Ambient PM2.5 components might exacerbate bone loss among middle-aged and elderly women: evidence from a population-based cross-sectional study

Adami G et al (2022) Association between exposure to fine particulate matter and osteoporosis: a population-based cohort study. Osteoporos Int 33(1):169–176

Article  CAS  Google Scholar 

Campbell JR, Auinger P (2007) The association between blood lead levels and osteoporosis among adults–results from the third national health and nutrition examination survey (NHANES III). Environ Health Perspect 115(7):1018–1022

Article  CAS  Google Scholar 

Chang HK et al (2017) Bone mineral density among Korean females aged 20–50 years: influence of age at menarche (the Korea National Health and Nutrition Examination Survey 2008–2011). Osteoporos Int 28(7):2129–2136

Article  CAS  Google Scholar 

Compston JE, McClung MR, Leslie WD (2019) Osteoporos Lancet 393(10169):364–376

Article  CAS  Google Scholar 

Dyer SM et al (2016) A critical review of the long-term disability outcomes following hip fracture. BMC Geriatr 16(1):158

Article  Google Scholar 

Eastell R et al (2016) Postmenopausal osteoporosis. Nat Rev Dis Primers 2:16069

Article  Google Scholar 

Ensrud KE, Crandall CJ (2017) Osteoporos Ann Intern Med 167(3):ITC17–ITC32

Article  Google Scholar 

Ge Q et al (2023) Ambient PM2.5 exposure and bone homeostasis: analysis of UK Biobank Data and Experimental studies in mice and in Vitro. Environ Health Perspect 131(10):107002

Article  CAS  Google Scholar 

Geller AM, Zenick H (2005) Aging and the environment: a research framework. Environ Health Perspect 113(9):1257–1262

Article  Google Scholar 

Geng G et al (2017) Chemical composition of ambient PM2. 5 over China and relationship to precursor emissions during 2005–2012. Atmospheric Chem Phys 17(14):1–25

Article  Google Scholar 

Gouveia N, Fletcher T (2000) Time series analysis of air pollution and mortality: effects by cause, age and socioeconomic status. J Epidemiol Community Health 54(10):750–755

Article  CAS  Google Scholar 

Gruber HE et al (1997) Osteopenia induced by long-term, low- and high-level exposure of the adult rat to lead. Min Electrolyte Metab 23(2):65–73

CAS  Google Scholar 

Gu C et al (2023) Melatonin rescues the mitochondrial function of bone marrow-derived mesenchymal stem cells and improves the repair of osteoporotic bone defect in ovariectomized rats. J Pineal Res,: p. e12924

He Y et al (2021) Menarche age exceed 17 years and menopausal age smaller than 48 years may affect prevalence of osteoporosis for Chinese women. Arch Osteoporos 16(1):123

Article  CAS  Google Scholar 

Janssen NA et al (2011) Black carbon as an additional indicator of the adverse health effects of airborne particles compared with PM10 and PM2.5. Environ Health Perspect 119(12):1691–1699

Article  CAS  Google Scholar 

Liu C et al (2017) The Acute effects of Fine Particulate Matter constituents on blood inflammation and coagulation. Environ Sci Technol 51(14):8128–8137

Article  CAS  Google Scholar 

Liu JJ et al (2021) Association between outdoor particulate air pollution and the risk of osteoporosis: a systematic review and meta-analysis. Osteoporos Int 32(10):1911–1919

Article  CAS  Google Scholar 

Liu S et al (2022) Tracking daily concentrations of PM(2.5) Chemical composition in China since 2000. Environ Sci Technol 56(22):16517–16527

Article  CAS  Google Scholar 

Lo JC et al (2015) Trends in mortality following hip fracture in older women. Am J Manag Care 21(3):e206–e214

Google Scholar 

Mousavibaygei SR, Bisadi A, ZareSakhvidi F (2023) Outdoor air pollution exposure, bone mineral density, osteoporosis, and osteoporotic fractures: a systematic review and meta-analysis. Sci Total Environ 865:161117

Article  CAS  Google Scholar 

Pang KL, Ekeuku SO, Chin KY (2021) Particulate Air Pollution and osteoporosis: a systematic review. Risk Manag Healthc Policy 14:2715–2732

Article  Google Scholar 

Prada D et al (2017) Association of air particulate pollution with bone loss over time and bone fracture risk: analysis of data from two independent studies. Lancet Planet Health 1(8):e337–e347

Article  Google Scholar 

Prada D et al (2020) Molecular and cellular mechanisms linking air pollution and bone damage. Environ Res 185:109465

Article  CAS  Google Scholar 

Qiao D et al (2020) Long-term exposure to air pollution might increase prevalence of osteoporosis in Chinese rural population. Environ Res 183:109264

Article  CAS  Google Scholar 

Ranzani OT et al (2020) Association of Ambient and Household Air Pollution with Bone Mineral content among adults in Peri-urban South India. JAMA Netw Open 3(1):e1918504

Article  Google Scholar 

Reiss R et al (2007) Evidence of health impacts of sulfate-and nitrate-containing particles in ambient air. Inhal Toxicol 19(5):419–449

Article  CAS  Google Scholar 

Si L et al (2015a) Residual lifetime and 10 year absolute risks of osteoporotic fractures in Chinese men and women. Curr Med Res Opin 31(6):1149–1156

Article  Google Scholar 

Si L et al (2015b) Projection of osteoporosis-related fractures and costs in China: 2010–2050. Osteoporos Int 26(7):1929–1937

Article  CAS  Google Scholar 

Smith BJ et al (2006) Systemic bone loss and induction of coronary vessel disease in a rat model of chronic inflammation. Bone 38(3):378–386

Article  CAS  Google Scholar 

Sun Y et al (2008) Osteoporosis in a Chinese population due to occupational exposure to lead. Am J Ind Med 51(6):436–442

Article  CAS  Google Scholar 

Wang L et al (2021) Prevalence of osteoporosis and fracture in China: the China osteoporosis prevalence study. JAMA Netw Open 4(8):e2121106

Article  Google Scholar 

Wu J et al (2021) The Association between Long-term exposure to Ambient Air Pollution and Bone Strength in China. J Clin Endocrinol Metab 106(12):e5097–e5108

Google Scholar 

Yan H et al (2023) Ambient PM2.5 components are associated with bone strength: evidence from a China multi-ethnic study. J Clin Endocrinol Metab

Yang Y et al (2019) Short-term and long-term exposures to fine particulate matter constituents and health: a systematic review and meta-analysis. Environ Pollut 247:874–882

Article  CAS  Google Scholar 

Yang Y et al (2023) Ambient air pollution, bone mineral density and osteoporosis: results from a national population-based cohort study. Chemosphere 310:136871

Article  CAS  Google Scholar 

Zhang F et al (2022) Long-term exposure to air pollution might decrease bone mineral density T-score and increase the prevalence of osteoporosis in Hubei province: evidence from China osteoporosis prevalence study. Osteoporos Int 33(11):2357–2368

Article  CAS  Google Scholar 

Zhang F et al (2023) Air pollution weaken your muscle? Evidence from a cross-sectional study on Sarcopenia in central China. Ecotoxicol Environ Saf 258:114962

Article  CAS  Google Scholar 

留言 (0)

沒有登入
gif