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Background: The health effects of suspended particulate matter (PM) may depend on its chemical composition. Associations between maternal exposure to chemical constituents of PM and newborn's size have been little examined.
Objective: We aimed to investigate the associations of exposure to elemental constituents of PM with term low birth weight (LBW; weight < 2,500 g among births after 37 weeks of gestation), mean birth weight, and head circumference, relying on standardized fine-scale exposure assessment and with extensive control for potential confounders.
Methods: We pooled data from eight European cohorts comprising 34,923 singleton births in 1994-2008. Annual average concentrations of elemental constituents of PM ≤ 2.5 and ≤ 10 μm (PM2.5 and PM10) at maternal home addresses during pregnancy were estimated using land-use regression models. Adjusted associations between each birth measurement and concentrations of eight elements (copper, iron, potassium, nickel, sulfur, silicon, vanadium, and zinc) were calculated using random-effects regression on pooled data.
Results: A 200-ng/m3 increase in sulfur in PM2.5 was associated with an increased risk of LBW (adjusted odds ratio = 1.36; 95% confidence interval: 1.17, 1.58). Increased nickel and zinc in PM2.5 concentrations were also associated with an increased risk of LBW. Head circumference was reduced at higher exposure to all elements except potassium. All associations with sulfur were most robust to adjustment for PM2.5 mass concentration. All results were similar for PM10.
Conclusion: Sulfur, reflecting secondary combustion particles in this study, may adversely affect LBW and head circumference, independently of particle mass.
Citation: Pedersen M, Gehring U, Beelen R, Wang M, Giorgis-Allemand L, Andersen AM, Basagaña X, Bernard C, Cirach M, Forastiere F, de Hoogh K, Gražulevičienė R, Gruzieva O, Hoek G, Jedynska A, Klümper C, Kooter IM, Krämer U, Kukkonen J, Porta D, Postma DS, Raaschou-Nielsen O, van Rossem L, Sunyer J, Sørensen M, Tsai MY, Vrijkotte TG, Wilhelm M, Nieuwenhuijsen MJ, Pershagen G, Brunekreef B, Kogevinas M, Slama R. 2016. Elemental constituents of particulate matter and newborn's size in eight European cohorts. Environ Health Perspect 124:141-150; http://dx.doi.org/10.1289/ehp.1409546.
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http://dx.doi.org/10.1289/ehp.1409546 | DOI Listing |
ACS Nano
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Information Materials and Intelligent Sensing Laboratory of Anhui Province, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education, Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, China.
High-entropy oxides represent a burgeoning class of anode materials for lithium-ion batteries. They reduce the mutual repulsion among constituent elements, enhance structural stability, and effectively mitigate volume changes-induced structural collapse and capacity decay during charge-discharge cycles. However, the complex elemental composition of high-entropy oxides complicate their lithium storage mechanism, particularly the evolution of structural stability during cycling, which requires further elucidation.
View Article and Find Full Text PDFNanomaterials (Basel)
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Department of Materials Science and Engineering, Chungnam National University, Daejeon 34134, Republic of Korea.
This study investigates the influence of Cu addition on the nanostructural evolution and mechanical performance of a heavily drawn non-equiatomic CoCuFeMnNi high-entropy alloy (HEA) wire. Through systematic microstructural and compositional analysis, we examine how Cu constituent affects phase separation behavior and promotes deformation-induced nano-twinning in another phase counterpart. The designed HEA wire exhibits an elongated ultrafine dual face-centered cubic (fcc) lamella structure (i.
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August 2025
Department of Chemistry, National Institute of Technology Raipur, G E Road, Raipur, Chhattisgarh 492010, India.
Uric acid (UA) serves as a vital biomarker for diagnosing metabolic and renal disorders, prompting the need for rapid and selective detection methods. Herein, a new copper-based metal-organic framework (Cu-MOF), formulated as [Cu(TCi)] [Cu(TCi)(HO)(μ-OH)], was synthesized using Cu(II) ions and tris(2-carboxyethyl) isocyanurate (HTCi) as a flexible linker. Comprehensive characterization through PXRD, FTIR, SEM, EDAX, TGA, XPS, BET and elemental mapping confirmed the framework's structural integrity.
View Article and Find Full Text PDFACS Appl Bio Mater
August 2025
Department of Metallurgical and Materials Engineering, Defence Institute of Advanced Technology, Girinagar, Pune 411025, India.
Incorporation of nanofillers into carbon foam (CF) is an amenable process to enhance its biological properties, which otherwise is bioinert. In the present study, CF-reinforced graphene oxide (CFGO) was considered to study the effects of GO on the structure, bioactivity, and biocompatibility using gingival mesenchymal stem cells (gMSCs) as the cellular source. CF was prepared by carbonization of polyurethane (PU) foam, and for the synthesis of GO-incorporated PU foam, GO was dispersed in isocyanate, one of the constituents of PU foam.
View Article and Find Full Text PDFInhal Toxicol
September 2025
Center for Inhalation Toxicology (iTOX), West Virginia University School of Medicine, Morgantown, WV, USA.
Inhalation of emissions from combustion events such as military burn pits and wildland-urban interface fires result in exposures to complex aerosols that may cause adverse health effects. A surrogate combustion generator was created to study these events. A pellet stove was modified to burn diverse fuels comprised of materials found in burn pits (plastic, rubber, and wood).
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