Profiling circRNA and miRNA of radiation-induced esophageal injury in a rat model
暂无分享,去创建一个
Changsong Zhang | Wenyu Zhu | F. An | Q. Zhan | Judong Luo | Changsheng Ma | Hua Jiang
[1] T. Grunt. Interacting Cancer Machineries: Cell Signaling, Lipid Metabolism, and Epigenetics , 2018, Trends in Endocrinology & Metabolism.
[2] Suyun Huang,et al. Novel Role of FBXW7 Circular RNA in Repressing Glioma Tumorigenesis , 2017, Journal of the National Cancer Institute.
[3] Lianqun Cui,et al. Circular RNA WDR77 target FGF-2 to regulate vascular smooth muscle cells proliferation and migration by sponging miR-124. , 2017, Biochemical and biophysical research communications.
[4] Z. Qian,et al. Circular RNA hsa_circ_000984 promotes colon cancer growth and metastasis by sponging miR-106b , 2017, Oncotarget.
[5] Yu-Jin Dong,et al. Circular RNA expression profiles reveal that hsa_circ_0018289 is up-regulated in cervical cancer and promotes the tumorigenesis , 2017, Oncotarget.
[6] Junxia Chen,et al. Circular RNA MYLK as a competing endogenous RNA promotes bladder cancer progression through modulating VEGFA/VEGFR2 signaling pathway. , 2017, Cancer letters.
[7] Bing Zhou,et al. A novel identified circular RNA, circRNA_010567, promotes myocardial fibrosis via suppressing miR-141 by targeting TGF-β1. , 2017, Biochemical and biophysical research communications.
[8] Cunshuan Xu,et al. Comprehensive CircRNA expression profile and selection of key CircRNAs during priming phase of rat liver regeneration , 2017, BMC Genomics.
[9] P. Bagos,et al. Emerging molecular networks common in ionizing radiation, immune and inflammatory responses by employing bioinformatics approaches. , 2015, Cancer letters.
[10] Li Yang,et al. Regulation of circRNA biogenesis , 2015, RNA biology.
[11] B. Leiby,et al. Treatment-related Acute Esophagitis For Patients With Locoregionally Advanced Non–Small Cell Lung Cancer Treated With Involved-field Radiotherapy and Concurrent Chemotherapy , 2014, American journal of clinical oncology.
[12] P. Xia,et al. Esophageal dose tolerance to hypofractionated stereotactic body radiation therapy: risk factors for late toxicity. , 2014, International journal of radiation oncology, biology, physics.
[13] Sarah Spiegel,et al. Sphingolipid metabolites in inflammatory disease , 2014, Nature.
[14] Baosheng Li,et al. Risk factors of radiation-induced acute esophagitis in non-small cell lung cancer patients treated with concomitant chemoradiotherapy , 2014, Radiation oncology.
[15] K. Beagley,et al. Ovarian steroid hormones: effects on immune responses and Chlamydia trachomatis infections of the female genital tract , 2013, Mucosal Immunology.
[16] P. Hall,et al. Risk of treatment-related esophageal cancer among breast cancer survivors. , 2012, Annals of oncology : official journal of the European Society for Medical Oncology.
[17] A. Rustgi,et al. Ionizing Radiation Enhances Esophageal Epithelial Cell Migration and Invasion Through a Paracrine Mechanism Involving Stromal-Derived Hepatocyte Growth Factor , 2012, Radiation research.
[18] P. Pandolfi,et al. A ceRNA Hypothesis: The Rosetta Stone of a Hidden RNA Language? , 2011, Cell.
[19] M. Bushell,et al. Translational regulation of gene expression during conditions of cell stress. , 2010, Molecular cell.
[20] James B. Mitchell,et al. Ionizing Radiation-Induced Oxidative Stress Alters miRNA Expression , 2009, PloS one.
[21] M. Gerstein,et al. RNA-Seq: a revolutionary tool for transcriptomics , 2009, Nature Reviews Genetics.
[22] J. Menéndez,et al. Fatty acid synthase and the lipogenic phenotype in cancer pathogenesis , 2007, Nature Reviews Cancer.
[23] Sambasivarao Damaraju,et al. Association of DNA Repair and Steroid Metabolism Gene Polymorphisms with Clinical Late Toxicity in Patients Treated with Conformal Radiotherapy for Prostate Cancer , 2006, Clinical Cancer Research.
[24] D. Goldenberg,et al. Sphingolipid targets in cancer therapy , 2006, Molecular Cancer Therapeutics.
[25] K. Hongo,et al. A case report and review of the literature , 2006, Journal of Neuro-Oncology.
[26] O. Kimura,et al. Radiation-induced esophageal cancer: A case report and a review of the literature , 2006, The Japanese journal of surgery.
[27] C. la Vecchia,et al. Increased risk of esophageal cancer after breast cancer. , 2005, Annals of oncology : official journal of the European Society for Medical Oncology.
[28] A. Neugut,et al. Increased risk of squamous cell esophageal cancer after adjuvant radiation therapy for primary breast cancer. , 2005, American journal of epidemiology.
[29] Y. Hannun,et al. The complex life of simple sphingolipids , 2004, EMBO reports.
[30] J. Kok,et al. Sphingolipid metabolism enzymes as targets for anticancer therapy. , 2004, Current drug targets.
[31] G. Luo,et al. Transcription factors activated in mammalian cells after clinically relevant doses of ionizing radiation , 2003, Oncogene.
[32] T. Burns,et al. Microarray Analysis of p53 Target Gene Expression Patterns in the Spleen and Thymus in Response to Ionizing Radiation , 2003, Cancer biology & therapy.
[33] W. Dröge. Free radicals in the physiological control of cell function. , 2002, Physiological reviews.
[34] J. Givel,et al. Esophageal cancer as second primary tumor after breast cancer radiotherapy. , 2001, American journal of surgery.
[35] D. Liggitt,et al. Modulation of Radiation-Induced Cytokine Elevation Associated with Esophagitis and Esophageal Stricture by Manganese Superoxide Dismutase-Plasmid/Liposome (SOD2-PL) Gene Therapy , 2001, Radiation research.
[36] N. Willich,et al. Radiation-induced esophageal carcinoma 30 years after mediastinal irradiation: case report and review of the literature. , 1999, Japanese journal of clinical oncology.
[37] C Johannes,et al. DNA double-strand breaks induced by sparsely ionizing radiation and endonucleases as critical lesions for cell death, chromosomal aberrations, mutations and oncogenic transformation. , 1992, Mutagenesis.
[38] P. Jacob,et al. Radiation-induced esophageal injury: a spectrum from esophagitis to cancer. , 1990, The American journal of gastroenterology.
[39] D. Hallahan,et al. Increased tumor necrosis factor alpha mRNA after cellular exposure to ionizing radiation. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[40] J. Hendry,et al. Radiobiology for the Radiologist , 1979, British Journal of Cancer.
[41] E. Hall,et al. Radiobiology for the radiologist , 1973 .