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Biomarkers for Pulmonary Inflammation and Fibrosis and Lung Ventilation Function in Chinese Occupational Refractory Ceramic Fibers-Exposed Workers

Bibliographic Data

ID15468798
AuthorsXiaojun Zhu (0000-0002-5506-9318, National Institute for Occupational Health and Poison Control), Yishuo Gu (0000-0001-5960-1714, Peking University), Wenjun Ma (0000-0002-9266-4802, Peking University), Panjun Gao (0000-0001-5616-1047, Peking University), Mengxuan Liu (0000-0003-4576-7689, National Institute for Occupational Health and Poison Control), Pei Xiao (0000-0001-9976-7655, National Institute for Occupational Health and Poison Control), Hongfei Wang (0000-0002-8162-9243, National Institute for Occupational Health and Poison Control), Juan Chen (0000-0002-1038-4162, Peking University), Tao Li (0000-0001-7895-4136, National Institute for Occupational Health and Poison Control, corresponding author)
Year2017
Volume15
Issue1
Pages42-42
Publication date2017-12-27
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph15010042
PMID29280967
OpenAlexW2780158700
LanguageEN
References cited26

Refractory ceramic fibers (RCFs) can cause adverse health effects on workers' respiratory system, yet no proper biomarkers have been used to detect early pulmonary injury of RCFs-exposed workers. This study assessed the levels of two biomarkers that are related to respiratory injury in RCFs-exposed workers, and explored their relations with lung function. The exposure levels of total dust and respirable fibers were measured simultaneously in RCFs factories. The levels of TGF-β1 and ceruloplasmin (CP) increased with the RCFs exposure level ( p p p p = 0.025), or FEV1 (B = -0.494, p = 0.014). The concentration of TGF-β1 (B = 0.103, p = 0.001) and CP (B = 8.027, p = 0.007) were associated with respirable fiber exposure level. Occupational exposure to RCFs can impair lung ventilation function and may have the potential to cause pulmonary inflammation and fibrosis. TGF-β1 and CP might be used as sensitive and noninvasive biomarkers to detect lung injury in occupational RCFs-exposed workers. Respirable fiber concentration can better reflect occupational RCFs exposure and related respiratory injuries

Composite material · Environmental health · Fibrosis · Inflammation · Lung · Lung fibrosis · Lung function · Occupational exposure · Pulmonary fibrosis · Pulmonary function testing · Refractory (planetary science · Ventilation (architecture · Air Quality and Health Impacts · Materials Science · Medicine · Occupational and environmental lung diseases · Occupational exposure and asthma · Internal Medicine

Citation velocityhistorical
Highly citedNo

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