School of Public Health, Qingdao University, Qingdao 266071, China.
School of Public Health, Hebei Medical University, Shijiazhuang, China.
Environ Int. 2022 Jun;164:107257. doi: 10.1016/j.envint.2022.107257. Epub 2022 Apr 26.
Tire wear microplastic particles (TWMPs) are emerging microplastic pollutants that have gained increasing attention lately. However, the health effect of inhaled airborne TWMPs has never been explored before and may already be included in particulate matter morbidity and mortality. Here, we endeavored to address the preliminary study of TWMP inhalation-induced pulmonary toxic effects and its epigenetic mechanisms in C57BL/6 mice. As a result, restricted ventilatory dysfunction and fibrotic pathological changes were observed in TWMP-treaded mice. Further research found that attenuation of miR-1a-3p plays an important role in TWMP-induced lung injury. Results from in vitro study confirmed that cytoskeleton regulatory gene twinfilin-1 was one of the target genes of miR-1a-3p, and involved in cytoskeleton rearrangement caused by TWMP exposure. Mechanistically, miR-1a-3p inhibited the F-actin formation by targeting cytoskeletal regulatory proteins twinfilin-1, leading to TWMP-induced pulmonary fibrotic injury. While we are in the very early stages of explaining the role of epigenetics in TWMP-induced lung injury, the potential for the use of epigenetic marks as biomarkers is high and discoveries made in this field will likely bring us closer to better understanding this crucial mechanism.
轮胎磨损微塑料颗粒(TWMPs)是新兴的微塑料污染物,最近受到越来越多的关注。然而,吸入空气中 TWMPs 的健康影响以前从未被探讨过,可能已经包含在颗粒物发病率和死亡率中。在这里,我们致力于研究 C57BL/6 小鼠吸入 TWMP 引起的肺毒性作用及其表观遗传机制的初步研究。结果表明,TWMP 磨损的小鼠出现了受限的通气功能障碍和纤维化病理变化。进一步的研究发现,miR-1a-3p 的衰减在 TWMP 诱导的肺损伤中起着重要作用。体外研究的结果证实,细胞骨架调节基因 twinfilin-1 是 miR-1a-3p 的靶基因之一,参与了 TWMP 暴露引起的细胞骨架重排。从机制上讲,miR-1a-3p 通过靶向细胞骨架调节蛋白 twinfilin-1 抑制 F-肌动蛋白的形成,导致 TWMP 诱导的肺纤维性损伤。虽然我们还处于解释表观遗传学在 TWMP 诱导的肺损伤中的作用的早期阶段,但表观遗传标记作为生物标志物的潜力很高,该领域的发现可能使我们更深入地了解这一关键机制。