Impact of global short-term landscape fire sourced PM2.5 exposure on child cause-specific morbidity: a study in multiple countries and territories

S Shuang Zhou Y Yiwen Zhang Z Zhengyu Yang R Rongbin Xu W Wenzhong Huang Y Yao Wu (School of Materials Science & Engineering) Z Zhihu Xu Y Yuan Gao Y Yanming Liu W Wenhua Yu P Pei Yu (Smart Hybrid Materials Laboratory (SHMs), Chemistry Program, Physical Science and Engineering Division) G Gongbo Chen K Ke Ju T Tingting Ye (Key Laboratory of Materials Physics) B Bo Wen (School of Physics and Electronics) Y Yuxi Zhang (Shanghai Key Laboratory of Anesthesiology and Brain Functional Modulation, Clinical Research Center for Anesthesiology and Perioperative Medicine, Translational Research Institute of Brain and Brain-Like Intelligence, Shanghai Fourth People’s Hospital, School of Medicine, Tongji University) M Michael Abramson L Lidia Morawska F Fay H. Johnston S Simon Hales M Micheline S. Z. S. Coelho Y Yue Leon Guo J Jane Heyworth W Wissanupong Kliengchuay L Luke Knibbs E Eric Lavigne G Guy Marks P Patricia Matus G Geoffrey Morgan P Paulo H. N. Sadiva K Kraichat Tantrakarnapa Y Yuming Guo S Shanshan Li

Abstract

Abstract Children are particularly vulnerable to landscape fire sourced fine particulate matter (LFS PM 2.5 ), yet evidence on its health effects remains limited. Here we show that short-term exposure to LFS PM 2.5 is associated with increased hospital admissions for multiple diseases in children and adolescents. We analysed daily hospital admission data from 1012 communities in seven countries/territories, linked to a high-resolution LFS PM 2.5 dataset. Each 10 μg/m 3 increase in LFS PM 2.5 was associated with elevated risks for all-cause (1.1%), respiratory (1.9%), infectious (1.5%), cardiovascular (2.9%), neurological (2.8%), diabetes (3.7%), cancer (1.5%), and digestive (0.8%) hospital admissions. Risks for respiratory, infectious, and neurological conditions increased even at low exposure, while others rose only above 15-20 μg/m 3 . Children aged 5-9 years and those in lower socioeconomic areas were especially affected. These findings highlight the health burden of LFS PM 2.5 in young people and the urgent need to reduce exposure and protect vulnerable populations.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (33)

S

Shuang Zhou

Y

Yiwen Zhang

Z

Zhengyu Yang

R

Rongbin Xu

W

Wenzhong Huang

Y

Yao Wu

School of Materials Science & Engineering

Z

Zhihu Xu

Y

Yuan Gao

Y

Yanming Liu

W

Wenhua Yu

P

Pei Yu

Smart Hybrid Materials Laboratory (SHMs), Chemistry Program, Physical Science and Engineering Division

G

Gongbo Chen

K

Ke Ju

T

Tingting Ye

Key Laboratory of Materials Physics

B

Bo Wen

School of Physics and Electronics

Y

Yuxi Zhang

Shanghai Key Laboratory of Anesthesiology and Brain Functional Modulation, Clinical Research Center for Anesthesiology and Perioperative Medicine, Translational Research Institute of Brain and Brain-Like Intelligence, Shanghai Fourth People’s Hospital, School of Medicine, Tongji University

M

Michael Abramson

L

Lidia Morawska

F

Fay H. Johnston

S

Simon Hales

M

Micheline S. Z. S. Coelho

Y

Yue Leon Guo

J

Jane Heyworth

W

Wissanupong Kliengchuay

L

Luke Knibbs

E

Eric Lavigne

G

Guy Marks

P

Patricia Matus

G

Geoffrey Morgan

P

Paulo H. N. Sadiva

K

Kraichat Tantrakarnapa

Y

Yuming Guo

S

Shanshan Li