Exposure to Environmental Chemicals and Human Bone Health; A Systematic Review and Meta-Analysis
Tóm tắt
Từ khóa
Tài liệu tham khảo
Ajiro Y, Tokuhashi Y, Matsuzaki H, Nakajima S, Ogawa T (2010) Impact of passive smoking on the bones of rats. Orthopedics 33:90–95
Akbal A, Yilmaz H, Tutkun E (2014) Arsenic exposure associated with decreased bone mineralization in male. Aging Male 17:256–258
Akhter MP, Lund AD, Gairola CG (2005) Bone biomechanical property deterioration due to tobacco smoke exposure. Calcif Tissue Int 77:319–326
Al-Bashaireh AM, Haddad LG, Weaver M, Chengguo X, Kelly DL, Yoon S (2018) The effect of tobacco smoking on bone mass: an overview of pathophysiologic mechanisms. J Osteoporos 2018:1206235
Banjabi AA, Li AJ, Kumosani TA, Yousef JM, Kannan K (2020) Serum concentrations of perfluoroalkyl substances and their association with osteoporosis in a population in Jeddah Saudi Arabia. Environ Res 187:109676
Baradaran Mahdavi S, Kelishadi R (2021) Air Pollution and Bone Mineral Density. In: Duncan LT (ed) Advances in Health and Disease. Nova Science Publishers Inc, New York, pp 143–172
Baradaran Mahdavi S, Kelishadi R (2023) DNA methylation as a potential mediator between environmental pollutants and osteoporosis; a current hypothesis. Bioimpacts 13:521–523
Baradaran Mahdavi S, Daniali SS, Farajzadegan Z, Bahreynian M, Riahi R, Kelishadi R (2020) Association between maternal smoking and child bone mineral density: a systematic review and meta-analysis. Environ Sci Pollut Res Int 27:23538–23549
Beard J, Jong K, Beard J, Marshall S, Newton R, Triplett-mcbride T, Humphries B, Bronks R (2000) 1, 1, 1-Trichloro-2, 2-bis (p-Chlorophenyl)-Ethane (DDT) and reduced bone mineral density. Arch Environ Health 55:177–180
Bohannon AD, Cooper GS, Wolff MS, Mieier DE (2000) Exposure to 1,1-dichloro-2,2-bis(p-chlorophenyl)ethylene (DDT) in relation to bone mineral density and rate of bone loss in menopausal women. Arch Environ Health 55:386–391
Brzoska MM, Moniuszko-Jakoniuk J (2004) Low-level lifetime exposure to cadmium decreases skeletal mineralization and enhances bone loss in aged rats. Bone 35:1180–1191
Buckley JP, Kuiper JR, Lanphear BP, Calafat AM, Cecil KM, Chen A, Xu Y, Yolton K, Kalkwarf HJ, Braun JM (2021) Associations of maternal serum perfluoroalkyl substances concentrations with early adolescent bone mineral content and density: the health outcomes and measures of the environment (HOME) study. Environ Health Perspect. https://doi.org/10.1289/EHP9424
Cai SF, Zhu JH, Sun LL, Fan CH, Zhong YH, Shen Q, Li YJ (2019) Association between urinary triclosan with bone mass density and osteoporosis in US adult women, 2005–2010. J Clin Endocrinol Metab 104:4531–4538
Chang KH, Chang MY, Muo CH, Wu TN, Hwang BF, Chen CY, Lin TH, Kao CH (2015) Exposure to air pollution increases the risk of osteoporosis: a nationwide longitudinal study. Medicine (baltimore) 94:e733
Chen X, Gan C, Zhu G, Jin T (2013) Benchmark dose for estimation of cadmium reference level for osteoporosis in a Chinese female population. Food Chem Toxicol 55:592–595
Cho GJ, Park HT, Shin JH, Hur JY, Kim SH, Lee KW, Kim T (2012) The relationship between blood mercury level and osteoporosis in postmenopausal women. Menopause 19:576–581
Cluett R, Seshasayee SM, Rokoff LB, Rifas-Shiman SL, Ye XY, Calafat AM, Gold DR, Coull B, Gordon CM, Rosen CJ, Oken E, Sagiv SK, Fleisch AF (2019) Per- and polyfluoroalkyl substance plasma concentrations and bone mineral density in midchildhood: a cross-sectional study (Project Viva, United States). Environ Health Perspect. https://doi.org/10.1289/EHP4918
Cooper C, Westlake S, Harvey N, Dennison E (2009) Developmental origins of osteoporotic fracture. Adv Exp Med Biol 639:217–236
Côté S, Ayotte P, Dodin S, Blanchet C, Mulvad G, Petersen HS, Gingras S, Dewailly É (2006) Plasma organochlorine concentrations and bone ultrasound measurements: a cross-sectional study in peri-and postmenopausal Inuit women from Greenland. Environ Health 5:1–10
Davis JA, Gift JS, Zhao QJ (2011) Introduction to benchmark dose methods and U.S. EPA’s benchmark dose software (BMDS) version 2.1.1. Toxicol Appl Pharmacol 254:181–191
DeFlorio-Barker SA, Turyk ME (2016) Associations between bone mineral density and urinary phthalate metabolites among post-menopausal women: a cross-sectional study of NHANES data 2005–2010. Int J Environ Health Res 26:326–345
Di Nisio A, De Rocco PM, Giadone A, Rocca M, Guidolin D, Foresta C (2020) Perfluoroalkyl substances and bone health in young men: a pilot study. Endocrine 67:678–684
Duan W, Meng X, Sun Y, Jia C (2018) Association between polycyclic aromatic hydrocarbons and osteoporosis: data from NHANES, 2005–2014. Arch Osteoporos 13:112
Elonheimo H, Lange R, Tolonen H, Kolossa-Gehring M (2021) Environmental substances associated with osteoporosis–a scoping review. Int J Environ Res Public Health 18:738
Eskenazi B, Warner M, Sirtori M, Fuerst T, Rauch SA, Brambilla P, Mocarelli P, Rubinacci A (2014) Serum dioxin concentrations and bone density and structure in the Seveso women’s health study. Environ Health Perspect 122:51–57
Finnila MA, Zioupos P, Herlin M, Miettinen HM, Simanainen U, Hakansson H, Tuukkanen J, Viluksela M, Jamsa T (2010) Effects of 2,3,7,8-tetrachlorodibenzo-p-dioxin exposure on bone material properties. J Biomech 43:1097–1103
Frederiksen H, Kranich SK, Jørgensen N, Taboureau O, Petersen JH, Andersson A-M (2013) Temporal variability in urinary phthalate metabolite excretion based on spot, morning, and 24-h urine samples: considerations for epidemiological studies. Environ Sci Technol 47:958–967
Fukushi JI, Tokunaga S, Nakashima Y, Motomura G, Mitoma C, Uchi H, Furue M, Iwamoto Y (2016) Effects of dioxin-related compounds on bone mineral density in patients affected by the Yusho incident. Chemosphere 145:25–33
Gao SG, Li KH, Xu M, Jiang W, Shen H, Luo W, Xu WS, Tian J, Lei GH (2011) Bone turnover in passive smoking female rat: relationships to change in bone mineral density. BMC Musculoskelet Disord 12:131
Gao M, Sun L, Xu K, Zhang L, Zhang Y, He T, Sun R, Huang H, Zhu J, Zhang Y (2020) Association between low-to-moderate fluoride exposure and bone mineral density in Chinese adults: non-negligible role of RUNX2 promoter methylation. Ecotoxicol Environ Saf 203:111031
Glynn AW, Michaëlsson K, Lind PM, Wolk A, Aune M, Atuma S, Darnerud PO, Mallmin H (2000) Organochlorines and bone mineral density in Swedish men from the general population. Osteoporos Int 11:1036–1042
Gunson DE, Kowalczyk DF, Shoop CR, Ramberg CF Jr (1982) Environmental zinc and cadmium pollution associated with generalized osteochondrosis, osteoporosis, and nephrocalcinosis in horses. J Am Vet Med Assoc 180:295–299
Guo J, Huang Y, Bian S, Zhao C, Jin Y, Yu D, Wu X, Zhang D, Cao W, Jing F, Chen G (2018) Associations of urinary polycyclic aromatic hydrocarbons with bone mass density and osteoporosis in U.S. adults, NHANES 2005–2010. Environ Pollut 240:209–218
Hodgson S, Thomas L, Fattore E, Lind PM, Alfven T, Hellström L, Håkansson H, Carubelli G, Fanelli R, Jarup L (2008) Bone mineral density changes in relation to environmental PCB exposure. Environ Health Perspect 116:1162–1166
Hsu Y-H, Kiel DP (2012) Genome-wide association studies of skeletal phenotypes: what we have learned and where we are headed. J Clin Endocrinol Metab 97:E1958–E1977
Hu Y, Liu G, Rood J, Liang LM, Bray GA, de Jonge L, Coull B, Furtado JD, Qi L, Grandjean P, Sun Q (2019) Perfluoroalkyl substances and changes in bone mineral density: a prospective analysis in the POUNDS-LOST study. Environ Res 179:108775
Ilvesaro J, Pohjanvirta R, Tuomisto J, Viluksela M, Tuukkanen J (2005) Bone resorption by aryl hydrocarbon receptor-expressing osteoclasts is not disturbed by TCDD in short-term cultures. Life Sci 77:1351–1366
Jackson RD, Mysiw WJ (2014) Insights into the epidemiology of postmenopausal osteoporosis: the Women’s Health Initiative. Semin Reprod Med 32:454–462
Jalili C, Kazemi M, Taheri E, Mohammadi H, Boozari B, Hadi A, Moradi S (2020) Exposure to heavy metals and the risk of osteopenia or osteoporosis: a systematic review and meta-analysis. Osteoporos Int 31:1671–1682
James KA, Meliker JR (2013) Environmental cadmium exposure and osteoporosis: a review. Int J Public Health 58:737–745
Jeddy Z, Tobias JH, Taylor EV, Northstone K, Flanders WD, Hartman TJ (2018) Prenatal concentrations of perfluoroalkyl substances and bone health in British girls at age 17. Arch Osteoporos. https://doi.org/10.1007/s11657-018-0498-5
Khalil N, Chen A, Lee M, Czerwinski SA, Ebert JR, De Witt JC, Kannan K (2016) Association of perfluoroalkyl substances, bone mineral density, and osteoporosis in the U.S. population in NHANES 2009–2010. Environ Health Perspect 124:81–87
Khalil N, Ebert JR, Honda M, Lee M, Nahhas RW, Koskela A, Hangartner T, Kannan K (2018) Perfluoroalkyl substances, bone density, and cardio-metabolic risk factors in obese 8–12 year old children: a pilot study. Environ Res 160:314–321
Kietz S, Thomsen JS, Matthews J, Pettersson K, Ström A, Gustafsson J-Å (2004) The Ah receptor inhibits estrogen-induced estrogen receptor β in breast cancer cells. Biochem Biophys Res Commun 320:76–82
Kim TS, Kim CY, Lee HK, Kang IH, Kim MG, Jung KK, Kwon YK, Nam HS, Hong SK, Kim HS, Yoon HJ, Rhee GS (2011) Estrogenic activity of persistent organic pollutants and parabens based on the stably transfected human estrogen receptor-α transcriptional activation assay (OECD TG 455). Toxicol Res 27:181–184
Kim DH, Oh CH, Hwang YC, Jeong IK, Ahn KJ, Chung HY, Chang JS (2012) Serum bisphenol a concentration in postmenopausal women with osteoporosis. J Bone Metab 19:87–93
Kim S, Kim S, Won S, Choi K (2017) Considering common sources of exposure in association studies-urinary benzophenone-3 and DEHP metabolites are associated with altered thyroid hormone balance in the NHANES 2007–2008. Environ Int 107:25–32
Kimball JS, Johnson JP, Carlson DA (2021) Oxidative stress and osteoporosis. J Bone Joint Surg Am 103:1451–1461
Kuiper JR, Braun JM, Calafat AM, Lanphear BP, Cecil KM, Chen AM, Xu YY, Yolton K, Kalkwarf HJ, Buckley JP (2022) Associations of pregnancy phthalate concentrations and their mixture with early adolescent bone mineral content and density: the health outcomes and measures of the environment (HOME) study. BONE 154:116251
Lau C, Anitole K, Hodes C, Lai D, Pfahles-Hutchens A, Seed J (2007) Perfluoroalkyl acids: a review of monitoring and toxicological findings. Toxicol Sci 99:366–394
Law MR, Hackshaw AK (1997) A meta-analysis of cigarette smoking, bone mineral density and risk of hip fracture: recognition of a major effect. BMJ 315:841–846
Lin LY, Wen LL, Su TC, Chen PC, Lin CY (2014) Negative association between serum perfluorooctane sulfate concentration and bone mineral density in US premenopausal women: NHANES, 2005–2008. J Clin Endocrinol Metab 99:2173–2180
Lind PM, Milnes MR, Lundberg R, Bermudez D, Orberg JA, Guillette LJ Jr (2004) Abnormal bone composition in female juvenile American alligators from a pesticide-polluted lake (Lake Apopka, Florida). Environ Health Perspect 112:359–362
Liu JJ, Fu SB, Jiang J, Tang XL (2021) Association between outdoor particulate air pollution and the risk of osteoporosis: a systematic review and meta-analysis. Osteoporos Int 32:1911–1919
Sadegh Baradaran Mahdavi, Sara Zamani, Roya Riahi, Ensiyeh Taheri BV, Roya Kelishadi Exposure to environmental chemicals and human bone health; a systematic review and meta-analysis. PROSPERO 2022 CRD42022319232
Manocha A, Srivastava LM, Bhargava S (2017) Lead as a risk factor for osteoporosis in post-menopausal women. Indian J Clin Biochem 32:261–265
Marini F, Cianferotti L, Brandi M (2016) Epigenetic mechanisms in bone biology and osteoporosis: can they drive therapeutic choices? Int J Mol Sci 17:1329
Martiniakova M, Bobonova I, Omelka R, Grosskopf B, Chovancova H, Spankova J, Toman R (2013) Simultaneous subchronic exposure to selenium and diazinon as possible risk factor for osteoporosis in adult male rats. Acta Vet Scand 55:81
Mi KB, Min JY (2014) Urinary phthalate metabolites and the risk of low bone mineral density and osteoporosis in older women. J Clin Endocrinol Metab 99:E1997–E2003
Nguyen TV (2017) Air pollution: a largely neglected risk factor for osteoporosis. Lancet Planet Health 1:e311–e312
Noirrit-Esclassan E, Valera M-C, Tremollieres F, Arnal J-F, Lenfant F, Fontaine C, Vinel A (2021) Critical role of estrogens on bone homeostasis in both male and female: from physiology to medical implications. Int J Mol Sci 22:1568
Page MJ et al (2021) The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ 372:n71
Pizzorno J, Pizzorno L (2021) Environmental toxins are a major cause of bone loss. Integr Med (encinitas) 20:10–17
Pouresmaeili F, Kamalidehghan B, Kamarehei M, Goh YM (2018) A comprehensive overview on osteoporosis and its risk factors. Ther Clin Risk Manag 14:2029–2049
Preau JL Jr, Wong LY, Silva MJ, Needham LL, Calafat AM (2010) Variability over 1 week in the urinary concentrations of metabolites of diethyl phthalate and di(2-ethylhexyl) phthalate among eight adults: an observational study. Environ Health Perspect 118:1748–1754
Ranzani OT, Milà C, Kulkarni B, Kinra S, Tonne C (2020) Association of ambient and household air pollution with bone mineral content among adults in peri-urban South India. JAMA Netw Open 3:e1918504–e1918504
Reeves KW, Vieyra G, Grimes NP, Meliker J, Jackson RD, Wactawski-Wende J, Wallace R, Zoeller RT, Bigelow C, Hankinson SE, Manson JE, Cauley JA, Calafat AM (2021) Urinary phthalate biomarkers and bone mineral density in postmenopausal women. J Clin Endocrinol Metab 106:E2567–E2579
Salari N, Ghasemi H, Mohammadi L, Behzadi MH, Rabieenia E, Shohaimi S, Mohammadi M (2021) The global prevalence of osteoporosis in the world: a comprehensive systematic review and meta-analysis. J Orthop Surg Res 16:609
Sun Y, Sun D, Zhou Z, Zhu G, Lei L, Zhang H, Chang X, Jin T (2008) Estimation of benchmark dose for bone damage and renal dysfunction in a Chinese male population occupationally exposed to lead. Ann Occup Hyg 52:527–533
Suwazono Y, Sand S, Vahter M, Skerfving S, Lidfeldt J, Akesson A (2010) Benchmark dose for cadmium-induced osteoporosis in women. Toxicol Lett 197:123–127
The National Heart L, and Blood Institute (NHLBI) (2022): Study Quality Assessment Tools
van Meurs JB, Boer CG, Lopez-Delgado L, Riancho JA (2019) Role of epigenomics in bone and cartilage disease. J Bone Miner Res 34:215–230
van Zwol-Janssens C, Trasande L, Asimakopoulos AG, Martinez-Moral MP, Kannan K, Philips EM, Rivadeneira F, Jaddoe VWV, Santos S (2020) Fetal exposure to bisphenols and phthalates and childhood bone mass: a population-based prospective cohort study. Environ Res 186:109602
Vitku-Kubatova J, Kolatorova L, Franekova L, Blahos J, Simkova M, Duskova M, Skodova T, Starka L (2018) Endocrine disruptors of the bisphenol and paraben families and bone metabolism. Physiol Res 67:S455–S464
Wallin E, Rylander L, Jönssson BAG, Lundh T, Isaksson A, Hagmar L (2005) Exposure to CB-153 and p, p′-DDE and bone mineral density and bone metabolism markers in middle-aged and elderly men and women. Osteoporos Int 16:2085–2094
Wang L, Hu W, Xia Y, Wang X (2017) Associations between urinary polycyclic aromatic hydrocarbon metabolites and serum testosterone in US adult males: National Health and nutrition examination survey 2011–2012. Environ Sci Pollut Res 24:7607–7616
Wang NJ, Wang YY, Zhang HJ, Guo YY, Chen C, Zhang W, Wan H, Han JL, Lu YL (2020) Association of bone mineral density with nine urinary personal care and consumer product chemicals and metabolites: a national-representative, population-based study. Environ Int 142:105865
Weiss J, Wallin E, Axmon A, Jönsson BAG, Åkesson H, Janák K, Hagmar L, Bergman Å (2006) Hydroxy-PCBs, PBDEs, and HBCDDs in serum from an elderly population of Swedish fishermen’s wives and associations with bone density. Environ Sci Technol 40:6282–6289
Yıldızgören MT, Öziş TN, Baki AE, Tutkun E, Yılmaz H, Tiftik T, Ekiz T, Özgirgin N (2016) Evaluation of bone mineral density and 25-hydroxyvitamin D levels in subjects with silica exposure. Environ Health Prev Med 21:149–153
Zhang Y-J, Huang C, Lv Y-S, Ma S-X, Guo Y, Zeng EY (2021) Polycyclic aromatic hydrocarbon exposure, oxidative potential in dust, and their relationships to oxidative stress in human body: a case study in the indoor environment of Guangzhou South China. Environ Int 149:106405
Zhao HY, Bi YF, Ma LY, Zhao L, Wang TG, Zhang LZ, Tao B, Sun LH, Zhao YJ, Wang WQ, Li XY, Xu MY, Chen JL, Ning G, Liu JM (2012) The effects of bisphenol A (BPA) exposure on fat mass and serum leptin concentrations have no impact on bone mineral densities in non-obese premenopausal women. Clin Biochem 45:1602–1606