Household air pollution from solid fuel use as a dose-dependent risk factor for cognitive impairment in northern China
The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardiz...
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Published in | Scientific reports Vol. 12; no. 1; pp. 6187 - 13 |
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Main Authors | , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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Nature Publishing Group UK
13.04.2022
Nature Publishing Group Nature Portfolio |
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Abstract | The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m
3
) and black carbon (0.9-µg/m
3
) were linearly associated with lower overall cognition [− 0.13 (95% confidence interval: − 0.22, − 0.04) and − 0.10 (− 0.19, − 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: − 0.13 to − 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. |
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AbstractList | The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m
3
) and black carbon (0.9-µg/m
3
) were linearly associated with lower overall cognition [− 0.13 (95% confidence interval: − 0.22, − 0.04) and − 0.10 (− 0.19, − 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: − 0.13 to − 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m3) and black carbon (0.9-µg/m3) were linearly associated with lower overall cognition [- 0.13 (95% confidence interval: - 0.22, - 0.04) and - 0.10 (- 0.19, - 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: - 0.13 to - 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment.The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m3) and black carbon (0.9-µg/m3) were linearly associated with lower overall cognition [- 0.13 (95% confidence interval: - 0.22, - 0.04) and - 0.10 (- 0.19, - 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: - 0.13 to - 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. Abstract The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m3) and black carbon (0.9-µg/m3) were linearly associated with lower overall cognition [− 0.13 (95% confidence interval: − 0.22, − 0.04) and − 0.10 (− 0.19, − 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: − 0.13 to − 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m ) and black carbon (0.9-µg/m ) were linearly associated with lower overall cognition [- 0.13 (95% confidence interval: - 0.22, - 0.04) and - 0.10 (- 0.19, - 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: - 0.13 to - 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in peri-urban northern China enrolled in the INTERMAP-China Prospective Study, we estimated the associations between exposure to HAP and z-standardized domain-specific and overall cognitive scores from the Montreal Cognitive Assessment. Interquartile range increases in exposures to fine particulate matter (53.2-µg/m3) and black carbon (0.9-µg/m3) were linearly associated with lower overall cognition [− 0.13 (95% confidence interval: − 0.22, − 0.04) and − 0.10 (− 0.19, − 0.01), respectively]. Using solid fuel indoors and greater intensity of its use were also associated with lower overall cognition (range of point estimates: − 0.13 to − 0.03), though confidence intervals included zero. Among individual cognitive domains, attention had the largest associations with most exposure measures. Our findings indicate that exposure to HAP may be a dose-dependent risk factor for cognitive impairment. As exposure to HAP remains pervasive in China and worldwide, reducing exposure through the promotion of less-polluting stoves and fuels may be a population-wide intervention strategy to lessen the burden of cognitive impairment. |
ArticleNumber | 6187 |
Author | Schauer, James J. Yang, Xudong Tseng, Tzu-Wei Joy Chan, Queenie Yan, Li Kelly, Frank Elliott, Paul Baumgartner, Jill Zhao, Liancheng Ezzati, Majid Wu, Yangfeng Carter, Ellison |
Author_xml | – sequence: 1 givenname: Tzu-Wei Joy surname: Tseng fullname: Tseng, Tzu-Wei Joy organization: Department of Epidemiology, Biostatistics and Occupational Health, McGill University – sequence: 2 givenname: Ellison surname: Carter fullname: Carter, Ellison organization: Institute on the Environment, University of Minnesota, Department of Civil and Environmental Engineering, Colorado State University – sequence: 3 givenname: Li surname: Yan fullname: Yan, Li organization: Department of Epidemiology and Biostatistics, School of Public Health, Imperial College London, Environmental Research Group, MRC Centre for Environment and Health, School of Public Health, Imperial College London – sequence: 4 givenname: Queenie surname: Chan fullname: Chan, Queenie organization: Department of Epidemiology and Biostatistics, School of Public Health, Imperial College London, Environmental Research Group, MRC Centre for Environment and Health, School of Public Health, Imperial College London, MRC Centre for Environment and Health, School of Public Health, Imperial College London – sequence: 5 givenname: Paul surname: Elliott fullname: Elliott, Paul organization: Department of Epidemiology and Biostatistics, School of Public Health, Imperial College London, MRC Centre for Environment and Health, School of Public Health, Imperial College London, NIHR Imperial College London Biomedical Research Centre – sequence: 6 givenname: Majid surname: Ezzati fullname: Ezzati, Majid organization: Department of Epidemiology and Biostatistics, School of Public Health, Imperial College London, MRC Centre for Environment and Health, School of Public Health, Imperial College London – sequence: 7 givenname: Frank surname: Kelly fullname: Kelly, Frank organization: Environmental Research Group, MRC Centre for Environment and Health, School of Public Health, Imperial College London – sequence: 8 givenname: James J. surname: Schauer fullname: Schauer, James J. organization: Department of Civil and Environmental Engineering, University of Wisconsin, Environmental Chemistry & Technology Program, University of Wisconsin – sequence: 9 givenname: Yangfeng surname: Wu fullname: Wu, Yangfeng organization: Peking University Clinical Research Institute – sequence: 10 givenname: Xudong surname: Yang fullname: Yang, Xudong organization: Department of Building Science, School of Architecture, Tsinghua University – sequence: 11 givenname: Liancheng surname: Zhao fullname: Zhao, Liancheng organization: National Center for Cardiovascular Disease, Fuwai Hospital, Peking Union Medical College & Chinese Academy of Medical Sciences – sequence: 12 givenname: Jill surname: Baumgartner fullname: Baumgartner, Jill email: jill.baumgartner@mcgill.ca organization: Department of Epidemiology, Biostatistics and Occupational Health, McGill University, Institute for Health and Social Policy, McGill University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35418188$$D View this record in MEDLINE/PubMed |
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Snippet | The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults in... Abstract The relationship between exposure to household air pollution (HAP) from solid fuel use and cognition remains poorly understood. Among 401 older adults... |
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Title | Household air pollution from solid fuel use as a dose-dependent risk factor for cognitive impairment in northern China |
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