1. Broad targeting of angiogenesis for cancer prevention and therapy.
    Mark M. Fuster et al, 2015, Semin. Cancer Biol. CrossRef
  2. Case-control study of the PERIOD3 clock gene length polymorphism and colorectal adenoma formation
    Melannie Alexander et al, 2014, Oncol Rep CrossRef
  3. Case-control study of candidate gene methylation and adenomatous polyp formation
    M. Alexander et al, 2017, Int J Colorectal Dis CrossRef
  4. Circadian Rhythm Connections to Oxidative Stress: Implications for Human Health
    Melissa Wilking et al, 2013, Antioxidants & Redox Signaling CrossRef
  5. Clock Gene Expression Levels and Relationship With Clinical and Pathological Features in Colorectal Cancer Patients
    G. Mazzoccoli et al, 2011, Chronobiology International CrossRef
  6. Disruption of clock gene expression in human colorectal liver metastases
    Sander A. Huisman et al, 2016, Tumor Biol. CrossRef
  7. Enhancing circadian clock function in cancer cells inhibits tumor growth
    Silke Kiessling et al, 2017, BMC Biol CrossRef
  8. Hypoxia disrupts the expression levels of circadian rhythm genes in hepatocellular carcinoma
    Chao Yu et al, 2015, Mol Med Report CrossRef
  9. Circadian systems biology in Metazoa
    L.-L. Lin et al, 2015, Briefings in Bioinformatics CrossRef
  10. Association of the clock genes polymorphisms with colorectal cancer susceptibility
    Theodoros Karantanos et al, 2013, J. Surg. Oncol. CrossRef
  11. Expression of core clock genes in colorectal tumour cells compared with normal mucosa: a systematic review of clinical trials
    S. Fonnes et al, 2015, Colorectal Dis CrossRef
  12. Functional polymorphisms in theNPAS2gene are associated with overall survival in transcatheter arterial chemoembolization-treated hepatocellular carcinoma patients
    Peng Yuan et al, 2014, Cancer Sci CrossRef
  13. Circadian clock disruptions and the risk of cancer
    Tuuli Lahti et al, 2012, Annals of Medicine CrossRef
  14. Circadian rhythms in liver physiology and liver diseases.
    Xin Tong et al, 2013 CrossRef
  15. Effects of SNPs in the positioning regions of RNA polymerase II on the TBP/promoter affinity in genes of the human circadian clock
    O. A. Podkolodnaya et al, 2016, Russ J Genet Appl Res CrossRef
  16. Watching the clock: endoplasmic reticulum-mediated control of circadian rhythms in cancer
    Olivier Pluquet et al, 2014, Annals of Medicine CrossRef
  17. The Circadian Control of Skin and Cutaneous Photodamage†
    Joshua A. Desotelle et al, 2012 CrossRef
  18. Mammalian PER2 regulates AKT activation and DNA damage response.
    Xiaoming Yang et al, 2012, Biochem. Cell Biol. CrossRef
  19. Expression of circadian clock genes and proteins in urothelial cancer is related to cancer-associated genes
    Jorunn Litlekalsoy et al, 2016, BMC Cancer CrossRef
  20. Circadian properties of cancer stem cells in glioma cell cultures and tumorspheres
    Vishal Premdev Sharma et al, 2014, Cancer Letters CrossRef
  21. Clock Genes and Cancer
    Silke Kiessling et al, 2017 CrossRef
  22. Functional polymorphisms of circadian negative feedback regulation genes are associated with clinical outcome in hepatocellular carcinoma patients receiving radical resection
    Zhaohui Zhang et al, 2014, Med Oncol CrossRef
  23. Cryptochrome 1 Overexpression Correlates with Tumor Progression and Poor Prognosis in Patients with Colorectal Cancer
    Hongyan Yu et al, 2013, PLoS ONE CrossRef
  24. Circadian Clock, Cell Division, and Cancer: From Molecules to Organism
    Anton Shostak, 2017, IJMS CrossRef
  25. Circadian Gene Expression and Clinicopathologic Correlates in Pancreatic Cancer
    Daniel Relles et al, 2013, J Gastrointest Surg CrossRef
  26. Circadian gene hClock enhances proliferation and inhibits apoptosis of human colorectal carcinoma cells in�vitro and in�vivo
    Yaping Wang et al, 2015, Mol Med Report CrossRef
  27. Genetic Association Between PER3 Genetic Polymorphisms and Cancer Susceptibility
    Peiliang Geng et al, 2015, Medicine CrossRef
  28. Mutual Antagonism between Circadian Protein Period 2 and Hepatitis C Virus Replication in Hepatocytes
    Giorgia Benegiamo et al, 2013, PLoS ONE CrossRef
  29. Running for time: circadian rhythms and melanoma
    Elitza P. Markova-Car et al, 2014, Tumor Biol. CrossRef
  30. A functional polymorphism in PER3 gene is associated with prognosis in hepatocellular carcinoma.
    Binyu Zhao et al, 2012, Liver Int. CrossRef
  31. Ras-Mediated Deregulation of the Circadian Clock in Cancer
    Angela Relógio et al, 2014, PLoS Genet CrossRef
  32. The circadian clock geneBMAL1is a novel therapeutic target for malignant pleural mesothelioma
    Momen Elshazley et al, 2012, Int. J. Cancer CrossRef
  33. Deregulation of the circadian clock constitutes a significant factor in tumorigenesis: a clockwork cancer. Part II.In vivostudies
    Kristin Uth et al, 2014, Biotechnology & Biotechnological Equipment CrossRef
  34. hClock gene expression in human colorectal carcinoma
    LIYING WANG et al, 2013 CrossRef
  35. Upregulation of circadian gene 'hClock' contribution to metastasis of colorectal cancer
    Yaping Wang et al, 2017 CrossRef
  36. Residential road traffic noise exposure and colorectal cancer survival – A Danish cohort study
    Nina Roswall et al, 2017, PLoS ONE CrossRef
  37. The tumor circadian clock: a new target for cancer therapy?
    Silke Kiessling et al, 2017, Future Oncol CrossRef
  38. Prognostic significance of downregulated BMAL1 and upregulated Ki-67 proteins in nasopharyngeal carcinoma
    Q.Y He et al, 2017, Chronobiology International CrossRef
  39. Sleep Duration and Risk of Liver Cancer in Postmenopausal Women: The Women's Health Initiative Study
    Kathryn E. Royse et al, 2017, Journal of Women's Health CrossRef
  40. Expression of clock genes in patients with colorectal cancer.
    Theodoros Karantanos et al, 2013, Int. J. Biol. Markers CrossRef
  41. Sex-dependent correlation between survival and expression of genes related to the circadian oscillator in patients with colorectal cancer
    Kristina Hasakova et al, 2018, Chronobiology International CrossRef
  42. Clinicopathologic Features and Treatment Outcomes in Patients with Stage I, High-Risk Histology or High-Grade Endometrial Cancer after Primary Staging Surgery: A Taiwanese Gynecologic Oncology Group Study
    Ming-Shyen Yen et al, 2018, JCM CrossRef
  43. Knock-down the clock gene can lead to colon carcinoma CT26 cell proliferation arrest through p53-dependent pathway and c-myc gene
    Bo Peng et al, 2018, Biological Rhythm Research CrossRef
  44. The tumour suppressing role of the circadian clock
    Kate Davis et al, 2019, IUBMB Life CrossRef
  45. Expression of Circadian Clock Genes in Human Colorectal Cancer Tissues Using Droplet Digital PCR
    Tugba Orhan et al, 2019, Cancer Investigation CrossRef
  46. The correlation between PER3 rs2640908 polymorphism and colorectal Cancer in the Japanese population
    null Holipah et al, 2019, Appl Cancer Res CrossRef
  47. Cancer Chronotherapeutics: Experimental, Theoretical, and Clinical Aspects
    E. Ortiz-Tudela et al, 2013 CrossRef
  48. Circadian (De)regulation in Head and Neck Squamous Cell Carcinoma
    Sadia Rahman et al, 2019, IJMS CrossRef
  49. Oxysterols and Gastrointestinal Cancers Around the Clock
    Urša Kovač et al, 2019, Front. Endocrinol. CrossRef
  50. The Cancer Clock Is (Not) Ticking: Links between Circadian Rhythms and Cancer
    Monica N. Morgan et al, 2019, Clocks & Sleep CrossRef
  51. Association Between Three Polymorphisms in BMAL1 Genes and Risk of Lung Cancer in a Northeast Chinese Population
    Fangjiang Liu et al, 2019, DNA and Cell Biology CrossRef
  52. Time after time: circadian clock regulation of intestinal stem cells
    Kathyani Parasram et al, 2019, Cell. Mol. Life Sci. CrossRef
  53. The circadian clock regulates cisplatin-induced toxicity and tumor regression in melanoma mouse and human models
    Panshak P. Dakup et al, 2018, Oncotarget CrossRef
  54. Chronic circadian disruption modulates breast cancer stemness and immune microenvironment to drive metastasis in mice
    Eva Hadadi et al, 2020, Nat Commun CrossRef
  55. Circadian clock and oral cancer (Review)
    Minou Nirvani et al, 2017, mol clin onc CrossRef
  56. Period Family of Clock Genes as Novel Predictors of Survival in Human Cancer: A Systematic Review and Meta-Analysis
    Fan Deng et al, 2020, Disease Markers CrossRef
  57. BMAL1 knockdown triggers different colon carcinoma cell fates by altering the delicate equilibrium between AKT/mTOR and P53/P21 pathways
    Yuan Zhang et al, 2020, Aging CrossRef
  58. Time‐dependent changes in proliferation, DNA damage and clock gene expression in hepatocellular carcinoma and healthy liver of a transgenic mouse model
    Soha A. Hassan et al, 2020, Int. J. Cancer CrossRef
  59. Metabolic rivalry: circadian homeostasis and tumorigenesis
    Kenichiro Kinouchi et al, 2020, Nat Rev Cancer CrossRef
  60. Highlighting the Potential for Chronic Stress to Minimize Therapeutic Responses to Radiotherapy through Increased Immunosuppression and Radiation Resistance
    Minhui Chen et al, 2020, Cancers CrossRef
  61. miR-6883 Family miRNAs Target CDK4/6 to Induce G1 Phase Cell-Cycle Arrest in Colon Cancer Cells
    Amriti R. Lulla et al, 2017, Cancer Res CrossRef
  62. Overexpression of the Circadian Clock Gene Bmal1 Increases Sensitivity to Oxaliplatin in Colorectal Cancer
    Zhao-lei Zeng et al, 2014, Clin Cancer Res CrossRef
  63. BMAL1 Knockdown Leans Epithelial–Mesenchymal Balance toward Epithelial Properties and Decreases the Chemoresistance of Colon Carcinoma Cells
    Yuan Zhang et al, 2021, IJMS CrossRef
  64. The role of circadian genes in the pathogenesis of colorectal cancer
    Saiedeh Razi Soofiyani et al, 2021, Gene CrossRef
  65. Prognostic relevance of melanoma antigen D1 expression in colorectal carcinoma
    Zhao-lei Zeng et al, 2012, J Transl Med CrossRef
  66. Does timing matter in radiotherapy of hepatocellular carcinoma? An experimental study in mice
    Soha A. Hassan et al, 2021, Cancer Med CrossRef
  67. BMAL1 induces colorectal cancer metastasis by stimulating exosome secretion.
    Pengjuan Dong et al, 2022, Mol Biol Rep CrossRef
  68. Spotlight on Circadian Genes and Colorectal Cancer Crosstalk
    Senthilkumar Rajendran et al, 2021, EMIDDT CrossRef
  69. Clock genes and gastric cancer
    Shuaishuai Cui et al, 2022, Biological Rhythm Research CrossRef
  70. Circadian Clock Genes Are Correlated with Prognosis and Immune Cell Infiltration in Colon Adenocarcinoma
    Aoxiao He et al, 2022, Computational and Mathematical Methods in Medicine CrossRef
  71. Current World Literature
    , 2012 CrossRef
  72. Core-Clock Genes Regulate Proliferation and Invasion via a Reciprocal Interplay with MACC1 in Colorectal Cancer Cells
    Alireza Basti et al, 2022, Cancers CrossRef
  73. BMAL1 promotes colorectal cancer cell migration and invasion through ERK‐ and JNK‐dependent c‐Myc expression
    Lina Shan et al, 2022, Cancer Medicine CrossRef
  74. Sleep disturbance and gastrointestinal cancer risk: a literature review
    Parnia Kamyab et al, 2023, Journal of Investigative Medicine CrossRef
  75. Circadian clocks in health and disease: Dissecting the roles of the biological pacemaker in cancer
    Bridget M. Fortin et al, 2023, F1000Res CrossRef
  76. “TIME” FOR OBESITY-RELATED CANCER: THE ROLE OF THE CIRCADIAN RHYTHM IN CANCER PATHOGENESIS AND TREATMENT
    Caterina Miro et al, 2023, Seminars in Cancer Biology CrossRef
  77. Identification of potential circadian genes and associated pathways in colorectal cancer progression and prognosis using microarray gene expression analysis
    Sri Hari S. et al, 2023 CrossRef
  78. Circadian clocks in health and disease: Dissecting the roles of the biological pacemaker in cancer
    Bridget M. Fortin et al, 2023, F1000Res CrossRef
  79. The role of circadian clock genes in colorectal carcinoma: Novel insights into regulatory mechanism and implications in clinical therapy
    Haodong Zhu et al, 2023, Life Sciences CrossRef
  80. Regulation of hepatocyte phospholipid peroxidation signaling by a Chinese patent medicine against psychological stress-induced liver injury
    Qing-Qing Zhou et al, 2024, Phytomedicine CrossRef
  81. Circadian regulation of cancer stem cells and the tumor microenvironment during metastasis.
    Yu Wang et al, 2024, Nat Cancer CrossRef
  82. Disruption of the intestinal clock drives dysbiosis and impaired barrier function in colorectal cancer
    Rachel C. Fellows et al, 2024, Sci. Adv. CrossRef