Breast cancer and circadian disruption from electric lighting in the modern world
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[1] Charles K. Bowen,et al. Solid-state lighting for the International Space Station: Tests of visual performance and melatonin regulation , 2013 .
[2] A. Brooks-Wilson,et al. Shift work, circadian gene variants and risk of breast cancer. , 2013, Cancer epidemiology.
[3] R. Stevens,et al. Shiftwork and prostate-specific antigen in the National Health and Nutrition Examination Survey. , 2013, Journal of the National Cancer Institute.
[4] G. Brainard,et al. Adverse health effects of nighttime lighting: comments on American Medical Association policy statement. , 2013, American journal of preventive medicine.
[5] Evan D. Chinoy,et al. Entrainment of the Human Circadian Clock to the Natural Light-Dark Cycle , 2013, Current Biology.
[6] E. Haus,et al. Shift work and cancer risk: potential mechanistic roles of circadian disruption, light at night, and sleep deprivation. , 2013, Sleep medicine reviews.
[7] J. Spinelli,et al. Increased risk of breast cancer associated with long-term shift work in Canada , 2013, Occupational and Environmental Medicine.
[8] Jwo-Huei Jou,et al. Candle Light‐Style Organic Light‐Emitting Diodes , 2013 .
[9] Mingjie Zhu,et al. Does night work increase the risk of breast cancer? A systematic review and meta-analysis of epidemiological studies. , 2013, Cancer epidemiology.
[10] Jennifer R. Rider,et al. Sleep Disruption Among Older Men and Risk of Prostate Cancer , 2013, Cancer Epidemiology, Biomarkers and Prevention.
[11] Sara E. Wagner,et al. A case-referent study: light at night and breast cancer risk in Georgia , 2013, International Journal of Health Geographics.
[12] P. Bhatti,et al. Night Shift Work and Levels of 6-Sulfatoxymelatonin and Cortisol in Men , 2013, Cancer Epidemiology, Biomarkers & Prevention.
[13] T. Åkerstedt,et al. Breast cancer among shift workers: results of the WOLF longitudinal cohort study. , 2013, Scandinavian journal of work, environment & health.
[14] P. Bhatti,et al. Racial differences in the association between night shift work and melatonin levels among women. , 2013, American journal of epidemiology.
[15] C. Möller-Levet,et al. Effects of insufficient sleep on circadian rhythmicity and expression amplitude of the human blood transcriptome , 2013, Proceedings of the National Academy of Sciences.
[16] P. Guénel,et al. Night work and breast cancer: A population‐based case–control study in France (the CECILE study) , 2013, International journal of cancer.
[17] L. Fritschi,et al. Self-reported sleep duration, sleep quality, and breast cancer risk in a population-based case-control study. , 2013, American journal of epidemiology.
[18] R. Stevens. Invited commentary: validity of case-control studies of sleep duration and breast cancer. , 2013, American journal of epidemiology.
[19] Dongfeng Zhang,et al. Physical activity and risk of breast cancer: a meta-analysis of prospective studies , 2013, Breast Cancer Research and Treatment.
[20] P. Kraft,et al. Circadian genes and breast cancer susceptibility in rotating shift workers , 2012, International journal of cancer.
[21] C. Mathers,et al. Global burden of cancer in 2008: a systematic analysis of disability-adjusted life-years in 12 world regions , 2012, The Lancet.
[22] A. Sancar,et al. Effect of circadian clock mutations on DNA damage response in mammalian cells , 2012, Cell cycle.
[23] R. Stevens,et al. Case-control study of shift-work and breast cancer risk in Danish nurses: impact of shift systems. , 2012, European journal of cancer.
[24] D. Greenwood,et al. Fruits, vegetables and breast cancer risk: a systematic review and meta-analysis of prospective studies , 2012, Breast Cancer Research and Treatment.
[25] Johnni Hansen,et al. Nested case–control study of night shift work and breast cancer risk among women in the Danish military , 2012, Occupational and Environmental Medicine.
[26] S. Shea,et al. Adverse Metabolic Consequences in Humans of Prolonged Sleep Restriction Combined with Circadian Disruption , 2012, Science Translational Medicine.
[27] Sarah L Chellappa,et al. Human melatonin and alerting response to blue-enriched light depend on a polymorphism in the clock gene PER3. , 2012, The Journal of clinical endocrinology and metabolism.
[28] R. Stevens. Does Electric Light Stimulate Cancer Development in Children? , 2012, Cancer Epidemiology, Biomarkers and Prevention.
[29] Derk-Jan Dijk,et al. Sleep, Diurnal Preference, Health, and Psychological Well-being: A Prospective Single-Allelic-Variation Study , 2012, Chronobiology international.
[30] Frank Z. Stanczyk,et al. Night Shift Work and Hormone Levels in Women , 2012, Cancer Epidemiology, Biomarkers & Prevention.
[31] H. Okamura,et al. Circadian clock signals in the adrenal cortex , 2012, Molecular and Cellular Endocrinology.
[32] U. Vogel,et al. Epigenetic Impact of Long-Term Shiftwork: Pilot Evidence From Circadian Genes and Whole-Genome Methylation Analysis , 2011, Chronobiology international.
[33] Samer Hattar,et al. Intrinsically photosensitive retinal ganglion cells: many subtypes, diverse functions , 2011, Trends in Neurosciences.
[34] Lin Yuan,et al. Circadian regulation of molecular, dietary, and metabolic signaling mechanisms of human breast cancer growth by the nocturnal melatonin signal and the consequences of its disruption by light at night , 2011, Journal of pineal research.
[35] Harriet Richardson,et al. The Influence of Light at Night Exposure on Melatonin Levels among Canadian Rotating Shift Nurses , 2011, Cancer Epidemiology, Biomarkers & Prevention.
[36] Richard G. Stevens,et al. Testing the Light-at-Night (LAN) Theory for Breast Cancer Causation , 2011, Chronobiology international.
[37] Nick Walker,et al. Sleep, Health and Society. From Aetiology to Public Health , 2011 .
[38] A. Wirz-Justice,et al. Evening exposure to a light-emitting diodes (LED)-backlit computer screen affects circadian physiology and cognitive performance. , 2011, Journal of applied physiology.
[39] I. Provencio. The hidden organ in your eyes. , 2011, Scientific American.
[40] Jinghai Wu,et al. Light at night activates IGF-1R/PDK1 signaling and accelerates tumor growth in human breast cancer xenografts. , 2011, Cancer research.
[41] T. Badea,et al. RESEARCH ARTICLE Open Access Development of melanopsin-based irradiance detecting circuitry , 2022 .
[42] F. Scheer,et al. The human circadian system adapts to prior photic history , 2011, The Journal of physiology.
[43] Charles K. Bowen,et al. Blue light from light-emitting diodes elicits a dose-dependent suppression of melatonin in humans. , 2011, Journal of applied physiology.
[44] C. Czeisler,et al. Exposure to room light before bedtime suppresses melatonin onset and shortens melatonin duration in humans. , 2011, The Journal of clinical endocrinology and metabolism.
[45] C. Mathers,et al. Estimates of worldwide burden of cancer in 2008: GLOBOCAN 2008 , 2010, International journal of cancer.
[46] S. Golden,et al. Simplicity and complexity in the cyanobacterial circadian clock mechanism. , 2010, Current opinion in genetics & development.
[47] P. Sassone-Corsi,et al. Mammalian circadian clock and metabolism – the epigenetic link , 2010, Journal of Cell Science.
[48] Monique H W Frings-Dresen,et al. Considerations of circadian impact for defining ‘shift work’ in cancer studies: IARC Working Group Report , 2010, Occupational and Environmental Medicine.
[49] I. Kloog,et al. Nighttime light level co-distributes with breast cancer incidence worldwide , 2010, Cancer Causes & Control.
[50] F. Lévi,et al. Chronotherapy and the molecular clock: Clinical implications in oncology. , 2010, Advanced drug delivery reviews.
[51] Aziz Sancar,et al. Circadian clock control of the cellular response to DNA damage , 2010, FEBS letters.
[52] R. Sutherland,et al. Cell cycle proteins in epithelial cell differentiation: Implications for breast cancer , 2010, Cell cycle.
[53] T. Holford,et al. The Core Circadian Gene Cryptochrome 2 Influences Breast Cancer Risk, Possibly by Mediating Hormone Signaling , 2010, Cancer Prevention Research.
[54] T. Holford,et al. CLOCK in breast tumorigenesis: genetic, epigenetic, and transcriptional profiling analyses. , 2010, Cancer research.
[55] R. Reiter,et al. Role of melatonin in metabolic regulation , 2009, Reviews in Endocrine and Metabolic Disorders.
[56] J. Gangwisch,et al. Epidemiological evidence for the links between sleep, circadian rhythms and metabolism , 2009, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[57] S. Halford,et al. The evolution of irradiance detection: melanopsin and the non-visual opsins , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[58] D. Blask,et al. Melatonin, sleep disturbance and cancer risk. , 2009, Sleep medicine reviews.
[59] R. Stevens. Light-at-night, circadian disruption and breast cancer: assessment of existing evidence. , 2009, International journal of epidemiology.
[60] R. Stevens,et al. Total visual blindness is protective against breast cancer , 2009, Cancer Causes & Control.
[61] R. Stevens. Electric light causes cancer? Surely you're joking, Mr. Stevens. , 2009, Mutation research.
[62] Rachel Leproult,et al. Effects of poor and short sleep on glucose metabolism and obesity risk , 2009, Nature Reviews Endocrinology.
[63] D. Dijk,et al. PER3 polymorphism and cardiac autonomic control: effects of sleep debt and circadian phase. , 2008, American journal of physiology. Heart and circulatory physiology.
[64] Erin L. McDearmon,et al. The genetics of mammalian circadian order and disorder: implications for physiology and disease , 2008, Nature Reviews Genetics.
[65] L. Niles,et al. Epigenetic targets for melatonin: induction of histone H3 hyperacetylation and gene expression in C17.2 neural stem cells , 2008, Journal of pineal research.
[66] E. van Cauter,et al. Metabolic consequences of sleep and sleep loss. , 2008, Sleep medicine.
[67] M. Antoch,et al. Disruption of the circadian clock due to the Clock mutation has discrete effects on aging and carcinogenesis , 2008, Cell cycle.
[68] I. Kloog,et al. Light at Night Co‐distributes with Incident Breast but not Lung Cancer in the Female Population of Israel , 2008, Chronobiology international.
[69] Simon Folkard,et al. Do Permanent Night Workers Show Circadian Adjustment? A Review Based on the Endogenous Melatonin Rhythm , 2008, Chronobiology international.
[70] Kurt Straif,et al. Carcinogenicity of shift-work, painting, and fire-fighting. , 2007, The Lancet. Oncology.
[71] S. Khorasanizadeh,et al. Identification of heme as the ligand for the orphan nuclear receptors REV-ERBα and REV-ERBβ , 2007, Nature Structural &Molecular Biology.
[72] Mark S. Rea,et al. Meeting Report: The Role of Environmental Lighting and Circadian Disruption in Cancer and Other Diseases , 2007, Environmental health perspectives.
[73] Paolo Sassone-Corsi,et al. Circadian Clock and Breast Cancer: A Molecular Link , 2007, Cell cycle.
[74] Paolo Sassone-Corsi,et al. Riding Tandem: Circadian Clocks and the Cell Cycle , 2007, Cell.
[75] Sato Honma,et al. Repeated exposures to daytime bright light increase nocturnal melatonin rise and maintain circadian phase in young subjects under fixed sleep schedule. , 2006, American journal of physiology. Regulatory, integrative and comparative physiology.
[76] F. Scheer,et al. Short-wavelength sensitivity for the direct effects of light on alertness, vigilance, and the waking electroencephalogram in humans. , 2006, Sleep.
[77] M. Dubocovich,et al. Melatonin-depleted blood from premenopausal women exposed to light at night stimulates growth of human breast cancer xenografts in nude rats. , 2005, Cancer research.
[78] Markku Partinen,et al. Sleep duration and breast cancer: a prospective cohort study. , 2005, Cancer research.
[79] Aziz Sancar,et al. Cryptochrome, circadian cycle, cell cycle checkpoints, and cancer. , 2005, Cancer research.
[80] D. Blask,et al. Putting cancer to sleep at night , 2005, Endocrine.
[81] Ming-Feng Hou,et al. Deregulated expression of the PER1, PER2 and PER3 genes in breast cancers. , 2005, Carcinogenesis.
[82] T. Kondo,et al. Reconstitution of Circadian Oscillation of Cyanobacterial KaiC Phosphorylation in Vitro , 2005, Science.
[83] Stefano Iacobelli,et al. Effects of light and food schedules on liver and tumor molecular clocks in mice. , 2005, Journal of the National Cancer Institute.
[84] A. Wirz-Justice,et al. High sensitivity of human melatonin, alertness, thermoregulation, and heart rate to short wavelength light. , 2005, The Journal of clinical endocrinology and metabolism.
[85] Richard G. Stevens,et al. Circadian Disruption and Breast Cancer: From Melatonin to Clock Genes , 2005, Epidemiology.
[86] J. Pokorny,et al. Melanopsin-expressing ganglion cells in primate retina signal colour and irradiance and project to the LGN , 2005, Nature.
[87] Tongzhang Zheng,et al. Period3 structural variation: a circadian biomarker associated with breast cancer in young women. , 2005, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.
[88] T. Young,et al. Short Sleep Duration Is Associated with Reduced Leptin, Elevated Ghrelin, and Increased Body Mass Index , 2004, PLoS medicine.
[89] Franck Delaunay,et al. Effects of Chronic Jet Lag on Tumor Progression in Mice , 2004, Cancer Research.
[90] K. Manton,et al. Effect of exposure to light‐at‐night on life span and spontaneous carcinogenesis in female CBA mice , 2004, International journal of cancer.
[91] Walter C Willett,et al. Does diet affect breast cancer risk? , 2004, Breast Cancer Research.
[92] Francine Laden,et al. Epidemiology of urinary melatonin in women and its relation to other hormones and night work. , 2004, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.
[93] Charles A Czeisler,et al. High sensitivity of the human circadian melatonin rhythm to resetting by short wavelength light. , 2003, The Journal of clinical endocrinology and metabolism.
[94] M. Biel,et al. Melanopsin and rod–cone photoreceptive systems account for all major accessory visual functions in mice , 2003, Nature.
[95] R. Reiter,et al. Melatonin and cell death: differential actions on apoptosis in normal and cancer cells , 2003, Cellular and Molecular Life Sciences CMLS.
[96] Josephine Arendt,et al. A length polymorphism in the circadian clock gene Per3 is linked to delayed sleep phase syndrome and extreme diurnal preference. , 2003, Sleep.
[97] David E. Blask,et al. Growth and Fatty Acid Metabolism of Human Breast Cancer (MCF-7) Xenografts in Nude Rats: Impact of Constant Light-Induced Nocturnal Melatonin Suppression , 2003, Breast Cancer Research and Treatment.
[98] T. Paunio,et al. Circadian Clock-Related Polymorphisms in Seasonal Affective Disorder and their Relevance to Diurnal Preference , 2003, Neuropsychopharmacology.
[99] C. Eastman,et al. The effects of prior light history on the suppression of melatonin by light in humans , 2002, Journal of pineal research.
[100] Peng Huang,et al. The Circadian Gene Period2 Plays an Important Role in Tumor Suppression and DNA Damage Response In Vivo , 2002, Cell.
[101] G. Brainard,et al. Ocular input for human melatonin regulation: relevance to breast cancer. , 2002, Neuro endocrinology letters.
[102] Kai-Florian Storch,et al. Extensive and divergent circadian gene expression in liver and heart , 2002, Nature.
[103] K. Yau,et al. Melanopsin-Containing Retinal Ganglion Cells: Architecture, Projections, and Intrinsic Photosensitivity , 2002, Science.
[104] D. Berson,et al. Phototransduction by Retinal Ganglion Cells That Set the Circadian Clock , 2002, Science.
[105] G. Brainard,et al. Action Spectrum for Melatonin Regulation in Humans: Evidence for a Novel Circadian Photoreceptor , 2001, The Journal of Neuroscience.
[106] W J Hrushesky,et al. Circadian expression of clock genes in human oral mucosa and skin: association with specific cell-cycle phases. , 2001, The American journal of pathology.
[107] Mark S. Rea,et al. Light in the Built Environment: Potential role of Circadian Disruption in Endocrine Disruption and Breast Cancer , 2001, Cancer Causes & Control.
[108] V. Anisimov,et al. Effect of light/dark regimen on N-nitrosoethylurea-induced transplacental carcinogenesis in rats. , 2001, Cancer letters.
[109] G. Boorman,et al. The Effect of Short Intermittent Light Exposures on the Melatonin Circadian Rhythm and NMU-Induced Breast Cancer in Female F344/N Rats , 2001, Toxicologic pathology.
[110] D. Dijk,et al. Dose-response relationship for light intensity and ocular and electroencephalographic correlates of human alertness , 2000, Behavioural Brain Research.
[111] R. Kronauer,et al. Sensitivity of the human circadian pacemaker to nocturnal light: melatonin phase resetting and suppression , 2000, The Journal of physiology.
[112] L. E. Anderson,et al. Effect of constant light on DMBA mammary tumorigenesis in rats , 2000, Cancer Letters.
[113] D. Blask,et al. Melatonin inhibition of cancer growth in vivo involves suppression of tumor fatty acid metabolism via melatonin receptor-mediated signal transduction events. , 1999, Cancer research.
[114] R. Kronauer,et al. Stability, precision, and near-24-hour period of the human circadian pacemaker. , 1999, Science.
[115] F. Lévi,et al. The tumor promoting effect of constant light exposure on diethylnitrosamine-induced hepatocarcinogenesis in rats. , 1999, Life sciences.
[116] S. Golden,et al. The cyanobacterial circadian system: a clock apart. , 1998, Current opinion in microbiology.
[117] G. Brainard,et al. Photic Regulation of Melatonin in Humans: Ocular and Neural Signal Transduction , 1997, Journal of biological rhythms.
[118] C. Nagata,et al. Trends in the incidence rate and risk factors for breast cancer in Japan , 1997, Breast Cancer Research and Treatment.
[119] J Benichou,et al. Proportion of breast cancer cases in the United States explained by well-established risk factors. , 1995, Journal of the National Cancer Institute.
[120] G. Brainard,et al. Pupil size regulation of threshold of light-induced melatonin suppression. , 1993, The Journal of clinical endocrinology and metabolism.
[121] T. Wehr. In short photoperiods, human sleep is biphasic , 1992, Journal of sleep research.
[122] L. E. Anderson,et al. Electric power, pineal function, and the risk of breast cancer , 1992, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[123] R. Hahn,et al. Profound bilateral blindness and the incidence of breast cancer. , 1991, Epidemiology.
[124] S. Yuasa,et al. Age at menarche, age at menopause, height and obesity as risk factors for breast cancer: Associations and interactions in an international case‐control study , 1990, International journal of cancer.
[125] D. Trichopoulos. Hypothesis: does breast cancer originate in utero? , 1990, The Lancet.
[126] R. Hahn,et al. Nulliparity, decade of first birth, and breast cancer in Connecticut cohorts, 1855 to 1945: an ecological study. , 1989, American journal of public health.
[127] Richard G. Weleber,et al. Dose-response relationship between light irradiance and the suppression of plasma melatonin in human volunteers , 1988, Brain Research.
[128] R. Stevens,et al. Electric power use and breast cancer: a hypothesis. , 1987, American journal of epidemiology.
[129] M. Mhatre,et al. Effect of melatonin on mammary carcinogenesis in intact and pinealectomized rats in varying photoperiods. , 1984, Cancer research.
[130] M. Mhatre,et al. Effect of varying photoperiods on mammary morphology, DNA synthesis, and hormone profile in female rats. , 1984, Journal of the National Cancer Institute.
[131] M. Mhatre,et al. Pineal ablation in varying photoperiods and the incidence of 9,10-dimethyl-1,2-benzanthracene induced mammary cancer in rats. , 1984, Cancer letters.
[132] D. G. Hoel,et al. ‘Hormonal’ risk factors, ‘breast tissue age’ and the age-incidence of breast cancer , 1983, Nature.
[133] M. Mhatre,et al. Effect of continuous light on the incidence of 9,10-dimethyl-1,2-benzanthracene induced mammary tumors in female Holtzman rats. , 1982, Cancer letters.
[134] D A Newsome,et al. Light suppresses melatonin secretion in humans. , 1980, Science.
[135] S H Moolgavkar,et al. Two-stage model for carcinogenesis: Epidemiology of breast cancer in females. , 1980, Journal of the National Cancer Institute.
[136] T. Hamilton,et al. Influence of environmental light and melatonin upon mammary tumour induction , 1969, The British journal of surgery.
[137] W. Jöchle,et al. TRENDS IN PHOTOPHYSIOLOGIC CONCEPTS , 1964, Annals of the New York Academy of Sciences.
[138] V. Rapisarda,et al. Influence of night-shift and napping at work on urinary melatonin, 17-β-estradiol and clock gene expression in pre-menopausal nurses. , 2013, Journal of biological regulators and homeostatic agents.
[139] K. Wada,et al. Light exposure at night, sleep duration and sex hormone levels in pregnant Japanese women. , 2012, Endocrine journal.
[140] R. Lucas,et al. How rod, cone, and melanopsin photoreceptors come together to enlighten the mammalian circadian clock. , 2012, Progress in brain research.
[141] L. Fuentes-Broto,et al. Melatonin: a multitasking molecule. , 2010, Progress in brain research.
[142] N. Rothman,et al. Original Contribution Night-Shift Work and Breast Cancer Risk in a Cohort of Chinese Women , 2010 .
[143] S. Khorasanizadeh,et al. Identification of heme as the ligand for the orphan nuclear receptors REV-ERBalpha and REV-ERBbeta. , 2007, Nature structural & molecular biology.
[144] M. Karásek,et al. Melatonin in humans. , 2006, Journal of physiology and pharmacology : an official journal of the Polish Physiological Society.
[145] M. Maj,et al. Does bright light suppress nocturnal melatonin secretion more in women than men? , 2005, Journal of Neural Transmission / General Section JNT.
[146] C. Aubert,et al. Effect of pinealectomy and melatonin on mammary tumor growth in sprague-dawley rats under different conditions of lighting , 2005, Journal of Neural Transmission.
[147] G. Maestroni,et al. Anti-angiogenic activity of melatonin in advanced cancer patients. , 2001, Neuro endocrinology letters.
[148] Derk-Jan Dijk,et al. Functional Genomics of Sleep and Circadian Rhythm Invited Review : Integration of human sleep-wake regulation and circadian rhythmicity , 2001 .
[149] S. Zienolddiny,et al. American Journal of Epidemiology Original Contribution Night Work and Breast Cancer Risk among Norwegian Nurses: Assessment by Different Exposure Metrics , 2022 .