Physicochemical Properties and Bioreactivity of Sub-10 μm Geogenic Particles: Comparison of Volcanic Ash and Desert Dust.

IF 4.3 2区 医学 Q2 ENVIRONMENTAL SCIENCES Geohealth Pub Date : 2025-01-08 eCollection Date: 2025-01-01 DOI:10.1029/2024GH001171
Ines Tomašek, Julia Eychenne, David E Damby, Adrian J Hornby, Manolis N Romanias, Severine Moune, Gaëlle Uzu, Federica Schiavi, Maeva Dole, Emmanuel Gardès, Mickael Laumonier, Clara Gorce, Régine Minet-Quinard, Julie Durif, Corinne Belville, Ousmane Traoré, Loïc Blanchon, Vincent Sapin
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Abstract

Exposure to ambient particulate matter (PM) with an aerodynamic diameter of <10 μm (PM10) is a well-established health hazard. There is increasing evidence that geogenic (Earth-derived) particles can induce adverse biological effects upon inhalation, though there is high variability in particle bioreactivity that is associated with particle source and physicochemical properties. In this study, we investigated physicochemical properties and biological reactivity of volcanic ash from the April 2021 eruption of La Soufrière volcano, St. Vincent, and two desert dust samples: a standardized test dust from Arizona and an aeolian Gobi Desert dust sampled in China. We determined particle size, morphology, mineralogy, surface texture and chemistry in sub-10 μm material to investigate associations between particle physicochemical properties and observed bioreactivity. We assessed cellular responses (cytotoxic and pro-inflammatory effects) to acute particle exposures (24 hr) in monocultures at the air-liquid interface using two types of cells of the human airways: BEAS-2B bronchial epithelial cells and A549 alveolar type II epithelial cells. In acellular assays, we also assessed particle oxidative potential and the presence of microorganisms. The results showed that volcanic ash and desert dust exhibit intrinsically different particle morphology, surface textures and chemistry, and variable mineralogical content. We found that Gobi Desert dust is more bioreactive than freshly erupted volcanic ash and Arizona test dust, which is possibly linked to the presence of microorganisms (bacteria) and/or nanoscale elongated silicate minerals (potentially clay such as illite or vermiculite) on particle surfaces.

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10 μm以下地球成因颗粒的物理化学性质和生物反应性:火山灰和沙尘的比较。
暴露于空气动力学直径为10的环境颗粒物(PM)是一种公认的健康危害。越来越多的证据表明,虽然颗粒的生物反应性与颗粒来源和物理化学性质有很大的差异,但吸入地球产生的颗粒可引起不利的生物效应。在这项研究中,我们研究了2021年4月圣文森特La soufri火山喷发的火山灰的物理化学性质和生物反应性,以及两个沙漠尘埃样本:来自亚利桑那州的标准化测试尘埃和来自中国的风成戈壁沙漠尘埃。我们测定了10 μm以下材料的粒径、形貌、矿物学、表面纹理和化学性质,以研究颗粒物理化学性质与观察到的生物反应性之间的关系。我们使用两种类型的人气道细胞:BEAS-2B支气管上皮细胞和A549肺泡II型上皮细胞,在气液界面单培养中评估急性颗粒暴露(24小时)的细胞反应(细胞毒性和促炎作用)。在非细胞分析中,我们还评估了颗粒氧化电位和微生物的存在。结果表明,火山灰和沙尘具有不同的颗粒形态、表面结构和化学性质,矿物学含量也存在差异。我们发现戈壁沙漠粉尘比新喷发的火山灰和亚利桑那测试粉尘更具生物反应性,这可能与颗粒表面上存在的微生物(细菌)和/或纳米级细长硅酸盐矿物(可能是粘土,如伊利石或蛭石)有关。
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来源期刊
Geohealth
Geohealth Environmental Science-Pollution
CiteScore
6.80
自引率
6.20%
发文量
124
审稿时长
19 weeks
期刊介绍: GeoHealth will publish original research, reviews, policy discussions, and commentaries that cover the growing science on the interface among the Earth, atmospheric, oceans and environmental sciences, ecology, and the agricultural and health sciences. The journal will cover a wide variety of global and local issues including the impacts of climate change on human, agricultural, and ecosystem health, air and water pollution, environmental persistence of herbicides and pesticides, radiation and health, geomedicine, and the health effects of disasters. Many of these topics and others are of critical importance in the developing world and all require bringing together leading research across multiple disciplines.
期刊最新文献
Proposed Relationships Between Climate, Biological Soil Crusts, Human Health, and in Arid Ecosystems. Physicochemical Properties and Bioreactivity of Sub-10 μm Geogenic Particles: Comparison of Volcanic Ash and Desert Dust. Air Pollution and Cognitive Impairment Among the Chinese Elderly Population: An Analysis of the Chinese Longitudinal Healthy Longevity Survey (CLHLS). Access to Healthy Built and Natural Environments and Physical Activity and Screen Time in New Zealand Adolescents: A Geospatial Cross-Sectional Study. Subseasonal Prediction of Heat-Related Mortality in Switzerland.
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