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Hauptmann, M.* et al.: Differential response and priming dose effect on the proteome of human fibroblast and stem cells induced by exposure to low doses of ionizing radiation. Radiat. Res. 185, 299-312 (2016)
Kaiser, J.C. et al.: Integration of a radiation biomarker into modelling of thyroid carcinogenesis and post-Chernobyl risk assessment. Carcinogenesis 37, 1152-1160 (2016)
Maresch, R.* et al.: Multiplexed pancreatic genome engineering and cancer induction by transfection-based CRISPR/Cas9 delivery in mice. Nat. Commun. 7:10770 (2016)
Michna, A. et al.: Transcriptomic analyses of the radiation response in head and neck squamous cell carcinoma subclones with different radiation sensitivity: Time-course gene expression profiles and gene association networks. Radiat. Oncol. 11:94 (2016)
Michna, A. et al.: Natural cubic spline regression modeling followed by dynamic network reconstruction for the identification of radiation-sensitivity gene association networks from time-course transcriptome data. PLoS ONE 11:e0160791 (2016)
Niyazi, M. et al.: A 4-miRNA signature predicts the therapeutic outcome of glioblastoma. Oncotarget 7, 45764-45775 (2016)
Penterling, C.* et al.: Depletion of histone demethylase Jarid1A resulting in histone hyperacetylation and radiation sensitivity does not affect DNA double-strand break repair. PLoS ONE 11:e0156599 (2016)
Abend, M.* et al.: Association of radiation-induced genes with noncancer chronic diseases in Mayak workers occupationally exposed to prolonged radiation. Radiat. Res. 183, 249-261 (2015)
Babini, G.* et al.: Mechanisms of the induction of apoptosis mediated by radiation-induced cytokine release. Radiat. Prot. Dosim. 166, 165-169 (2015)
Braselmann, H. ; Michna, A. ; Hess, J. & Unger, K.: CFAssay: Statistical analysis of the colony formation assay. Radiat. Oncol. 10:223 (2015)
Eke, I.* et al.: Simultaneous β1 integrin-EGFR targeting and radiosensitization of human head and neck cancer. J. Natl. Cancer Inst. 107:dju419 (2015)
Finkin, S.* et al.: Ectopic lymphoid structures function as microniches for tumor progenitor cells in hepatocellular carcinoma. Nat. Immunol. 16, 1235-1244 (2015)
Gimenez-Aznar, I. et al.: Fanconi anemia, complementation group A (FancA) overexpression confers radioresistance to oral keratinocytes. Eur. J. Cancer 51, S121 (2015)
Groß, C.* et al.: Model matters: Differences in orthotopic rat hepatocellular carcinoma physiology determine therapy response to sorafenib. Clin. Cancer Res. 21, 4440-4450 (2015)
Hess, J. et al.: Signalling networks associated with FancA mediated radioresistance in cells of head and neck squamous cell carcinoma. Strahlenther. Onkol. 191, S77 (2015)
Klein, D.* et al.: Therapy with multipotent mesenchymal stromal cells protects lungs from radiation-induced injury and reduces the risk of lung metastasis. Antioxid. Redox Signal. 24, 53-69 (2015)
Kuger, S. et al.: The influence of FancA overexpression on radioresistance in oral keratinocytes and HNSCC cells. Strahlenther. Onkol. 191, S90 (2015)
Mu, X.* et al.: Hepatocellular carcinoma originates from hepatocytes and not from the progenitor/biliary compartment. J. Clin. Invest. 125, 3891-3903 (2015)
Orth, M.* ; Unger, K. ; Belka, C.* & Lauber, K.*: Paclitaxel-mediated radiosensitization is based on aneuploidization and depends on high expression levels of Aurora A kinase and TPX2. Strahlenther. Onkol. 191, S81 (2015)
Penterling, C.* ; Wilke, C. ; Unger, K. & Friedl, A.A.: Analysis of radiation-induced transcriptome alterations in a p53-compromised cell line. Strahlenther. Onkol. 191, S76 (2015)