Cooking Oil Fumes and Lung Cancer: A Review of the Literature in the Context of the U.S. Population

Springer Science and Business Media LLC - Tập 15 Số 3 - Trang 646-652 - 2013
Trevor Lee1, Francesca Gany2
1Memorial-Sloan Kettering Cancer Center
2Immigrant Health and Cancer Disparities Service, Memorial Sloan-Kettering Cancer Center, New York, USA

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Tài liệu tham khảo

Li S, Pan D, Wang G. Analysis of polycyclic aromatic hydrocarbons in cooking oil fumes. Arch Environ Health. 1994;49:119–22.

Gabrielson E. Worldwide trends in lung cancer pathology. Respirology. 2006;11:533–8.

Lam WK, White NW, Chan-Yeung MM. Lung cancer epidemiology and risk factors in Asia and Africa. Int J Tuberc Lung Dis. 2004;8:1045–57.

Parkin DM, Bray F, Ferlay J, Pisani P. Global cancer statistics, 2002. CA Cancer J Clin. 2005;55:74–108.

Zhao P, Dai M, Chen W, Li N. Cancer trends in China. Jpn J Clin Oncol. 2010;40:281–5.

Sun S, Schiller JH, Gazdar AF. Lung cancer in never smokers–a different disease. Nat Rev Cancer. 2007;7:778–90.

Wu LL, Chiou CC, Chang PY, Wu JT. Urinary 8-OHdG: a marker of oxidative stress to DNA and a risk factor for cancer, atherosclerosis and diabetics. Clin Chim Acta. 2004;339:1–9.

Zhou Y, Wang C, Yao W, et al. COPD in Chinese nonsmokers. Eur Respir J. 2009;33:509–18.

Pan CH, Chan CC, Wu KY. Effects on Chinese restaurant workers of exposure to cooking oil fumes: a cautionary note on urinary 8-hydroxy-2′-deoxyguanosine. Cancer Epidemiol Biomarkers Prev. 2008;17:3351–7.

Svedahl S, Svendsen K, Qvenild T, Sjaastad AK, Hilt B. Short term exposure to cooking fumes and pulmonary function. J Occup Med Toxicol. 2009;4:9.

Cellular Classification of NSCLC. National Cancer Institute. http://www.cancer.gov/cancertopics/pdq/treatment/non-small-cell-lung/healthprofessional/page2#Section_361 . Published 2011. Accessed 11/2011.

Le CH, Ko YC, Cheng LS, et al. The heterogeneity in risk factors of lung cancer and the difference of histologic distribution between genders in Taiwan. Cancer Causes Control. 2001;12:289–300.

Li M, Yin Z, Guan P, et al. XRCC1 polymorphisms, cooking oil fume and lung cancer in Chinese women nonsmokers. Lung Cancer. 2008;62:145–51.

Wu SC, Yen GC. Effects of cooking oil fumes on the genotoxicity and oxidative stress in human lung carcinoma (A-549) cells. Toxicol In Vitro. 2004;18:571–80.

Yang SC, Jenq SN, Kang ZC, Lee H. Identification of benzo[a]pyrene 7,8-diol 9,10-epoxide N2-deoxyguanosine in human lung adenocarcinoma cells exposed to cooking oil fumes from frying fish under domestic conditions. Chem Res Toxicol. 2000;13:1046–50.

Hung HS, Wu WJ, Cheng YW, Wu MF, Chang KL, Lee H. Cooking oil fumes improve lung adenocarcinoma cell survival through c-IAP2 induction. J Toxicol Environ Health A. 2005;68:1525–35.

Zhong L, Goldberg MS, Parent ME, Hanley JA. Risk of developing lung cancer in relation to exposure to fumes from Chinese-style cooking. Scand J Work Environ Health. 1999;25:309–16.

Hanley AJ, Choi BC, Holowaty EJ. Cancer mortality among Chinese migrants: a review. Int J Epidemiol. 1995;24:255–65.

Bouchardy C, Parkin DM, Khlat M. Cancer mortality among Chinese and South-East Asian migrants in France. Int J Cancer. 1994;58:638–43.

McCracken M, Olsen M, Chen MS Jr, et al. Cancer incidence, mortality, and associated risk factors among Asian Americans of Chinese, Filipino, Vietnamese, Korean, and Japanese ethnicities. CA Cancer J Clin. 2007;57:190–205.

Stellman SD, Wang QS. Cancer mortality in Chinese immigrants to New York City. Comparison with Chinese in Tianjin and with United States-born whites. Cancer. 1994;73:1270–5.

Green JP, Brophy P. Carcinoma of the lung in nonsmoking Chinese women. West J Med. 1982;136:291–4.

McCredie M, Williams S, Coates M. Cancer mortality in East and Southeast Asian migrants to New South Wales, Australia, 1975–1995. Br J Cancer. 1999;79:1277–82.

Chiou HL, Wu MF, Chien WP, et al. NAT2 fast acetylator genotype is associated with an increased risk of lung cancer among never-smoking women in Taiwan. Cancer Lett. 2005;223:93–101.

Coggon D, Pannett B, Osmond C, Acheson ED. A survey of cancer and occupation in young and middle aged men. I. Cancers of the respiratory tract. Br J Ind Med. 1986;43:332–8.

Gao YT, Blot WJ, Zheng W, et al. Lung cancer among Chinese women. Int J Cancer. 1987;40:604–9.

Ke Y, Cheng J, Zhang Z, Zhang R, Shuai Z, Wu T. Increased levels of oxidative DNA damage attributable to cooking-oil fumes exposure among cooks. Inhal Toxicol. 2009;21:682–7.

Kleinerman R, Wang Z, Lubin J, Zhang S, Metayer C, Brenner A. Lung cancer and indoor air pollution in rural china. Ann Epidemiol. 2000;10:469.

Ko YC, Cheng LS, Lee CH, et al. Chinese food cooking and lung cancer in women nonsmokers. Am J Epidemiol. 2000;151:140–7.

Ko YC, Lee CH, Chen MJ, et al. Risk factors for primary lung cancer among non-smoking women in Taiwan. Int J Epidemiol. 1997;26:24–31.

Liu Q, Sasco AJ, Riboli E, Hu MX. Indoor air pollution and lung cancer in Guangzhou, People’s Republic of China. Am J Epidemiol. 1993;137:145–54.

Metayer C, Wang Z, Kleinerman RA, et al. Cooking oil fumes and risk of lung cancer in women in rural Gansu. China. Lung Cancer. 2002;35:111–7.

Seow A, Poh WT, Teh M, et al. Fumes from meat cooking and lung cancer risk in Chinese women. Cancer Epidemiol Biomarkers Prev. 2000;9:1215–21.

Shen XB, Wang GX, Huang YZ, Xiang LS, Wang XH. Analysis and estimates of attributable risk factors for lung cancer in Nanjing, China. Lung Cancer. 1996;14(Suppl 1):S107–12.

Shen XB, Wang GX, Zhou BS. Relation of exposure to environmental tobacco smoke and pulmonary adenocarcinoma in non-smoking women: a case control study in Nanjing. Oncol Rep. 1998;5:1221–3.

Wang TJ, Zhou BS, Shi JP. Lung cancer in nonsmoking Chinese women: a case-control study. Lung Cancer. 1996;14(Suppl 1):S93–8.

Wang XR, Chiu YL, Qiu H, Au JS, Yu IT. The roles of smoking and cooking emissions in lung cancer risk among Chinese women in Hong Kong. Ann Oncol. 2009;20:746–51.

Wu MT, Lee LH, Ho CK, et al. Environmental exposure to cooking oil fumes and cervical intraepithelial neoplasm. Environ Res. 2004;94:25–32.

Yenugadhati N, Birkett NJ, Momoli F, Krewski D. Occupations and lung cancer: a population-based case-control study in British Columbia. J Toxicol Environ Health A. 2009;72:658–75.

Yu IT, Chiu YL, Au JS, Wong TW, Tang JL. Dose-response relationship between cooking fumes exposures and lung cancer among Chinese nonsmoking women. Cancer Res. 2006;66:4961–7.

Zhong L, Goldberg MS, Gao YT, Jin F. Lung cancer and indoor air pollution arising from Chinese-style cooking among nonsmoking women living in Shanghai, China. Epidemiology. 1999;10:488–94.

Zhou BS, Wang TJ, Guan P, Wu JM. Indoor air pollution and pulmonary adenocarcinoma among females: a case-control study in Shenyang, China. Oncol Rep. 2000;7:1253–9.

Chan-Yeung M, Koo LC, Ho JC, et al. Risk factors associated with lung cancer in Hong Kong. Lung Cancer. 2003;40:131–40.

Svendsen K, Jensen HN, Sivertsen I, Sjaastad AK. Exposure to cooking fumes in restaurant kitchens in Norway. Ann Occup Hyg. 2002;46:395–400.

Vainiotalo S, Matveinen K. Cooking fumes as a hygienic problem in the food and catering industries. Am Ind Hyg Assoc J. 1993;54:376–82.

Wei See S, Karthikeyan S, Balasubramanian R. Health risk assessment of occupational exposure to particulate-phase polycyclic aromatic hydrocarbons associated with Chinese, Malay and Indian cooking. J Environ Monit. 2006;8:369–76.

Yin Z, Su M, Li X, et al. ERCC2, ERCC1 polymorphisms and haplotypes, cooking oil fume and lung adenocarcinoma risk in Chinese non-smoking females. J Exp Clin Cancer Res. 2009;28:153.

Lee CH, Yang SF, Peng CY, et al. The precancerous effect of emitted cooking oil fumes on precursor lesions of cervical cancer. Int J Cancer. 2010;127:932–41.

Cherng SH, Huang KH, Yang SC, Wu TC, Yang JL, Lee H. Human 8-oxoguanine DNA glycosylase 1 mRNA expression as an oxidative stress exposure biomarker of cooking oil fumes. J Toxicol Environ Health A. 2002;65:265–78.

Chang LW, Lo WS, Lin P. Trans, trans-2,4-decadienal, a product found in cooking oil fumes, induces cell proliferation and cytokine production due to reactive oxygen species in human bronchial epithelial cells. Toxicol Sci. 2005;87:337–43.

Chang YC, Lin P. Trans, trans-2,4-decadienal induced cell proliferation via p27 pathway in human bronchial epithelial cells. Toxicol Appl Pharmacol. 2008;228:76–83.

Chen H, Yang M, Ye S. A study on genotoxicity of cooking fumes from rapeseed oil. Biomed Environ Sci. 1992;5:229–35.

Chiang TA, Pei-Fen W, Ying LS, Wang LF, Ko YC. Mutagenicity and aromatic amine content of fumes from heated cooking oils produced in Taiwan. Food Chem Toxicol. 1999;37:125–34.

Chiang TA, Wu PF, Ko YC. Prevention of exposure to mutagenic fumes produced by hot cooking oil in Taiwanese kitchens. Environ Mol Mutagen. 1998;31:92–6.

Chiang TA, Wu PF, Ko YC. Identification of carcinogens in cooking oil fumes. Environ Res. 1999;81:18–22.

Chiang TA, Wu PF, Wang LF, Lee H, Lee CH, Ko YC. Mutagenicity and polycyclic aromatic hydrocarbon content of fumes from heated cooking oils produced in Taiwan. Mutat Res. 1997;381:157–61.

Dung CH, Wu SC, Yen GC. Genotoxicity and oxidative stress of the mutagenic compounds formed in fumes of heated soybean oil, sunflower oil and lard. Toxicol In Vitro. 2006;20:439–47.

Hung HS, Wu WJ, Cheng YW, Wu TC, Chang KL, Lee H. Association of cooking oil fumes exposure with lung cancer: involvement of inhibitor of apoptosis proteins in cell survival and proliferation in vitro. Mutat Res. 2007;628:107–16.

Lin JS, Chuang KT, Huang MS, Wei KM. Emission of ethylene oxide during frying of foods in soybean oil. Food Chem Toxicol. 2007;45:568–74.

Lin SY, Tsai SJ, Wang LH, Wu MF, Lee H. Protection by quercetin against cooking oil fumes-induced DNA damage in human lung adenocarcinoma CL-3 cells: role of COX-2. Nutr Cancer. 2002;44:95–101.

Pellizzari ED, Michael LC, Thomas KW, Shields PG, Harris C. Identification of 1,3-butadiene, benzene, and other volatile organics from wok oil emissions. J Expo Anal Environ Epidemiol. 1995;5:77–87.

Qu YH, Xu GX, Zhou JZ, et al. Genotoxicity of heated cooking oil vapors. Mutat Res. 1992;298:105–11.

Shields PG, Xu GX, Blot WJ, et al. Mutagens from heated Chinese and U.S. cooking oils. J Natl Cancer Inst. 1995;87:836–41.

Tung YH, Ko JL, Liang YF, Yin L, Pu Y, Lin P. Cooking oil fume-induced cytokine expression and oxidative stress in human lung epithelial cells. Environ Res. 2001;87:47–54.

Wang CK, Chang LW, Chang H, et al. Pulmonary changes induced by trans, trans-2,4-decadienal, a component of cooking oil fumes. Eur Respir J. 2010;35:667–75.

Wu M, Che W, Zhang Z. Enhanced sensitivity to DNA damage induced by cooking oil fumes in human OGG1 deficient cells. Environ Mol Mutagen. 2008;49:265–75.

Wu PF, Chiang TA, Ko YC, Lee H. Genotoxicity of fumes from heated cooking oils produced in Taiwan. Environ Res. 1999;80:122–6.

Wu PF, Chiang TA, Wang LF, Chang CS, Ko YC. Nitro-polycyclic aromatic hydrocarbon contents of fumes from heated cooking oils and prevention of mutagenicity by catechin. Mutat Res. 1998;403:29–34.

Wu SC, Yen GC, Sheu F. Mutagenicity and identification of mutagenic compounds of fumes obtained from heating peanut oil. J Food Prot. 2001;64:240–5.

Yang CC, Jenq SN, Lee H. Characterization of the carcinogen 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline in cooking aerosols under domestic conditions. Carcinogenesis. 1998;19:359–63.

Hunter AM, LaCasse EC, Korneluk RG. The inhibitors of apoptosis (IAPs) as cancer targets. Apoptosis. 2007;12:1543–68.

Waris G, Ahsan H. Reactive oxygen species: role in the development of cancer and various chronic conditions. J Carcinog. 2006;5:14.

Bhangar S, Mullen NA, Hering SV, Kreisberg NM, Nazaroff WW. Ultrafine particle concentrations and exposures in seven residences in northern California. Indoor Air. 2011;21:132–44.

Evans GJ, Peers A, Sabaliauskas K. Particle dose estimation from frying in residential settings. Indoor Air. 2008;18:499–510.

Terrazas A, Batalova J. Chinese immigrants in the United State. Migration Policy Institute. http://www.migrationinformation.org/USFocus/display.cfm?ID=781 . Published 5/2010. Accessed 1/2012.

Serving while sick: High risks and low benefits for the nation’s restaurant workforce, and their impact on the consumer. Restaurant Opportunities Center. http://rocunited.org/bloc/roc-serving-while-sick/ . Published 2012. Accessed 1/2012.

Article 81: Food preparation and food establishments. New York Department of Health and Mental Hygiene. www.nyc.gov/html/doh/downloads/camp-article81-healthcode.pdf . Published 2004. Accessed 1/2012.