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环境温度与常见致敏花粉及真菌孢子之间的关联:英国英格兰中部地区的52年分析

Association between ambient temperature and common allergenic pollen and fungal spores: A 52-year analysis in central England, United Kingdom.

作者信息

Lam Holly C Y, Anees-Hill Samuel, Satchwell Jack, Symon Fiona, Macintyre Helen, Pashley Catherine H, Marczylo Emma L, Douglas Philippa, Aldridge Stuart, Hansell Anna

机构信息

Air Quality and Public Health, UK Health Security Agency, Nobel House, 17 Smith Square, London SW1P 3JR, United Kingdom.

Centre for Environmental Health and Sustainability, University of Leicester, University Road, Leicester LE1 7RH, United Kingdom; Toxicology, UK Health Security Agency, Harwell Campus, Chilton, Didcot OX11 0RQ, United Kingdom; NIHR Health Protection Research Unit in Environmental Exposures and Health at the University of Leicester, University Road, Leicester LE1 7RH, United Kingdom.

出版信息

Sci Total Environ. 2024 Jan 1;906:167607. doi: 10.1016/j.scitotenv.2023.167607. Epub 2023 Oct 6.

Abstract

Exposure to pollen and fungal spores can trigger asthma/allergic symptoms and affect health. Rising temperatures from climate change have been associated with earlier seasons and increasing intensity for some pollen, with weaker evidence for fungal spores. It is unclear whether climate change has resulted in changes in the exposure-response function between temperature and pollen/fungal spore concentrations over time. This study examined associations between temperature and pollen/fungal spores in different time periods and assessed potential adaptation using the longest pollen/fungal spore dataset in existence (52 years). Daily concentrations of pollen (birch and grass) and fungal spores (Cladosporium, Alternaria, Sporobolomyces and Tilletiopsis) collected between April and October from Derby (1970-2005) and Leicester (2006-2021), UK, were analysed. Cumulative seasonal concentrations (seasonal integral) and start-of-season were calculated and linked to seasonal mean temperatures (Tmeans) using generalized additive models. Daily concentrations were evaluated against daily Tmean with distributed lagged nonlinear models. Models were adjusted for precipitation, relative humidity, long-term trend and location. Seasonal and daily analyses were respectively stratified into two periods (1970-1995, 1997-2021) and five decades. Warmer seasonal Tmeans were associated with higher seasonal integral for birch, Cladosporium and Alternaria, as well as earlier start-of-season for birch, grass and Cladosporium. There were indications of changing associations with temperature in the recent decades. A warmer January was associated with higher seasonal integral for grass in 1997-2021, but not in 1970-1995. In 2000-2021, daily concentrations of birch pollen tended to remain at higher levels, vs. decrease during 1990s, when Tmean was between 13 and 15 °C. Our study suggests higher temperatures experienced in recent decades are associated with higher overall abundance of some pollen/fungal spores, which may increase future disease burdens of allergies. The changing responses of some pollen to higher temperatures over time may indicate adaptation to increasing temperatures and should be considered in climate change mitigation and adaptation planning.

摘要

接触花粉和真菌孢子会引发哮喘/过敏症状并影响健康。气候变化导致的气温上升与某些花粉季节提前和强度增加有关,而与真菌孢子相关的证据则较弱。目前尚不清楚气候变化是否导致了温度与花粉/真菌孢子浓度之间的暴露-反应函数随时间发生变化。本研究调查了不同时间段温度与花粉/真菌孢子之间的关联,并使用现存最长的花粉/真菌孢子数据集(52年)评估了潜在适应性。分析了1970年至2005年在英国德比以及2006年至2021年在英国莱斯特4月至10月期间收集的花粉(桦树和草)和真菌孢子(枝孢菌、链格孢菌、掷孢酵母和蒂氏酵母)的每日浓度。计算累积季节性浓度(季节积分)和季节开始时间,并使用广义相加模型将其与季节性平均温度(Tmeans)相关联。使用分布滞后非线性模型根据每日平均温度评估每日浓度。模型针对降水量、相对湿度、长期趋势和地理位置进行了调整。季节性和每日分析分别分为两个时期(1970 - 1995年,1997 - 2021年)和五个十年。季节性平均温度升高与桦树、枝孢菌和链格孢菌的更高季节积分相关,以及与桦树、草和枝孢菌的更早季节开始时间相关。有迹象表明近几十年来与温度的关联在发生变化。1997 - 2021年1月气温升高与草的更高季节积分相关,但在1970 - 1995年则不然。在2000 - 2021年期间,桦树花粉的每日浓度往往保持在较高水平,而在20世纪90年代,当平均温度在13至15摄氏度之间时则会下降。我们的研究表明近几十年来经历的较高温度与某些花粉/真菌孢子的总体丰度增加有关,这可能会增加未来过敏疾病负担。随着时间的推移,一些花粉对较高温度的反应变化可能表明对温度升高的适应,应在气候变化缓解和适应规划中予以考虑。

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