Particulate matter (PM) oxidative potential: Measurement methods and links to PM physicochemical characteristics and health effects

被引:32
作者
He, Linchen [1 ]
Zhang, Junfeng [2 ,3 ,4 ]
机构
[1] Johns Hopkins Univ, Bloomberg Sch Publ Hlth, Dept Environm Hlth & Engn, Baltimore, MD 21218 USA
[2] Duke Univ, Nicholas Sch Environm, 308 Res Dr,LSRC Room A309, Durham, NC 27708 USA
[3] Duke Univ, Duke Global Hlth Inst, 308 Res Dr,LSRC Room A309, Durham, NC 27708 USA
[4] Duke Kunshan Univ, 308 Res Dr,LSRC Room A309, Durham, NC 27708 USA
关键词
Air pollution; antioxidant depletion; oxidative potential; oxidative stress; particle toxicity; particle cellular effect; Albert Juhasz and Lena Q; Ma; OXYGEN SPECIES ROS; ARYL-HYDROCARBON RECEPTOR; AIR-POLLUTION EXPOSURES; WATER-SOLUBLE PM2.5; REACTIVE OXYGEN; LOS-ANGELES; LUNG-FUNCTION; CHEMICAL-COMPOSITION; ULTRAFINE PARTICLES; OXIDANT PRODUCTION;
D O I
10.1080/10643389.2022.2050148
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
It has been widely accepted that the induction of reactive oxygen species (ROS) is an important pathophysiologic pathway linking particulate matter (PM) exposure and adverse health effects. ROS can be either present on and/or within PM or generated in vivo by the interactions between PM and biological systems. Within the context of toxicology, PM oxidative potential (OP) is the capacity of PM to oxidize molecules in biological tissues or cells directly by oxidants that are present on and/or within PM and indirectly by the ROS generated via PM interactions with the biological system (e.g., fluids, cells, and tissues). In this review, we summarized the current PM OP measurement methods, current understanding of how PM physical characteristics and chemical compositions affect OP, and the epidemiological and toxicological evidence on whether PM OP is a better indicator than PM mass concentration for health effects. Among the two major types of OP measurement methods, cellular assays have been regarded to better reflect the actions of PM in a biological system than acellular assays. Recent epidemiological studies have associated short-term PM OP exposure with adverse cardiorespiratory health outcomes. Little is known about the health effects of long-term PM OP exposure and on the effect beyond the cardiovascular and respiratory systems. The existing evidence may be sufficient to suggest the use of PM OP as a more health-relevant exposure metric than conventional PM mass concentration, but critical methodologic issues must be resolved before this metric can be widely and accurately used.
引用
收藏
页码:177 / 197
页数:21
相关论文
共 129 条
[1]  
Abrams JY, 2017, ENVIRON HEALTH PERSP, V125, DOI [10.1289/EHP1545, 10.1289/ehp3048]
[2]   Occupational exposure to woodsmoke and oxidative stress in wildland firefighters [J].
Adetona, Olorunfemi ;
Zhang, Jim ;
Hall, Daniel B. ;
Wang, Jia-Sheng ;
Vena, John E. ;
Naeher, Luke P. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2013, 449 :269-275
[3]   Performance of activated carbon loaded fibrous filters on simultaneous removal of particulate and gaseous pollutants [J].
Agranovski, IE ;
Moustafa, S ;
Braddock, RD .
ENVIRONMENTAL TECHNOLOGY, 2005, 26 (07) :757-766
[4]   Individual- and Household-Level Interventions to Reduce Air Pollution Exposures and Health Risks: a Review of the Recent Literature [J].
Allen, Ryan W. ;
Barn, Prabjit .
CURRENT ENVIRONMENTAL HEALTH REPORTS, 2020, 7 (04) :424-440
[5]   Exploring the oxidative potential and respiratory deposition of size-segregated particulate matter at an urban site [J].
Andrade, Catalina ;
Molina, Carolina ;
Sanchez, Luis Felipe ;
Manzano, Carlos A. ;
Toro A, Richard ;
Leiva G, Manuel A. .
JOURNAL OF SOUTH AMERICAN EARTH SCIENCES, 2021, 105
[6]   Connecting the oxidation of soot to its redox cycling abilities [J].
Antinolo, Maria ;
Willis, Megan D. ;
Zhou, Shouming ;
Abbatt, Jonathan P. D. .
NATURE COMMUNICATIONS, 2015, 6
[7]   Short-term associations between particle oxidative potential and daily mortality and hospital admissions in London [J].
Atkinson, Richard W. ;
Samoli, Evangelia ;
Analitis, Antonis ;
Fuller, Gary W. ;
Green, David C. ;
Anderson, H. Ross ;
Purdie, Esme ;
Durister, Chrissi ;
Aitlhadj, Layla ;
Kelly, Frank J. ;
Mudway, Ian S. .
INTERNATIONAL JOURNAL OF HYGIENE AND ENVIRONMENTAL HEALTH, 2016, 219 (06) :566-572
[8]   Review of Acellular Assays of Ambient Particulate Matter Oxidative Potential: Methods and Relationships with Composition, Sources, and Health Effects [J].
Bates, Josephine T. ;
Fang, Ting ;
Verma, Vishal ;
Zeng, Linghan ;
Weber, Rodney J. ;
Tolbert, Paige E. ;
Abrams, Joseph Y. ;
Sarnat, Stefanie E. ;
Klein, Mitchel ;
Mulholland, James A. ;
Russell, Armistead G. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2019, 53 (08) :4003-4019
[9]   Reactive Oxygen Species Generation Linked to Sources of Atmospheric Particulate Matter and Cardiorespiratory Effects [J].
Bates, Josephine T. ;
Weber, Rodney J. ;
Abrams, Joseph ;
Verma, Vishal ;
Fang, Ting ;
Klein, Mitchel ;
Strickland, Matthew J. ;
Sarnat, Stefanie Ebelt ;
Chang, Howard H. ;
Mulholland, James A. ;
Tolbert, Paige E. ;
Russell, Armistead G. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2015, 49 (22) :13605-13612
[10]   Particulate matter concentrations in residences: an intervention study evaluating stand-alone filters and air conditioners [J].
Batterman, S. ;
Du, L. ;
Mentz, G. ;
Mukherjee, B. ;
Parker, E. ;
Godwin, C. ;
Chin, J. -Y. ;
O'Toole, A. ;
Robins, T. ;
Rowe, Z. ;
Lewis, T. .
INDOOR AIR, 2012, 22 (03) :235-252