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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80677完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 劉貞佑(Chen-Yu Liu) | |
| dc.contributor.author | Mei-Sheng Ku | en |
| dc.contributor.author | 古玫生 | zh_TW |
| dc.date.accessioned | 2022-11-24T03:12:37Z | - |
| dc.date.available | 2021-11-03 | |
| dc.date.available | 2022-11-24T03:12:37Z | - |
| dc.date.copyright | 2021-11-03 | |
| dc.date.issued | 2021 | |
| dc.date.submitted | 2021-10-20 | |
| dc.identifier.citation | Adams K, Greenbaum DS, Shaikh R, van Erp AM, Russell AG. Particulate matter components, sources, and health: Systematic approaches to testing effects. J Air Waste Manag Assoc. 2015;65(5):544-558. doi:10.1080/10962247.2014.1001884 Amarasinghe HK, Usgodaarachchi US, Johnson NW, Lalloo R, Warnakulasuriya S. Betel-quid chewing with or without tobacco is a major risk factor for oral potentially malignant disorders in Sri Lanka: a case-control study. Oral Oncol. 2010;46(4):297-301. doi:10.1016/j.oraloncology.2010.01.017 Ananthakrishnan AN, McGinley EL, Binion DG, Saeian K. Ambient air pollution correlates with hospitalizations for inflammatory bowel disease: an ecologic analysis. Inflamm Bowel Dis. 2011;17(5):1138-1145. doi:10.1002/ibd.21455 Andersen ZJ, Stafoggia M, Weinmayr G, et al. Long-Term Exposure to Ambient Air Pollution and Incidence of Postmenopausal Breast Cancer in 15 European Cohorts within the ESCAPE Project. Environ Health Perspect. 2017;125(10):107005. doi:10.1289/EHP1742 Archambault AN, Lin Y, Jeon J, et al. Nongenetic Determinants of Risk for Early-Onset Colorectal Cancer. JNCI Cancer Spectr. 2021;5(3):pkab029. Published 2021 May 20. doi:10.1093/jncics/pkab029 Atkinson RW, Kang S, Anderson HR, Mills IC, Walton HA. Epidemiological time series studies of PM2.5 and daily mortality and hospital admissions: a systematic review and meta-analysis. Thorax. 2014;69(7):660-665. doi:10.1136/thoraxjnl-2013-204492 Axell T, Holmstrup P, Kramer IRH, Pindborg JJ, Shear M. International seminar on oral leukoplakia and associated lesions related to tobacco habits. Community Dent Oral Epidemiol. 1984;12(3):145-154. doi:10.1111/j.1600-0528.1984.tb01428.x Balkwill F, Mantovani A. Inflammation and cancer: back to Virchow?. Lancet. 2001;357(9255):539-545. doi:10.1016/S0140-6736(00)04046-0 Beamish LA, Osornio-Vargas AR, Wine E. Air pollution: An environmental factor contributing to intestinal disease. J Crohns Colitis. 2011;5(4):279-286. Baccarelli, A. A.; Hales, N.; Burnett, R. T.; Jerrett, M.; Mix, C.; Dockery, D. W.; Pope, C. A. Particulate air pollution, exceptional aging, and rates of centenarians: A nationwide analysis of the United States, 1980−2010. Environ. Health Perspect. 2016, 124, 1744−1750. Boland CR, Thibodeau SN, Hamilton SR, et al. A National Cancer Institute Workshop on Microsatellite Instability for cancer detection and familial predisposition: development of international criteria for the determination of microsatellite instability in colorectal cancer. Cancer Res. 1998;58(22):5248-5257. Boström CE, Gerde P, Hanberg A, et al. Cancer risk assessment, indicators, and guidelines for polycyclic aromatic hydrocarbons in the ambient air. Environ Health Perspect. 2002;110 Suppl 3(Suppl 3):451-488. doi:10.1289/ehp.110-1241197 Boyle JO, Hakim J, Koch W, et al. The incidence of p53 mutations increases with progression of head and neck cancer. Cancer Res. 1993;53(19):4477-4480. Bu X, Xie Z, Liu J, et al. Global PM2.5-attributable health burden from 1990 to 2017: Estimates from the Global Burden of disease study 2017. Environ Res. 2021;197:111123. doi:10.1016/j.envres.2021.111123 Braun S, Bitton-Worms K, LeRoith D. The link between the metabolic syndrome and cancer. Int J Biol Sci. 2011; 7(7), 1003–1015. https://doi.org/10.7150/ijbs.7.1003 Brito J, Rizzo LV, Herckes P, Vasconcellos PC, Caumo SES, Fornaro A, et al. Physical–chemical characterisation of the particulate matter inside two road tunnels in the São Paulo Metropolitan Area. Atmos. Chem. Phys. 2013;13, 12199-12213. Chang CC, Lin MS, Chen YT, Tu LT, Jane SW, Chen MY. Metabolic syndrome and health-related behaviours associated with pre-oral cancerous lesions among adults aged 20–80 years in Yunlin County, Taiwan: a cross-sectional study. BMJ Open. 2015;5(12). doi:10.1136/bmjopen-2015-008788 Chao HR, Hsu JW, Ku HY, et al. Inflammatory response and PM2.5 exposure of urban traffic conductors. Aerosol Air Qual Res. 2018;18, 2633-2642. doi.org/10.4209/aaqr.2018.04.0132 Chaturvedi AK. Epidemiology and clinical aspects of HPV in head and neck cancers. Head Neck Pathol. 2012;6 Suppl 1(Suppl 1):S16-S24. doi:10.1007/s12105-012-0377-0 Chen CD, Yen MF, Wang WM, Wong JM, Chen TH. A case-cohort study for the disease natural history of adenoma-carcinoma and de novo carcinoma and surveillance of colon and rectum after polypectomy: implication for efficacy of colonoscopy. Br J Cancer. 2003;88(12):1866-1873. doi:10.1038/sj.bjc.6601007 Chen CH, Wen CP, Tsai MK. Fecal immunochemical test for colorectal cancer from a prospective cohort with 513,283 individuals: Providing detailed number needed to scope (NNS) before colonoscopy. Medicine (Baltimore) 2016; 95(36):e4414. Chen LS, Liao CS, Chang SH, Lai HC, Chen TH. Cost-effectiveness analysis for determining optimal cut-off of immunochemical faecal occult blood test for population-based colorectal cancer screening (KCIS 16). J Med Screen. 2007;14(4):191-199. 46 Chen LS, Yen AM, Chiu SY, Liao CS, Chen HH. Baseline faecal occult blood concentration as a predictor of incident colorectal neoplasia: longitudinal follow-up of a Taiwanese population-based colorectal cancer screening cohort. Lancet Oncol. 2011;12(6):551-558. doi:10.1016/S1470-2045(11)70101-2 doi:10.1258/096914107782912022 Chen LS, Yen AMF, Fraser CG, et al. Impact of faecal haemoglobin concentration on colorectal cancer mortality and all-cause death. BMJ Open 2013; 3(11):e003740. Chen TH, Yen MF, Lai MS, et al. Evaluation of a selective screening for colorectal carcinoma: the Taiwan Multicenter Cancer Screening (TAMCAS) project. Cancer. 1999;86(7):1116-1128. Chen TH, Chiu YH, Luh DL, Yen MF, Wu HM, Chen LS, Tung TH, Huang CC, Chan CC, Shiu MN, Yeh YP, Liou HH, Liao CS, Lai HC, Chiang CP, Peng HL, Tseng CD, Yen MS, Hsu WC, Chen CH; Taiwan Community-Based Integrated Screening Group. Community-based multiple screening model: design, implementation, and analysis of 42,387 participants. Cancer. 2004;100(8):1734-43. Cheng FY, Hsu CH. Long-term variations in PM2.5 concentrations under changing meteorological conditions in Taiwan. Sci Rep. 2019;9(1):6635. Published 2019 Apr 29. doi:10.1038/s41598-019-43104-x Chi GC, Liu Y, MacDonald JW, et al. Long-term outdoor air pollution and DNA methylation in circulating monocytes: results from the Multi-Ethnic Study of Atherosclerosis (MESA). Environ Health. 2016;15(1):119. doi:10.1186/s12940-016-0202-4 Chiang CJ, Chen YC, Chen CJ, You SL, Lai MS; Taiwan Cancer Registry Task Force. Cancer trends in Taiwan. Jpn J Clin Oncol. 2010;40(10):897-904. doi:10.1093/jjco/hyq057 Chiang CP, Wu HY, Liu BY, Wang JT, Kuo MYP. Quantitative analysis of immunocompetent cells in oral submucous fibrosis in Taiwan. Oral Oncol. 2002;38(1):56-63. Chiu HM, Chen SL, Yen AM, et al. Effectiveness of fecal immunochemical testing in reducing colorectal cancer mortality from the One Million Taiwanese Screening Program. Cancer. 2015;121(18):3221-3229. doi:10.1002/cncr.29462 Chiu HM, Lin JT, Shun CT, et al. Association of metabolic syndrome with proximal and synchronous colorectal neoplasm. Clin Gastroenterol Hepatol. 2007;5(2):221-141. doi:10.1016/j.cgh.2006.06.022 Chu H, Xin J, Yuan Q, et al. A prospective study of the associations among fine particulate matter, genetic variants, and the risk of colorectal cancer. Environ Int. 2021;147:106309. Chu YH, Kao SW, Tantoh DM, Ko PC, Lan SJ, Liaw YP. Association between fine particulate matter and oral cancer among Taiwanese men. J Investig Med. 2019;67(1):34-38. doi:10.1136/jim-2016-000263 Chuang SL, Su WW, Chen SL, et al. Population-based screening program for reducing oral cancer mortality in 2,334,299 Taiwanese cigarette smokers and/or betel quid chewers. Cancer. 2017;123(9):1597-1609. doi:10.1002/cncr.30517 Chuang SL, Wang CP, Chen MK, et al. Malignant transformation to oral cancer by subtype of oral potentially malignant disorder: A prospective cohort study of Taiwanese nationwide oral cancer screening program. Oral Oncol. 2018;87:58-63. doi:10.1016/j.oraloncology.2018.10.021 Ciatto S, Martinelli F, Castiglione G, et al. Association of FOBT-assessed faecal Hb content with colonic lesions detected in the Florence screening programme. Br J Cancer 2007; 96(2):218–221. Coleman NC, Burnett RT, Higbee JD, et al. Cancer mortality risk, fine particulate air pollution, and smoking in a large, representative cohort of US adults. Cancer Causes Control. 2020;31(8):767-776. doi:10.1007/s10552-020-01317-w Correia, A. W.; Pope, C. A., III; Dockery, D. W.; Wang, Y.; Ezzati, M.; Dominici, F. Effect of air pollution control on life expectancy in the United States. Epidemiol. 2013, 24, 23−31 Dabass A, Talbott EO, Rager JR, et al. Systemic inflammatory markers associated with cardiovascular disease and acute and chronic exposure to fine particulate matter air pollution (PM2.5) among US NHANES adults with metabolic syndrome. Environ Res. 2018;161:485-491. doi:10.1016/j.envres.2017.11.042 Dekker E, Tanis PJ, Vleugels JLA, Kasi PM, Wallace MB. Colorectal cancer. Lancet. 2019;394(10207):1467-1480. doi:10.1016/S0140-6736(19)32319-0 Delfino R. Epidemiologic evidence for asthma and exposure to air toxics: linkages between occupational, indoor, and community air pollution research. Environ Health Perspect 2002; 110: 573–589. Delfino R, Gong H, Linn W, Hu Y, Pellizzari E . Respiratory symptoms and peak expiratory flow in children with asthma in relation to volatile organic compounds in exhaled breath and ambient air. J Expo Anal Environ Epidemiol 2003; 13: 348–363. Department of Statistics, Ministry of Health and Welfare. https://www.mohw.gov.tw/cp-115-33347-2.html (accessed Sep 15, 2019.). Digby J, Fraser CG, Carey FA, et al. Faecal haemoglobin concentration is related to severity of colorectal neoplasia. J Clin Pathol 2013; 66(5):415–419. Directorate-General of Budget, Accounting and Statistics, Executive Yuan. National Statistics. (https://statdb.dgbas.gov.tw/pxweb/dialog/statfile9.asp, Accessed Mar 24, 2021.) Dominici F, Wang Y, Correia AW, Ezzati M, Pope CA 3rd, Dockery DW. Chemical Composition of Fine Particulate Matter and Life Expectancy: In 95 US Counties Between 2002 and 2007. Epidemiology. 2015;26(4):556-564. doi:10.1097/EDE.0000000000000297 Durko L, Malecka-Panas E. Lifestyle Modifications and Colorectal Cancer. Curr Colorectal Cancer Rep. 2014;10(1):45-54. doi:10.1007/s11888-013-0203-4 Esposito K, Chiodini P, Colao A, Lenzi A, Giugliano D. Metabolic Syndrome and Risk of Cancer. Diabetes Care. 2012;35(11):2402-2411. doi:10.2337/dc12-0336 Esposito K, Chiodini P, Capuano A, et al. Colorectal cancer association with metabolic syndrome and its components: a systematic review with meta-analysis. Endocrine. 2013;44(3):634-647. doi:10.1007/s12020-013-9939-5 Ethan CJ, Mokoena KK, Yu Y, et al. Association between PM2.5 and mortality of stomach and colorectal cancer in Xi'an: a time-series study. Environ Sci Pollut Res Int. 2020;27(18):22353-22363. doi:10.1007/s11356-020-08628-0 Feng B, Li L, Xu H, et al. PM2.5-bound polycyclic aromatic hydrocarbons (PAHs) in Beijing: Seasonal variations, sources, and risk assessment. J Environ Sci (China). 2019;77:11-19. doi:10.1016/j.jes.2017.12.025 Feng J, Cavallero S, Hsiai T, Li R. Impact of air pollution on intestinal redox lipidome and microbiome. Free Radic Biol Med. 2020;151:99-110. Feng S, Gao D, Liao F, Zhou F, Wang X. The health effects of ambient PM2.5 and potential mechanisms. Ecotoxicol Environ Saf. 2016;128:67-74. doi:10.1016/j.ecoenv.2016.01.030 Garcia M, Milà N, Binefa G, et al. Fecal hemoglobin concentration as a measure of risk to tailor colorectal cancer screening: are we there yet? Eur J Cancer Prev 2015; 24(4):321–327. Gent JF, Koutrakis P, Belanger K, Triche E, Holford TR, Bracken MB et al. Symptoms and medication use in children with asthma and traffic-related sources of fine particle pollution. Environ Health Perspect 2009; 117: 1168–1174. Ghio AJ, Carraway MS, Madden MC. Composition of air pollution particles and oxidative stress in cells, tissues, and living systems. J Toxicol Environ Health B Crit Rev. 2012;15(1):1-21. doi:10.1080/10937404.2012.632359 Giovannucci E, Ascherio A, Rimm EB, Colditz GA, Stampfer MJ, Willett WC. Physical activity, obesity, and risk for colon cancer and adenoma in men. Ann Intern Med. 1995;122(5):327-334. doi:10.7326/0003-4819-122-5-199503010-00002 Gosavi SR, Torkadi AA. Serum C-reactive protein in oral submucous fibrosis and oral squamous cell carcinoma: A cross-sectional study. J Oral Maxillofac Pathol. 2020;24(1):46-51. doi:10.4103/jomfp.JOMFP_317_19 Goyal N, Karra M, Canning D. Early-life exposure to ambient fine particulate air pollution and infant mortality: pooled evidence from 43 low- and middle-income countries. Int J Epidemiol. 2019;48(4):1125-1141. doi:10.1093/ije/dyz090 Guarner V, Rubio-Ruiz ME. Low-grade systemic inflammation connects aging, metabolic syndrome and cardiovascular disease. Interdiscip Top Gerontol. 2015;40:99-106. doi:10.1159/000364934 Guo C, Chan TC, Teng YC, et al. Long-term exposure to ambient fine particles and gastrointestinal cancer mortality in Taiwan: A cohort study. Environ Int. 2020;138:105640. doi:10.1016/j.envint.2020.105640 Gutiérrez-Castillo ME, Roubicek DA, Cebrián-García ME, De Vizcaya-Ruíz A, Sordo-Cedeño M, Ostrosky-Wegman P. Effect of chemical composition on the induction of DNA damage by urban airborne particulate matter. Environ Mol Mutagen. 2006;47(3):199-211. doi:10.1002/em.20186 Hamra GB, Guha N, Cohen A, et al. Outdoor particulate matter exposure and lung cancer: a systematic review and meta-analysis [published correction appears in Environ Health Perspect. 2014 Sep;122(9):A236]. Environ Health Perspect. 2014;122(9):906-911. doi:10.1289/ehp/1408092 Han F, Wu G, Zhang S, Zhang J, Zhao Y, Xu J. The association of Metabolic Syndrome and its Components with the Incidence and Survival of Colorectal Cancer: A Systematic Review and Meta-analysis. Int J Biol Sci. 2021;17(2):487-497. Published 2021 Jan 1. doi:10.7150/ijbs.52452 Harrison RM, Smith DJ, Kibble AJ. What is responsible for the carcinogenicity of PM2.5?. Occup Environ Med. 2004;61(10):799-805. doi:10.1136/oem.2003.010504 Hazlehurst MF, Carroll KN, Loftus CT, et al. Maternal exposure to PM2.5 during pregnancy and asthma risk in early childhood: consideration of phases of fetal lung development. Environ Epidemiol. 2021;5(2):e130. doi:10.1097/ee9.0000000000000130 Health Promotion Administration. Annual Report. 2019. Available online: https://www.hpa.gov.tw/EngPages/Detail.aspx?nodeid=1070 pid=12811 Hidaka A, Harrison TA, Cao Y, et al. Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies. Cancer Res. 2020;80(20):4578-4590. doi:10.1158/0008-5472.CAN-20-0168 Hopke PK, Croft D, Zhang W, et al. Changes in the acute response of respiratory diseases to PM2.5 in New York State from 2005 to 2016. Sci Total Environ. 2019;677:328-339. doi:10.1016/j.scitotenv.2019.04.357 Hotamisligil GS. Inflammation and metabolic disorders. Nature. 2006;444(7121):860-867. doi:10.1038/nature05485 Huang, XH Hilda, et al. 'Characterization of PM2.5 major components and source investigation in suburban Hong Kong: a one year monitoring study.' Aerosol and Air Quality Research 14.1 (2014): 237-250. Hur J, Otegbeye E, Joh HK, et al. Sugar-sweetened beverage intake in adulthood and adolescence and risk of early-onset colorectal cancer among women [published online ahead of print, 2021 May 6]. Gut. 2021;gutjnl-2020-323450. doi:10.1136/gutjnl-2020-323450 Hsieh HJ, Chen TH, Chang SH. Assessing chronic disease progression using non-homogeneous exponential regression Markov models: an illustration using a selective breast cancer screening in Taiwan. Stat Med. 2002;21(22):3369-3382. doi:10.1002/sim.1277 Hsiu-Hsi Chen T, Yen MF, Shiu MN, Tung TH, Wu HM. Stochastic model for non-standard case-cohort design. Stat Med. 2004;23(4):633-647. doi:10.1002/sim.1610 Hsu HJ, Yang YH, Shieh TY, et al. Role of cytokine gene (interferon-γ, transforming growth factor-β1, tumor necrosis factor-α, interleukin-6, and interleukin-10) polymorphisms in the risk of oral precancerous lesions in Taiwanese. Kaohsiung J Med Sci. 2014;30(11):551-558. doi:10.1016/j.kjms.2014.09.003 Jenwitheesuk K, Peansukwech U, Jenwitheesuk K. Accumulated ambient air pollution and colon cancer incidence in Thailand. Sci Rep. 2020;10(1):17765. Johnson CM, Wei C, Ensor JE, et al. Meta-analyses of colorectal cancer risk factors. Cancer Causes Control. 2013;24(6):1207-1222. doi:10.1007/s10552-013-0201-5 Johnson NW, Jayasekara P, Amarasinghe AA. Squamous cell carcinoma and precursor lesions of the oral cavity: epidemiology and aetiology. Periodontol 2000. 2011;57(1):19-37. doi:10.1111/j.1600-0757.2011.00401.x Juntanong N, Siewchaisakul P, Bradshaw P, et al. Prevalence and Factors Associated with Oral Pre-malignant Lesions in Northeast Thailand. Asian Pac J Cancer Prev. 2016;17(8):4175-4179. Kaiser J. Epidemiology. Mounting evidence indicts fine-particle pollution [published correction appears in Science. 2005 Apr 29;308(5722):633]. Science. 2005;307(5717):1858-1861. doi:10.1126/science.307.5717.1858a Kaldor J, Harris JA, Glazer E, et al. Statistical association between cancer incidence and major-cause mortality, and estimated residential exposure to air emissions from petroleum and chemical plants. Environ Health Perspect. 1984;54:319-332. doi:10.1289/ehp.8454319 Karahalios A, English DR, Simpson JA. Weight change and risk of colorectal cancer: a systematic review and meta-analysis. Am J Epidemiol. 2015;181(11):832-845. doi:10.1093/aje/kwu357 Khandwala HM, McCutcheon IE, Flyvbjerg A, Friend KE. The effects of insulin-like growth factors on tumorigenesis and neoplastic growth. Endocr Rev. 2000;21(3):215-244. doi:10.1210/edrv.21.3.0399 Kim HB, Shim JY, Park B, Lee YJ. Long-Term Exposure to Air Pollutants and Cancer Mortality: A Meta-Analysis of Cohort Studies. Int J Environ Res Public Health. 2018;15(11):2608. doi:10.3390/ijerph15112608 Kim S, Keku TO, Martin C, et al. Circulating levels of inflammatory cytokines and risk of colorectal adenomas. Cancer Res. 2008;68(1):323-328. Kloog I, Ridgway B, Koutrakis P, Coull BA, Schwartz JD. Long- and short-term exposure to PM2.5 and mortality: using novel exposure models. Epidemiology. 2013;24(4):555-561. doi:10.1097/EDE.0b013e318294beaa Ko YC, Huang YL, Lee CH, Chen MJ, Lin LM, Tsai CC. Betel quid chewing, cigarette smoking and alcohol consumption related to oral cancer in Taiwan. J Oral Pathol Med. 1995;24(10):450-453. doi:10.1111/j.1600-0714.1995.tb01132.x Kouassi KS, Billet S, Garçon G, et al. Oxidative damage induced in A549 cells by physically and chemically characterized air particulate matter (PM2.5) collected in Abidjan, Côte d'Ivoire. J Appl Toxicol. 2010;30(4):310-320. doi:10.1002/jat.1496 Künzli, N.; Medina, S.; Kaiser, R.; Quenel, P.; Horak, F., Jr.; Studnicka, M. Assessment of deaths attributable to air pollution: Should we use risk estimates based on time series or on cohort studies? Am. J. Epidemiol. 2001, 153, 1050−1055. Ku MS, Fann JC, Chiu SY, Chen HH, Hsu CY. Elucidating bidirectional relationship between metabolic syndrome and elevated faecal haemoglobin concentration: a Taiwanese community-based cohort study. BMJ Open. 2019;9(3):e021153. doi:10.1136/bmjopen-2017-021153 Laghi L, Bianchi P, Miranda E, et al. CD3+ cells at the invasive margin of deeply invading (pT3-T4) colorectal cancer and risk of post-surgical metastasis: a longitudinal study. Lancet Oncol. 2009;10(9):877-884. doi:10.1016/S1470-2045(09)70186-X Lansdorp-Vogelaar I, Knudsen AB, Brenner H. Cost-effectiveness of colorectal cancer screening. Epidemiol Rev. 2011;33(1):88-100. doi:10.1093/epirev/mxr004 Lave LB, Seskin EP. An analysis of the association between U.S. mortality and air pollution. J. Am. Stat. Assoc. 1973, 68, 284−290. Lee CW, Vo TTT, Wu CZ, et al. The Inducible Role of Ambient Particulate Matter in Cancer Progression via Oxidative Stress-Mediated Reactive Oxygen Species Pathways: A Recent Perception. Cancers (Basel). 2020;12(9):2505. Published 2020 Sep 3. doi:10.3390/cancers12092505 Li TC, Yuan CS, Huang HC, Lee CL, Wu SP, Tong C. Inter-comparison of Seasonal Variation, Chemical Characteristics, and Source Identification of Atmospheric Fine Particles on Both Sides of the Taiwan Strait. Sci Rep. 2016;6:22956. Published 2016 Mar 14. doi:10.1038/srep22956 Li X, Cui J, Yang H, et al. Colonic Injuries Induced by Inhalational Exposure to Particulate-Matter Air Pollution. Adv Sci (Weinh). 2019;6(11):1900180. Liu Q, Gu X, Deng F, et al. Ambient particulate air pollution and circulating C-reactive protein level: A systematic review and meta-analysis. Int J Hyg Environ Health. 2019;222(5):756-764. doi:10.1016/j.ijheh.2019.05.005 Loomis D, Grosse Y, Lauby-Secretan B, et al. The carcinogenicity of outdoor air pollution. Lancet Oncol. 2013;14(13):1262-1263. doi:10.1016/s1470-2045(13)70487-x Ma JW, Lai TJ, Hu SY, Lin TC, Ho WC, Tsan YT. Effect of ambient air pollution on the incidence of colorectal cancer among a diabetic population: a nationwide nested case-control study in Taiwan. BMJ Open. 2020;10(10):e036955. Published 2020 Oct 28. doi:10.1136/bmjopen-2020-036955 Ma QY, Huang DY, Zhang HJ, Wang S, Chen XF. Exposure to particulate matter 2.5 (PM2.5) induced macrophage-dependent inflammation, characterized by increased Th1/Th17 cytokine secretion and cytotoxicity. Int Immunopharmacol. 2017;50:139-145. doi:10.1016/j.intimp.2017.06.019 Madathil SA, Rousseau MC, Wynant W, et al. Nonlinear association between betel quid chewing and oral cancer: Implications for prevention. Oral Oncol. 2016;60:25-31. doi:10.1016/j.oraloncology.2016.06.011 Mahalingaiah S, Hart JE, Laden F, et al. Air pollution and risk of uterine leiomyomata. Epidemiology. 2014;25(5):682-688. doi:10.1097/EDE.0000000000000126 Mandel JS, Bond JH, Church TR, et al. Reducing mortality from colorectal cancer by screening for fecal occult blood. Minnesota Colon Cancer Control Study [published correction appears in N Engl J Med 1993 Aug 26;329(9):672]. N Engl J Med. 1993;328(19):1365-1371. Manisalidis I, Stavropoulou E, Stavropoulos A, Bezirtzoglou E. Environmental and Health Impacts of Air Pollution: A Review. Front Public Health. 2020;8:14. Published 2020 Feb 20. doi:10.3389/fpubh.2020.00014 Meo SA, Abukhalaf AA, Alessa OM, Alarifi AS, Sami W, Klonoff DC. Effect of Environmental Pollutants PM2.5, CO, NO2, and O3 on the Incidence and Mortality of SARS-CoV-2 Infection in Five Regions of the USA. Int J Environ Res Public Health. 2021;18(15):7810. Published 2021 Jul 23. doi:10.3390/ijerph18157810 Mercer LD, Szpiro AA, Sheppard L, et al. Comparing universal kriging and land-use regression for predicting concentrations of gaseous oxides of nitrogen (NOx) for the Multi-Ethnic Study of Atherosclerosis and Air Pollution (MESA Air). Atmos Environ (1994). 2011;45(26):4412-4420. doi:10.1016/j.atmosenv.2011.05.043 Merchant A, Husain SS, Hosain M, et al. Paan without tobacco: an independent risk factor for oral cancer. Int J Cancer. 2000;86(1):128-131. doi:10.1002/(sici)1097-0215(20000401)86:1<128::aid-ijc20>3.0.co;2-m Ministry of Health And Welfare, Taiwan. Cancer Registry Annual Report. 2018. Available online: https://www.hpa.gov.tw/Pages/Detail.aspx?nodeid=269 pid=13498. Mutlu EA, Engen PA, Soberanes S, et al. Particulate matter air pollution causes oxidant-mediated increase in gut permeability in mice. Part Fibre Toxicol. 2011;8:19. Neven KY, Saenen ND, Tarantini L, et al. Placental promoter methylation of DNA repair genes and prenatal exposure to particulate air pollution: an ENVIRONAGE cohort study. Lancet Planet Health. 2018;2(4):e174-e183. doi:10.1016/S2542-5196(18)30049-4 Okada, F. Inflammation-related carcinogenesis: current findings in epidemiological trends, causes and mechanisms. Yonago Acta Med. 2014;57(2):65-72. O'Sullivan DE, Sutherland RL, Town S, et al. Risk Factors for Early-Onset Colorectal Cancer: A Systematic Review and Meta-analysis [published online ahead of print, 2021 Jan 29]. Clin Gastroenterol Hepatol. 2021;S1542-3565(21)00087-2. doi:10.1016/j.cgh.2021.01.037 Paget-Bailly S, Cyr D, Luce D. Occupational exposures to asbestos, polycyclic aromatic hydrocarbons and solvents, and cancers of the oral cavity and pharynx: a quantitative literature review. Int Arch Occup Environ Health. 2012;85(4):341-351. doi:10.1007/s00420-011-0683-y Pan WC, Wu CD, Chen MJ, et al. Fine Particle Pollution, Alanine Transaminase, and Liver Cancer: A Taiwanese Prospective Cohort Study (REVEAL-HBV). J Natl Cancer Inst. 2015;108(3):10.1093/jnci/djv341. doi:10.1093/jnci/djv341 Panni T, Mehta AJ, Schwartz JD, et al. Genome-Wide Analysis of DNA Methylation and Fine Particulate Matter Air Pollution in Three Study Populations: KORA F3, KORA F4, and the Normative Aging Study. Environ Health Perspect. 2016;124(7):983-990. doi:10.1289/ehp.1509966 Park J, Park EH, Schauer JJ, Yi SM, Heo J. Reactive oxygen species (ROS) activity of ambient fine particles (PM2.5) measured in Seoul, Korea. Environ Int. 2018;117:276-283. Patel MM, Miller RL. Air pollution and childhood asthma: recent advances and future directions. Curr Opin Pediatr 2009; 21: 235–242 Pence BC, Belasco EJ, Lyford CP. Combination aspirin and/or calcium chemoprevention with colonoscopy in colorectal cancer prevention: cost-effectiveness analyses. Cancer Epidemiol Biomarkers Prev. 2013;22(3):399-405. doi:10.1158/1055-9965.EPI-12-0658 Pope, C. A.; Ezzati, M.; Dockery, D. W. Fine-particulate air pollution and life expectancy in the United States. N. Engl. J. Med.2009, 360, 376−386. Pun VC, Kazemiparkouhi F, Manjourides J, Suh HH. Long-Term PM2.5 Exposure and Respiratory, Cancer, and Cardiovascular Mortality in Older US Adults. Am J Epidemiol. 2017;186(8):961-969. doi:10.1093/aje/kwx166 Raaschou-Nielsen O, Pedersen M, Stafoggia M, et al. Outdoor air pollution and risk for kidney parenchyma cancer in 14 European cohorts. Int J Cancer. 2017;140(7):1528-1537. doi:10.1002/ijc.30587 Salim SY, Kaplan GG, Madsen KL. Air pollution effects on the gut microbiota: a link between exposure and inflammatory disease. Gut Microbes. 2014;5(2):215-219. doi:10.4161/gmic.27251 Schmitt M, Greten FR. The inflammatory pathogenesis of colorectal cancer. Nat Rev Immunol. 2021;10.1038/s41577-021-00534-x. Schreuders EH, Ruco A, Rabeneck L, et al. Colorectal cancer screening: a global overview of existing programmes. Gut. 2015;64(10):1637-1649. doi:10.1136/gutjnl-2014-309086 Schwartz, J. Harvesting and long term exposure effects in the relation between air pollution and mortality. Am. J. Epidemiol. 2000, 151, 440−448. Schwartz JD, Wang Y, Kloog I, Yitshak-Sade M, Dominici F, Zanobetti A. Estimating the Effects of PM2.5 on Life Expectancy Using Causal Modeling Methods. Environ Health Perspect. 2018;126(12):127002. doi:10.1289/EHP3130 Shiu MN, Chen TH. Impact of betel quid, tobacco and alcohol on three-stage disease natural history of oral leukoplakia and cancer: implication for prevention of oral cancer. Eur J Cancer Prev. 2004;13(1):39-45. doi:10.1097/00008469-200402000-00007 Siewchaisakul P, Sarakarn P, Vatanasapt P, Chen SL, Yen AM. Sex Differences in the Heterogeneous Dynamic Incidence of Oral Cancer: A Comparison between Taiwan and Thailand. Biomed Res Int. 2020;2020:9321246. Published 2020 Sep 15. doi:10.1155/2020/9321246 Siewchaisakul P, Wang ST, Peng SM, et al. Effect of metabolic syndrome on incidence of oral potentially malignant disorder: a prospective cohort study in Taiwan. BMJ Open. 2020;10(10):e041971. Published 2020 Oct 14. doi:10.1136/bmjopen-2020-041971 Stocks T, Bjørge T, Ulmer H, et al. Metabolic risk score and cancer risk: pooled analysis of seven cohorts. Int J Epidemiol. 2015;44(4):1353-1363. doi:10.1093/ije/dyv001 Straif K, Cohen A, Samet J, eds. Air pollution and cancer. IARC scientific publication no. 161. Lyon: International Agency for Research on Cancer, 2013. Straif K, Cohen A, Samet J, eds. Outdoor Air Pollution. IARC scientific publication no. 109. Lyon: International Agency for Research on Cancer, 2015. Su CC, Lin YY, Chang TK, et al. Incidence of oral cancer in relation to nickel and arsenic concentrations in farm soils of patients' residential areas in Taiwan. BMC Public Health. 2010;10:67. Published 2010 Feb 12. doi:10.1186/1471-2458-10-67 Su SY, Liaw YP, Jhuang JR, et al. Associations between ambient air pollution and cancer incidence in Taiwan: an ecological study of geographical variations. BMC Public Health. 2019;19(1):1496. Published 2019 Nov 9. doi:10.1186/s12889-019-7849-z Tanaka T, Ishigamori R. Understanding carcinogenesis for fighting oral cancer. J Oncol. 2011;2011:603740. doi:10.1155/2011/603740 Tao S, Haug U, Kuhn K, Brenner H. Comparison and combination of blood-based inflammatory markers with faecal occult blood tests for non-invasive colorectal cancer screening. Br J Cancer. 2012;106(8):1424-1430. doi:10.1038/bjc.2012.104 Thibodeau, L. A.; Reed, R. B.; Bishop, Y. M.; Kammerman, L. A. Air pollution and human health: a review and reanalysis. Environ. Health Persp. 1980, 34, 165−183. Thomas DS, Fourkala EO, Apostolidou S, et al. Evaluation of serum CEA, CYFRA21-1 and CA125 for the early detection of colorectal cancer using longitudinal preclinical samples. Br J Cancer. 2015;113(2):268-274. doi:10.1038/bjc.2015.202 Toriola AT, Cheng TY, Neuhouser ML, et al. Biomarkers of inflammation are associated with colorectal cancer risk in women but are not suitable as early detection markers. Int J Cancer. 2013;132(11):2648-2658. doi:10.1002/ijc.27942 Tripathy S, Marsland AL, Kinnee EJ, et al. Long-Term Ambient Air Pollution Exposures and Circulating and Stimulated Inflammatory Mediators in a Cohort of Midlife Adults. Environ Health Perspect. 2021;129(5):57007. Turner MC, Krewski D, Diver WR, et al. Ambient Air Pollution and Cancer Mortality in the Cancer Prevention Study II. Environ Health Perspect. 2017;125(8):087013. Published 2017 Aug 21. doi:10.1289/EHP1249 TWEPA. Taiwan Air Quality Monitoring Network. (http://taqm.epa.gov.tw/taqm/en/YearlyDataDownload.aspx. Accessed October 1, 2019.) Ujpál M, Matos O, Bíbok G, Somogyi A, Szabó G, Suba Z. Diabetes and oral tumors in Hungary: epidemiological correlations. Diabetes Care. 2004;27(3):770-774. doi:10.2337/diacare.27.3.770 Valdés Salgado M, Smith P, Opazo MA, Huneeus N. Long-Term Exposure to Fine and Coarse Particulate Matter and COVID-19 Incidence and Mortality Rate in Chile during 2020. Int J Environ Res Public Health. 2021;18(14):7409. Published 2021 Jul 11. doi:10.3390/ijerph18147409 Vankadara S, K P, Balmuri PK, G N, G VR. Evaluation of Serum C-Reactive Protein Levels in Oral Premalignancies and Malignancies: A Comparative Study. J Dent (Tehran). 2018;15(6):358-364. Viehmann A, Hertel S, Fuks K, et al. Long-term residential exposure to urban air pollution, and repeated measures of systemic blood markers of inflammation and coagulation. Occup Environ Med. 2015;72(9):656-663. Villa A, Gohel A. Oral potentially malignant disorders in a large dental population. J Appl Oral Sci. 2014;22(6):473-476. doi:10.1590/1678-775720140254 Vogelstein B, Fearon ER, Hamilton SR, et al. Genetic alterations during colorectal-tumor development. N Engl J Med. 1988;319(9):525-532. doi:10.1056/NEJM198809013190901 Wei H, Liang F, Cheng W, et al. The mechanisms for lung cancer risk of PM2.5: Induction of epithelial-mesenchymal transition and cancer stem cell properties in human non-small cell lung cancer cells. Environ Toxicol. 2017;32(11):2341-2351. doi:10.1002/tox.22437 Winawer SJ, Zauber AG, Ho MN, et al. Prevention of colorectal cancer by colonoscopic polypectomy. The National Polyp Study Workgroup. N Engl J Med. 1993;329(27):1977-1981. doi:10.1056/NEJM199312303292701 World Health Organization. Air quality guidelines: global update 2005: particulate matter, ozone, nitrogen dioxide, and sulfur dioxide. World Health Organization, 2006. Wong CM, Tsang H, Lai HK, et ……… | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80677 | - |
| dc.description.abstract | "背景 細懸浮微粒(PM2.5)是全世界目前備受關注的環境汙染物,其對於人類健康影響仍持續探討中;報導顯示較高的PM2.5與較短的平均餘命及較高死亡率風險皆有相關,除最常被認為與PM2.5有關之肺癌以外,大腸癌、乳癌、肝癌、腎臟癌及婦科相關癌症之死亡皆與PM2.5暴露有關。然而,PM2.5暴露與口腔腫瘤發生風險以及其在大腸直腸癌的多階段癌化過程所扮演的角色卻鮮少被闡述;因此,本論文的研究目的為闡述PM2.5與口腔腫瘤之相關性,考量地域異質性後探討其與口腔癌及口腔癌前病變之關係、量化PM2.5對於糞便潛血陽性的影響以及描述PM2.5在大腸癌三階段癌化進展模型中,是否增加大腸直腸癌發生以及後續自臨床症前期至臨床階段之進程風險。 材料與方法 PM2.5與口腔腫瘤 資料取自2006-2016參與全國口腔癌篩檢計畫,曾經或目前為嚼食檳榔者或抽菸者,以及PM2.5監測站之資料,共3,864,045位受試者被納入本分析中,研究期間共找到154,030位癌前病變及23,286位口腔癌個案,並蒐集年齡、性別、居住區域、使用檳榔、抽菸等個人習慣以及月平均PM2.5濃度等資訊,運用貝氏隨機效應羅吉斯迴歸模型分析PM2.5及癌前病變/口腔癌之關聯性 PM2.5與大腸直腸癌 運用全國大腸癌篩檢中多階段結果及回溯式大型世代追蹤設計,並連結22縣市月平均PM2.5 資料,以探討PM2.5對於短期發炎過程及大腸癌多階段癌化進展之影響。此研究共納入50-69歲於2004-2009年首次參與大腸直腸癌之4,628,995位個案,持續追蹤其篩檢結果直至2016年,並運用階層羅吉斯迴歸模型以及多階段馬可夫迴歸模型評估空氣汙染對糞便潛血陽性(發炎反應指標)以及大腸癌臨床症前期、臨床階段之影響。 結果 PM2.5與口腔癌前病變/口腔癌之分析中,在校正年齡、性別及嚼檳、抽菸等個人習慣後,我們發現相較於低暴露區域PM2.5 (<35 µg/m3),較高PM2.5 (≥35 µg/m3)暴露區域有11% (aRR=1.11; 95% CI: 1.09-1.13)較高之癌前腫瘤及55% (aRR=1.55; 95% CI: 1.49-1.60)較高之口腔癌風險,隨著PM2.5劑量增加有更高之風險相關也於本研究中闡述。 於PM2.5與大腸癌之分析中,高PM2.5暴露(≥35 µg/m3)與11% (95%CI: 10%-12%)較高之糞便潛血陽性有顯著相關,運用彰化縣社區篩檢資料中更多的風險因子,更進一步驗證PM2.5與大腸癌發炎反應指標(糞便潛血陽性)有相關。另外,高PM2.5暴露增加14% (95%CI: 10%-18%)大腸癌臨床症前期之風險,也顯著增加21% (95%CI: 14%-28%) 後續癌化進展從臨床症前期至臨床期之風險;再者,運用年平均PM2.5以及一個月中超過35 µg/m3的天數等指標,皆發現較高PM2.5暴露有顯著較高腸癌癌化之風險。 結論 台灣高PM2.5暴露區域之個案有較高之口腔癌前病變或口腔癌之風險,未來可運用更精確之個人PM2.5暴露,更進一步探討PM2.5與口腔腫瘤之相關性。此外,短期及長期PM2.5暴露與大腸癌多階段進展風險皆有相關,此研究分析有助於針對暴露在高PM2.5的個案,設計更好的大腸癌初級及二級預防策略。" | zh_TW |
| dc.description.provenance | Made available in DSpace on 2022-11-24T03:12:37Z (GMT). No. of bitstreams: 1 U0001-1910202113194000.pdf: 2888844 bytes, checksum: 124d3f5cb17f29c4a5c0950bb807f096 (MD5) Previous issue date: 2021 | en |
| dc.description.tableofcontents | 致謝 3 中文摘要 4 Abstract 6 Table of Contents 10 List of Tables 12 List of Figures 13 Chapter 1. Introduction 14 1.1 Global burden of PM2.5 14 1.2 Components and sources of PM2.5 exposure 16 1.3 Evidence of PM2.5 and cancer 19 1.4 Study aims 21 Chapter 2. Literature Review 22 2.1 Particulate matter and life expectancy/ mortality 22 2.2 Particulate matter and OC 25 2.3 Particulate matter and CRC 28 2.4 Potential risk factors related to OC and CRC 31 2.5 Natural history of cancer 41 Chapter 3: Materials and Methods 45 3.1 PM2.5 exposure measurements 45 3.2 PM2.5 and Oral Cancer 49 3.3 PM2.5 and Colorectal Cancer 52 Chapter 4: Results 60 4.1 PM2.5 exposure levels by city/county in Taiwan 60 4.2 Association between PM2.5 and OC 62 4.2.1 The basic demographic of study subjects and PM2.5 by county/city 62 4.2.2 PM2.5 and Risk of OPMD/OC 67 4.2.3 PM2.5 and Risk of OPMD 74 4.2.4 PM2.5 and Risk of OC 83 4.3 The impact of PM2.5 on CRC Carcinogenesis 91 4.3.1 Demographic characteristics and PM2.5 levels by CRC detection modes 91 4.3.2 Effects of PM2.5 on FIT-positive individuals 93 4.3.3 Evaluate the effects of PM2.5 on FIT-positive individuals CHCIS cohort 96 Chapter 5: Discussion 103 5.1 PM2.5 and OC 103 5.2 PM2.5 and CRC 107 5.3 Future Work 114 Chapter 6: Conclusion 116 References 117 | |
| dc.language.iso | en | |
| dc.subject | 世代追蹤研究 | zh_TW |
| dc.subject | 細懸浮微粒 | zh_TW |
| dc.subject | 癌前病變 | zh_TW |
| dc.subject | 口腔癌 | zh_TW |
| dc.subject | 糞便潛血濃度 | zh_TW |
| dc.subject | 大腸直腸癌 | zh_TW |
| dc.subject | 多階段癌化進展 | zh_TW |
| dc.subject | Fine particulate matter | en |
| dc.subject | cohort study | en |
| dc.subject | carcinogenesis | en |
| dc.subject | colorectal cancer | en |
| dc.subject | fecal hemoglobin concentration | en |
| dc.subject | oral cancer | en |
| dc.subject | oral potentially malignant disorder | en |
| dc.title | 環境細懸浮微粒(PM2.5)暴露影響與口腔癌及大腸癌癌症進展風險相關性探討 | zh_TW |
| dc.title | Environmental PM2.5 Exposure Effect in Association with Oral Cancer and Colorectal Cancer Carcinogenesis | en |
| dc.date.schoolyear | 109-2 | |
| dc.description.degree | 博士 | |
| dc.contributor.oralexamcommittee | 黃彥棕(Hsin-Tsai Liu),潘文驥(Chih-Yang Tseng),陳保中,于明暉,嚴明芳,邱瀚模 | |
| dc.subject.keyword | 細懸浮微粒,癌前病變,口腔癌,糞便潛血濃度,大腸直腸癌,多階段癌化進展,世代追蹤研究, | zh_TW |
| dc.subject.keyword | Fine particulate matter,oral potentially malignant disorder,oral cancer,fecal hemoglobin concentration,colorectal cancer,carcinogenesis,cohort study, | en |
| dc.relation.page | 133 | |
| dc.identifier.doi | 10.6342/NTU202103871 | |
| dc.rights.note | 同意授權(限校園內公開) | |
| dc.date.accepted | 2021-10-21 | |
| dc.contributor.author-college | 公共衛生學院 | zh_TW |
| dc.contributor.author-dept | 環境與職業健康科學研究所 | zh_TW |
| 顯示於系所單位: | 環境與職業健康科學研究所 | |
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