ulcerative colitis. , 2015, World journal of gastroenterology.
[18] T. E. Wilson,et al. Copy number variants are produced in response to low‐dose ionizing radiation in cultured cells , 2014, Environmental and molecular mutagenesis.
[19] F. Fan,et al. Evaluation of the Comet Assay for Assessing the Dose-Response Relationship of DNA Damage Induced by Ionizing Radiation , 2013, International journal of molecular sciences.
[20] S. Hooker,et al. Developments in laser-driven plasma accelerators , 2013, Nature Photonics.
[21] D. Rujescu,et al. Copy number variations in neurodevelopmental disorders , 2012, Progress in Neurobiology.
[22] Wolfgang Enghardt,et al. Radiobiological effectiveness of laser accelerated electrons in comparison to electron beams from a conventional linear accelerator. , 2012, Journal of radiation research.
[23] J. Dunst,et al. Factors influencing heterogeneity of radiation-induced DNA-damage measured by the alkaline comet assay , 2012, Radiation oncology.
[24] T. E. Wilson,et al. Hydroxyurea induces de novo copy number variants in human cells , 2011, Proceedings of the National Academy of Sciences.
[25] H. Zitzelsberger,et al. DNA copy number alterations in radiation-induced thyroid cancer. , 2011, Clinical oncology (Royal College of Radiologists (Great Britain)).
[26] H. Scherthan,et al. Acute High-Dose X-Radiation-Induced Genomic Changes in A549 Cells , 2011, Radiation research.
[27] T. Liehr,et al. New cytogenetically visible copy number variant in region 8q21.2 , 2011, Molecular Cytogenetics.
[28] V Malka,et al. Exploring ultrashort high-energy electron-induced damage in human carcinoma cells , 2010, Cell Death and Disease.
[29] S. Bhatt,et al. The Human Genome Puzzle – the Role of Copy Number Variation in Somatic Mosaicism , 2010, Current genomics.
[30] E. Petretto,et al. Gene copy number variation and common human disease , 2010, Clinical genetics.
[31] Markus Löbrich,et al. γH2AX foci analysis for monitoring DNA double-strand break repair: Strengths, limitations and optimization , 2010, Cell cycle.
[32] Michael Fenech,et al. THE LYMPHOCYTE CYTOKINESIS-BLOCK MICRONUCLEUS CYTOME ASSAY AND ITS APPLICATION IN RADIATION BIODOSIMETRY , 2010, Health physics.
[33] M. Hurles,et al. Copy number variation in human health, disease, and evolution. , 2009, Annual review of genomics and human genetics.
[34] S. Warren,et al. Replication stress induces genome-wide copy number changes in human cells that resemble polymorphic and pathogenic variants. , 2009, American journal of human genetics.
[35] S. Bhatt,et al. Chromosome distribution in human sperm – a 3D multicolor banding-study , 2008, Molecular Cytogenetics.
[36] J. Tucker. Low-dose ionizing radiation and chromosome translocations: a review of the major considerations for human biological dosimetry. , 2008, Mutation research.
[37] J. Schwartz,et al. DNA Copy-Number Instability in Low-Dose Gamma-Irradiated TK6 Lymphoblastoid Clones , 2008, Radiation research.
[38] K. Mrasek,et al. Parental-origin-determination fluorescence in situ hybridization distinguishes homologous human chromosomes on a single-cell level. , 2008, International journal of molecular medicine.
[39] Fernando A. Villanea,et al. Diet and the evolution of human amylase gene copy number variation , 2007, Nature Genetics.
[40] Y. Chung,et al. DNA copy number alterations and expression of relevant genes in mouse thymic lymphomas induced by gamma-irradiation and N-methyl-N-nitrosourea. , 2006, Cancer genetics and cytogenetics.
[41] V Malka,et al. Laser–plasma accelerator: status and perspectives , 2006, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[42] Victor Malka,et al. Laser-plasma accelerators: a new tool for science and for society , 2005 .
[43] T. Donlon,et al. Metaphase Chromosome Preparation from Cultured Peripheral Blood Cells , 2005, Current protocols in human genetics.
[44] I. Buraczewska,et al. The radiation sensitivity of human chromosomes 2, 8 and 14 in peripheral blood lymphocytes of seven donors , 2005, International journal of radiation biology.
[45] Y. Glinec,et al. A laser–plasma accelerator producing monoenergetic electron beams , 2004, Nature.
[46] David J Brenner,et al. Past exposure to densely ionizing radiation leaves a unique permanent signature in the genome. , 2003, American journal of human genetics.
[47] A. Rapp,et al. UV-A breakage sensitivity of human chromosomes as measured by COMET-FISH depends on gene density and not on the chromosome size. , 2000, Journal of photochemistry and photobiology. B, Biology.
[48] J. Surrallés,et al. Chromosomes with high gene density are preferentially repaired in human cells. , 1997, Mutagenesis.
[49] R. Tice,et al. The single cell gel electrophoresis/comet assay: a potential tool for detecting radiation-induced DNA damage in humans. , 1995, Stem cells.
[50] I. Iourov. Quantitative Fluorescence In Situ Hybridization (QFISH). , 2017, Methods in molecular biology.
[51] Michael Fenech,et al. The micronucleus assay as a biological dosimeter of in vivo ionising radiation exposure. , 2011, Mutagenesis.
[52] S. Scherer,et al. Guide to the human genome , 2010 .
[53] P. Olive,et al. Impact of the comet assay in radiobiology. , 2009, Mutation research.
[54] Y. Chung,et al. DNA copy number alterations and expression of relevant genes in mouse thymic lymphomas induced by gamma-irradiation and N-methyl-N-nitrosourea. , 2006, Cancer genetics and cytogenetics.
[55] P. Olive,et al. DNA damage and repair in individual cells: applications of the comet assay in radiobiology. , 1999, International journal of radiation biology.
[56] J. Barquinero,et al. Relationship between the DNA content of human chromosomes and their involvement in radiation-induced structural aberrations, analysed by painting. , 1998, International journal of radiation biology.