扫描电子显微镜
材料科学
人类健康
超细纤维
动态光散射
聚丙烯
纳米粒子跟踪分析
浊度
粒子(生态学)
透射电子显微镜
纤维素
化学工程
激光多普勒测速
纳米颗粒
显微镜
环境化学
环境科学
化学
纳米技术
光谱学
色谱法
电子显微镜
微塑料
航程(航空)
荧光显微镜
作者
Gooya Banaei,Doaa Abass,Alireza Tavakolpournegari,Joan Martín-Pérez,Javier J. Gutiérrez,Guyu Peng,Thorsten Reemtsma,Ricard Marcos,Alba Hernández,Alba García‐Rodríguez
出处
期刊:Chemosphere
[Elsevier BV]
日期:2024-11-01
卷期号:368: 143736-143736
被引量:14
标识
DOI:10.1016/j.chemosphere.2024.143736
摘要
The potential health implications of environmental micro/nanoplastics (MNPLs) are increasingly concerning. Beyond environmental exposure, other sources such as food packaging, including herbal/teabags, may also be significant. This study investigates the release of MNPLs from three commercially available teabags. By simulating tea preparation, MNPL samples were extracted and characterized using a range of analytical techniques: scanning electron microscopy (SEM), transmission electron microscopy (TEM), attenuated total reflectance/Fourier transform infrared spectroscopy (ATR-FTIR), dynamic light scattering (DLS), laser Doppler velocimetry (LDV), and nanoparticle tracking analysis (NTA). The results confirmed that the teabags were made of nylon-6 (NY6), polypropylene (PP), and cellulose (CL) and that microfibers and nano-range particles (NPLs) were present in the leachates. NTA data revealed that the number of released NPLs was 1.20 × 109/mL (PP; 136.7 nm), 1.35 × 108/mL (CL; 244 nm), and 8.18 × 106/mL (NY6; 138.4). The leachate particles were then stained with iDye Poly-Pink and used to expose three human intestine-derived cell types (Caco-2, HT29, and HT29-MTX) to assess their biointeractions and the role of the mucosubstances in vitro. The results demonstrated that after 24 h of exposure to 100 μg/mL NPLs, there was significant uptake of PP-NPLs in HT29-MTX cells, as a model of cells segregating high amount of mucus. A similar uptake was observed for CL-NPLs in HT29 and HT29-MTX cells, while NY6-NPLs were internalized preferentially in Caco-2 cells. These findings underscore the importance of identifying new environmentally relevant MNPL exposure sources, for developing realistic MNPLs samples, and further investigating their potential human health effects.
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